{"id":130,"date":"2018-07-24T08:59:23","date_gmt":"2018-07-24T08:59:23","guid":{"rendered":"http:\/\/ftp04.epgpbooks.inflibnet.ac.in\/?post_type=chapter&#038;p=130"},"modified":"2018-12-12T06:04:48","modified_gmt":"2018-12-12T06:04:48","slug":"technology-of-cheese-manufacture-i-milk-quality-ingredients-andclassification-of-cheese","status":"publish","type":"chapter","link":"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/chapter\/technology-of-cheese-manufacture-i-milk-quality-ingredients-andclassification-of-cheese\/","title":{"rendered":"Technology of Cheese Manufacture \u2013I: Milk quality, Ingredients andClassification of cheese"},"content":{"raw":"<div><span style=\"float: right\"><a href=\"https:\/\/youtu.be\/Md_ESzq2Sww\" target=\"_blank\" rel=\"noopener\"><img src=\"http:\/\/epgpbooks.inflibnet.ac.in\/wp-content\/uploads\/2018\/11\/download.png\" alt=\"epgp books\" width=\"75px\" height=\"75px;\" \/><\/a>\r\n<\/span><\/div>\r\n<div>\r\n\r\n&nbsp;\r\n\r\n&nbsp;\r\n\r\n&nbsp;\r\n\r\n<strong>Definition of cheese<\/strong>\r\n\r\n&nbsp;\r\n<p style=\"text-align: justify\">As per Food Safety and Standards Authority of India (FSSAI), cheese means the ripened or unripened soft or semihard, hard and extra hard product, which may be coated with food grade waxes or polyfilm, and in which the whey protein \/ casein ratio does not exceed that of milk. Cheese is obtained by coagulating wholly or partly milk and\/ or products obtained from milk through the action of nonanimal rennet or other suitable coagulating agents and by partially draining the whey resulting from such coagulation and\/ or processing techniques involving coagulation of milk and\/ or products obtained from milk which give a final product with similar physical, chemical and organoleptic characteristics. The product may contain starter cultures of harmless lactic acid and \/ or flavour producing bacteria and cultures of other harmless microorganisms, safe and suitable enzymes and sodium chloride. It may be in the form of blocks, slices, cut, shredded or grated cheese.<\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\">The cheese may contain maximum of 3000 ppm sorbic acid or its Na, K or Ca salts calculated as sorbic acid, and or 12.5 ppm of nisin, either singly or in combination. Natamycin may be used for surface treatment only.<\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\">(i)\u00a0\u00a0 <strong>Ripened cheese <\/strong>is cheese which is not ready for consumption shortly after manufacture but which must be held for some time at such temperature and other conditions as will result in necessary biochemical and physical changes characterizing the cheese in question.<\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\">(ii)\u00a0\u00a0\u00a0 <strong>Mould Ripened cheese <\/strong>is a ripened cheese in which the ripening has been accomplished primarily by the development of characteristic mould growth through the interior and\/ or on the surface of the cheese.<\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\">(iii)\u00a0\u00a0\u00a0 <strong>Unripened cheese <\/strong>including fresh cheese is cheese which is ready for consumption shortly after manufacture.<\/p>\r\n&nbsp;\r\n\r\nThe specifications for cheese as per FSSAI are collated in Table 1.\r\n\r\n<\/div>\r\n<img class=\"size-full wp-image-135 aligncenter\" src=\"http:\/\/ftp04.epgpbooks.inflibnet.ac.in\/wp-content\/uploads\/sites\/44\/2018\/07\/1-27.png\" alt=\"\" width=\"649\" height=\"111\" \/>\r\n<div>\r\n\r\n<img class=\"size-full wp-image-136 aligncenter\" src=\"http:\/\/ftp04.epgpbooks.inflibnet.ac.in\/wp-content\/uploads\/sites\/44\/2018\/07\/1-28.png\" alt=\"\" width=\"655\" height=\"125\" \/>\r\n<p style=\"text-align: justify\">There are hundreds of varieties of natural cheese now being produced worldwide. However, the vast majority of cheese consumed in India remains limited to only a few varieties such as Cheddar as processed cheese or processed cheese spread, Swiss, Gouda and Mozzarella.<\/p>\r\n&nbsp;\r\n\r\n<strong>Principle of Cheese manufacture<\/strong>\r\n\r\n&nbsp;\r\n<p style=\"text-align: justify\">Cheese\u00a0 is\u00a0\u00a0 a\u00a0\u00a0 concentrated\u00a0 protein\u00a0\u00a0 gel,\u00a0\u00a0 which\u00a0\u00a0 occludes\u00a0\u00a0 fat\u00a0 and\u00a0\u00a0 moisture.\u00a0\u00a0 Its\u00a0 manufacture essentially involves gelation of cheese milk, dehydration of the gel to form a curd and treatment of the curd (e.g. dry stirring, cheddaring, texturisation, salting, molding, pressing). The molded curd may be consumed fresh (shortly after manufacture, for example within 1 week) or matured for periods of ~2 weeks to 2 years to form a ripened cheese.<\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\">Just after manufacture, rennet-curd cheeses are usually matured or ripened by holding under specific conditions of temperature and humidity for periods which range from ~ 2 to 4 weeks for soft cheeses (for Camembert-type cheeses) to ~ 2 years for some hard cheeses (for Parmesan- style cheeses). During this period, physico-chemical changes take place which transform the \u2018rubbery\/chewy\u2019\u00a0 textured\u00a0 fresh\u00a0 cheese\u00a0 curd\u00a0 to\u00a0 the\u00a0 finished\u00a0 cheese\u00a0 with\u00a0 the\u00a0 desired\u00a0 quality characteristics, e.g. a soft, smooth, short and adhesive texture with a mushroom-like flavour and creamy mouth-feel for Camembert, or a long, elastic sliceable texture and mild, sweet flavour for Leerdammer cheese.<\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong>Ingredients used in cheese making<\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong><em>Milk and milk solids<\/em><\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\">The main ingredient used in cheese making is milk. Cheese is made using cow, buffalo, goat, sheep or a blend of these milks. However, in India cheese can only be made from cow milk, buffalo milk or a combination of the two milks as per FSSAI.<\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Milk derived ingredients like white butter, skim milk powder, whey powder, butter milk powder, chakka (partly whey drained fermented curd) are permitted for use in preparation of \u2018Processed cheese spread\u2019.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\"><em>Starter cultures<\/em><\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Cultures for cheese making are called lactic acid bacteria (LAB) because their primary source of energy is lactose in milk and their primary metabolic product is lactic acid. Starter cultures are used early in the cheese making process to assist coagulation by lowering the pH prior to rennet addition. The metabolism of the starter cultures contribute desirable flavor compounds, and help prevent the growth of spoilage organisms. Starters play a role in the acidification of cheese milk to the desired pH during manufacture. In addition, starter bacteria play an important role in the maturation and flavour development of cheese. Current starter technologies include genetically modified starters, adjunct starters and fast-acid starters, which are available commercially as liquid, frozen or dried. Frozen cultures are available in concentrated or unconcentrated forms and inoculated directly into milk, so called \u2018direct vat cultures\u2019. Dried starters may be spray-dried or preferably freeze-dried.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Typical\u00a0\u00a0 starter\u00a0\u00a0 bacteria\u00a0\u00a0 include\u00a0\u00a0\u00a0 <\/span><em style=\"font-size: 1em\">Lactococcus<\/em><span style=\"font-size: 1em\">\u00a0\u00a0\u00a0\u00a0 <\/span><em style=\"font-size: 1em\">lactis <\/em><span style=\"font-size: 1em\">subsp.<\/span><em style=\"font-size: 1em\"> lactis <\/em><span style=\"font-size: 1em\">or<\/span><em style=\"font-size: 1em\"> cremoris<\/em><span style=\"font-size: 1em\">,<\/span><em style=\"font-size: 1em\"> Streptococcus\u00a0<\/em><em style=\"font-size: 1em\">salivarius <\/em><span style=\"font-size: 1em\">subsp.<\/span><em style=\"font-size: 1em\"> thermophilus<\/em><span style=\"font-size: 1em\">,<\/span><em style=\"font-size: 1em\"> Lactobacillus delbruckii <\/em><span style=\"font-size: 1em\">subsp.<\/span><em style=\"font-size: 1em\"> bulgaricus<\/em><span style=\"font-size: 1em\">,<\/span><em style=\"font-size: 1em\"> Lactobacillus helveticus <\/em><span style=\"font-size: 1em\">and so on.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Adjunct cultures are used to provide or enhance the characteristic flavor and texture of cheese. Common adjunct cultures added during manufacture include <\/span><em style=\"font-size: 1em\">Lactobacillus<\/em> <em style=\"font-size: 1em\">casei <\/em><span style=\"font-size: 1em\">and<\/span><em style=\"font-size: 1em\"> Lactobacillus plantarum <\/em><span style=\"font-size: 1em\">for flavor in Cheddar cheese, or the use of<\/span><em style=\"font-size: 1em\"> Propionibacterium freudenreichii <\/em><span style=\"font-size: 1em\">for eye formation in Swiss. Adjunct cultures can also be used as a smear for smearing the outside of the formed cheese, such as the use of <\/span><em style=\"font-size: 1em\">Brevibacterium linens<\/em><span style=\"font-size: 1em\"> of Gruyere, Brick and Limburger cheeses.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Yeasts and molds are used in some cheeses to provide the characteristic color and flavor. Torula yeast is used in the smear for the ripening of Brick and Limburger cheese. Examples of molds include <\/span><em style=\"font-size: 1em\">Penicillium camemberti<\/em><span style=\"font-size: 1em\"> in Camembert and Brie, and <\/span><em style=\"font-size: 1em\">Penicillium roqueforti<\/em><span style=\"font-size: 1em\"> in Blue cheeses.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\"><em>Milk coagulant<\/em><\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">The type of coagulant used depends on the type of cheese desired. For acid cheeses, an acid source such as acetic acid (the acid in vinegar) or glucono-delta-lactone is used; others include lactic, citric, malic and phosphoric acids. For rennet cheeses, calf rennet or, more commonly, rennet produced through microbial bioprocessing (rennet substitutes) is used.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em;text-align: initial\">The two basic methods for clotting milk for cheese manufacture are by rennet or acid, leading to the respective terms, rennet- or acid-coagulated cheeses. In general, acid-coagulated cheeses are soft, whereas rennet-set cheeses are firm.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Chymosin is the principal milk-clotting enzyme used in cheese making. There are several coagulants of animal and microbial origin. These include calf chymosin, bovine and porcine pepsins, proteases from <\/span><em style=\"font-size: 1em\">Mucor meihei<\/em><span style=\"font-size: 1em\">, <\/span><em style=\"font-size: 1em\">Mucor pusillus<\/em><span style=\"font-size: 1em\">, or <\/span><em style=\"font-size: 1em\">Cryophonectria parasitica<\/em><span style=\"font-size: 1em\"> and fermentation derived chymosins. These enzymes, often called rennets, hydrolyze the micelle-stabilizing \u03ba-casein at or near the Phe(105)\u2013Met(106) bond. The rennet altered milk coagulates in the presence of Ca2+ at ~30\u00b0C. Rennet-hydrolyzed \u03ba-casein gives a hydrophobic <\/span><em style=\"font-size: 1em\">para<\/em><span style=\"font-size: 1em\">-\u03ba-casein (f1\u2013105) that remains with the curd, and a hydrophilic glycol-macropeptide (f106\u2013169) that is lost in the whey. The activity of chymosin and other milk clotting enzymes is pH dependent; activity increasing as the pH is lowered. It is reported that &lt; 10% of the enzyme used to clot milk remains active in cheese and plays a role in the initial stages of ripening. The residual activities of the microbial enzymes <\/span><em style=\"font-size: 1em\">M. meihei<\/em><span style=\"font-size: 1em\"> and <\/span><em style=\"font-size: 1em\">M. pusillus<\/em><span style=\"font-size: 1em\"> are independent of the milk pH at setting.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\"><em>Flavourings<\/em><\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Flavorings may be added depending on the cheese type. Some common ingredients include herbs, spices, hot and sweet peppers, horseradish and port wine.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\"><em>Miscellaneous food additives<\/em><\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Calcium chloride <\/em><\/strong><span style=\"font-size: 1em\">is sometimes added to the cheese milk (@ 0.01-0.02% by weight) to improve the coagulation properties of the milk.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\"><em>Salt (NaCl) <\/em><\/strong><span style=\"text-align: initial;font-size: 1em\">is always used as a seasoning, and helps in prolonging the shelf life of cheese too.\u00a0<\/span><span style=\"text-align: initial;font-size: 1em\">Brine salted cheese are kept in brine.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Annatto or <\/em><\/strong><strong style=\"font-size: 1em\"><em>\u03b2<\/em><\/strong><strong style=\"font-size: 1em\"><em>-carotene <\/em><\/strong><span style=\"font-size: 1em\">colourant may be used, as required, to produce cheese having uniform yellow colour day to day, to cope up with the variation in the colour of cheese based on the feed of the animal or the effect of season.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\"><em>Transglutaminase en<\/em><\/strong><strong style=\"text-align: initial;font-size: 1em\">zyme <\/strong><span style=\"text-align: initial;font-size: 1em\">has been advantageously used to improve the yield of specific cheese varieties.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">Classification of cheese<\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">I.\u00a0<\/strong><strong style=\"text-align: initial;font-size: 1em\">Classification based on the source of milk<\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Some cheeses are categorized by the source of the milk used to produce them or by the added fat content of the milk from which they are produced. Most of the world's commercially available\u00a0<\/span><span style=\"text-align: initial;font-size: 1em\">cheese is made from cow's milk, however some produce cheese from goat and sheep milk. Well-known examples include <\/span><strong style=\"text-align: initial;font-size: 1em\">Roquefort<\/strong><span style=\"text-align: initial;font-size: 1em\"> (produced in France) and <\/span><strong style=\"text-align: initial;font-size: 1em\">Pecorino Romano<\/strong><span style=\"text-align: initial;font-size: 1em\"> (produced in Italy) from ewe's milk. One farm in Sweden produces cheese from moose\u2019s milk. Sometimes cheeses marketed under the same name are made from milk of different animal i.e. Feta style cheeses are made from sheep's milk in Greece and from cow's milk elsewhere.\u00a0<\/span><span style=\"text-align: initial;font-size: 1em\">Double cream cheeses are soft cheeses of cow's milk enriched with cream so that their fat on dry matter content (FDM) is 60\u201375% or, in the case of triple creams, at least 75% FDM.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">II.<\/strong><span style=\"text-align: initial;font-size: 1em\">\u00a0<\/span><strong style=\"text-align: initial;font-size: 1em\">Classification of cheese based on method of coagulation<\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">The cheese varieties may be classified into few families depending on the way in which milk is coagulated. Majority of cheeses are coagulated by rennet, where the milk is converted to a gel by the action of an enzyme \u2013 Rennet. Rennet coagulated cheeses include the majority of major international varieties (e.g. Cheddar, Gouda, Mozzarella, Swiss, Blue, Camembert). The milk may be coagulated by direct acidification producing another family of cheeses. Acid-coagulated varieties, including Cottage cheese and Quark, differ from yoghurt by the fact that some moisture is removed in the form of whey, whereas yoghurt has nearly the same moisture as milk.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">Acid curd cheeses<\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">In the manufacture of acid-curd cheeses, the milk gel is cut or broken, and whey is removed by various means viz., centrifugation, ultrafiltration (UF) and\/or straining the broken gel in muslin cloth bags. In some varieties (e.g. <\/span><strong style=\"font-size: 1em\">Cream cheese<\/strong><span style=\"font-size: 1em\">), whey separation is enhanced by heating the broken gel to temperatures of ~80\u25e6C prior to centrifugation or to ~50\u25e6C prior to UF or straining. In the manufacture of <\/span><strong style=\"font-size: 1em\">Quark<\/strong><span style=\"font-size: 1em\"> cheese, the temperature of the concentrated curd (~18% TS) is cooled rapidly to &lt; 8\u25e6C to limit hydrophobic interactions between the proteins to minimize defects such as sandy, chalky, or grainy mouth-feel, and\/or wheying-off. Manufacture of Cream cheese involves high heat treatment of the curd (~80\u25e6C), addition of NaCl (~0.5g\/100g) and hydrocolloids (blend of xanthan and guar gum, ~0.3g\/100g), mixing, homogenization and cooling.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">III.<\/strong><span style=\"text-align: initial;font-size: 1em\">\u00a0\u00a0\u00a0 <\/span><strong style=\"text-align: initial;font-size: 1em\">Classification based on Firmness (moisture content)<\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">All cheeses, whether rennet or acid set, can be classified as soft, semi-soft (semi-hard), hard, or very hard, depending on their moisture content. Categorizing cheeses by moisture content or firmness is a common practice. The lines between \u2018<\/span><strong style=\"font-size: 1em\">Soft<\/strong><span style=\"font-size: 1em\">\u2019, \u2018<\/span><strong style=\"font-size: 1em\">Semi-soft\u2019<\/strong><span style=\"font-size: 1em\">, \u2018<\/span><strong style=\"font-size: 1em\">Semi-hard\u2019<\/strong><span style=\"font-size: 1em\">, and \u2018<\/span><strong style=\"font-size: 1em\">Hard<\/strong><span style=\"font-size: 1em\">\u2019 are arbitrary. The factor that controls cheese hardness is moisture content, which depends on the pressure with which it is packed into moulds, and also based on the aging time.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: justify;font-size: 1em\">Semi-soft cheese: <\/strong><span style=\"text-align: justify;font-size: 1em\">Semi-soft cheeses and the sub-group,<\/span><strong style=\"text-align: justify;font-size: 1em\"> Monastery <\/strong><span style=\"text-align: justify;font-size: 1em\">cheeses have high moisture content and tend to be mild-tasting. Some well-known such cheese varieties include <\/span><strong style=\"text-align: justify;font-size: 1em\">Havarti<\/strong><span style=\"text-align: justify;font-size: 1em\">, <\/span><strong style=\"text-align: justify;font-size: 1em\">Munster <\/strong><span style=\"text-align: justify;font-size: 1em\">and<\/span><strong style=\"text-align: justify;font-size: 1em\"> Port Salut.<\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\">Medium-hard cheese: <\/strong><span style=\"font-size: 1em\">Cheeses that range in texture from semi-soft to firm include Swiss-style cheeses such as <\/span><strong style=\"font-size: 1em\">Emmental<\/strong><span style=\"font-size: 1em\"> and <\/span><strong style=\"font-size: 1em\">Gruyere<\/strong><span style=\"font-size: 1em\">. The same bacteria that give such cheeses their\u00a0<\/span><span style=\"font-size: 1em\">eyes also contribute to their aromatic and sharp flavours. Other semi-soft to firm cheeses includes <\/span><strong style=\"font-size: 1em\">Gouda<\/strong><span style=\"font-size: 1em\">, <\/span><strong style=\"font-size: 1em\">Edam<\/strong><span style=\"font-size: 1em\">, <\/span><strong style=\"font-size: 1em\">Jarlsberg<\/strong><span style=\"font-size: 1em\"> and <\/span><strong style=\"font-size: 1em\">Cantal<\/strong><span style=\"font-size: 1em\">. Cheeses of this type are ideal for melting and are often served on toast for quick snacks or simple meals.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\">Semi-hard or hard cheese: <\/strong><span style=\"font-size: 1em\">Harder cheeses have lower moisture content than softer cheeses. They are generally packed into moulds under greater pressure and aged for a longer time than the soft cheeses. Cheeses that are classified as semi-hard to hard include Cheddar, originating in the village of Cheddar in England. <\/span><strong style=\"font-size: 1em\">Cheddar<\/strong><span style=\"font-size: 1em\"> is one of a family of semi-hard or hard cheeses (including <\/span><strong style=\"font-size: 1em\">Cheshire<\/strong><span style=\"font-size: 1em\"> and <\/span><strong style=\"font-size: 1em\">Gloucester<\/strong><span style=\"font-size: 1em\">), whose curd is cut, gently heated, piled, and stirred before being pressed into forms. <\/span><strong style=\"font-size: 1em\">Colby<\/strong><span style=\"font-size: 1em\"> and <\/span><strong style=\"font-size: 1em\">Monterey Jack<\/strong><span style=\"font-size: 1em\"> are similar but milder cheeses; their curd is rinsed before it is pressed, washing away some acidity and minerals. A similar curd-washing takes place when making the Dutch cheeses <\/span><strong style=\"font-size: 1em\">Edam<\/strong><span style=\"font-size: 1em\"> and <\/span><strong style=\"font-size: 1em\">Gouda<\/strong><span style=\"font-size: 1em\">.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Natural cheese is most often classified according to moisture content. Very high moisture cheeses, such as cream and cottage, are not aged and, thus, are often called \u2018Fresh cheeses\u2019. Hard cheeses also referred to as \u2018grating cheese\u2019 such as <\/span><strong style=\"font-size: 1em\">Parmesan<\/strong><span style=\"font-size: 1em\"> and <\/span><strong style=\"font-size: 1em\">Pecorino Romano<\/strong><span style=\"font-size: 1em\"> are firmly packed into large forms and aged for months or years.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">The classification of cheese based on moisture content and the cheese categorized based on its texture is depicted in Tables 2 and 3 respectively.<\/span><\/p>\r\n\r\n<\/div>\r\n<div>\r\n\r\n<img class=\"size-full wp-image-137 aligncenter\" src=\"http:\/\/ftp04.epgpbooks.inflibnet.ac.in\/wp-content\/uploads\/sites\/44\/2018\/07\/1-29.png\" alt=\"\" width=\"666\" height=\"318\" \/>\r\n\r\n<\/div>\r\n<img class=\"size-full wp-image-138 aligncenter\" src=\"http:\/\/ftp04.epgpbooks.inflibnet.ac.in\/wp-content\/uploads\/sites\/44\/2018\/07\/1-30.png\" alt=\"\" width=\"671\" height=\"85\" \/>\r\n<div>\r\n\r\n&nbsp;\r\n<p style=\"text-align: justify\">Much cheese is consumed in the form of processed cheese, e.g. on cheeseburgers. Processed cheese is produced by shredding and melting young, natural cheese together with emulsifying salts into a smooth molten mass which is then cooled and molded into the shape desired.<\/p>\r\n&nbsp;\r\n\r\n<strong>V.\u00a0\u00a0 Classification based on non-dairy ingredients used<\/strong>\r\n\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong>Cheese analogues: <\/strong>Another commercial product is analogue (or imitation cheese). Cheese analogues are cheese-like products formulated from ingredients, usually a form of casein powder known as rennet casein and a source of fat (either butterfat or usually vegetable oil). Cheese analogues are used mainly as ingredients in consumer-ready meals.<\/p>\r\n&nbsp;\r\n\r\n<strong>VI. Classification based on brining\/pickling<\/strong>\r\n\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong>Brine\/Pickled cheeses: <\/strong>Brined or pickled cheese is matured in a solution of brine in an airtight or semi-permeable container. This process gives the cheese good stability, inhibiting bacterial growth, even in hot countries. Brined cheeses may be soft or hard, varying in moisture content and in colour and flavour, according to the type of milk used. All such brined cheeses are rindless, and generally taste clean, salty and acidic when fresh, developing some piquancy when aged, and most will be white. Varieties of brined cheese include <strong>Feta<\/strong>, <strong>Halloumi<\/strong>, <strong>Serene<\/strong> and <strong>Telemea<\/strong>, a variant of<strong> Brinza<\/strong>. Brined cheese is the main type of cheese produced and eaten in the Middle East and Mediterranean areas.<\/p>\r\n&nbsp;\r\n\r\n<strong>VII. Classification based on mold used for ripening<\/strong>\r\n\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong>Mold cheeses: <\/strong>There are three main categories of cheese in which the presence of mold is an important feature. These are soft-ripened cheeses, washed rind cheeses and blue cheeses.<\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong>Soft-ripened: <\/strong>Soft-ripened cheeses begin firm and rather chalky in texture, but are aged from the exterior inwards by exposing them to mold. The mold may be a velvety <em>bloom<\/em> of <em>Penicillium<\/em> <em>candida <\/em>or<em> P. camemberti <\/em>that forms a flexible white crust and contributes to the smooth, runny, or gooey textures and more intense flavour of such aged cheeses. Brie and Camembert are made by allowing white mold to grow on the outside of a soft cheese for a few days or weeks. Goat's milk cheeses are often treated in a similar manner, sometimes with white molds (Ch\u00e8vre-Bo\u00eete) and sometimes with blue.<\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\">Washed-rind: <\/strong><span style=\"font-size: 1em\">Washed-rind cheeses are soft in character and ripen inwards like those with white molds. Washed-rind cheeses are periodically cured in a solution of salt water brine and\/or mold-bearing agents that may include beer, wine, brandy or spices, making their surfaces amenable to bacteria <\/span><em style=\"font-size: 1em\">Brevibacterium linens<\/em><span style=\"font-size: 1em\"> (the reddish-orange \"smear bacteria\") that impart pungent odour and distinctive flavour, and produce a firm, flavourful rind around the cheese. Washed-rind cheeses can be soft (<\/span><strong style=\"font-size: 1em\">Limburger<\/strong><span style=\"font-size: 1em\">), semi-hard, or hard (<\/span><strong style=\"font-size: 1em\">Appenzeller<\/strong><span style=\"font-size: 1em\">).<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\">Smear-ripened: <\/strong><span style=\"font-size: 1em\">Some washed-rind cheeses are also smear-ripened with solutions of bacteria or fungi, most commonly <\/span><em style=\"font-size: 1em\">Brevibacterium linens<\/em><span style=\"font-size: 1em\">, <\/span><em style=\"font-size: 1em\">Debaryomyces hansenii<\/em><span style=\"font-size: 1em\"> and\/or <\/span><em style=\"font-size: 1em\">Geotrichum<\/em> <em style=\"font-size: 1em\">candidum <\/em><span style=\"font-size: 1em\">which usually gives them a stronger flavour as the cheese matures. Many, but not all, of these cheeses have a distinctive pinkish or orange colouring of the exterior. Unlike other washed-rind cheeses, the washing is done to ensure uniform growth of desired bacteria or fungi and to prevent the growth of undesired molds. Notable examples of smear-ripened cheeses include <\/span><strong style=\"font-size: 1em\">Munster<\/strong><span style=\"font-size: 1em\"> and <\/span><strong style=\"font-size: 1em\">Port Salut<\/strong><span style=\"font-size: 1em\">.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\">Blue: <\/strong><span style=\"font-size: 1em\">Blue cheese is created by inoculating a cheese with <\/span><em style=\"font-size: 1em\">Penicillium roqueforti<\/em><span style=\"font-size: 1em\"> or <\/span><em style=\"font-size: 1em\">Penicillium<\/em> <em style=\"font-size: 1em\">glaucum<\/em><span style=\"font-size: 1em\">. This is done while the cheese is still in the form of loosely pressed curds, and may be further enhanced by piercing a ripening block of cheese with skewers. The mold grows within the cheese as it ages. These cheeses have distinct blue veins, which gives them their name and, often, assertive flavours. The moulds range from pale green to dark blue, and may be accompanied by white and crusty brown molds. The cheese texture can be soft or firm. Some of the renowned cheeses of this type include Roquefort, Gorgonzola and Stilton.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">Type of milk used for cheese making<\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Majority of the cheese is made from cow\u2019s milk. However, buffalo milk is also used for cheese making in few countries including Italy, India, Pakistan, etc. Cow milk is more suited for preparation of Cheddar cheese compared to buffalo milk.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Sheep\u2019s milk is more suited than cows\u2019 milk for the production of piquant-flavoured cheeses, such as Pecorino Romano owing to the higher concentration of short-chain fatty acids (C4:0, C6:0, C8:0, C10:0 and C12:0) in its milk fat, which contributes to such flavour profile. The low carotenoid content of sheep\u2019s and goat\u2019s milk relative to cows\u2019 milk is also more suited to the manufacture of white-coloured cheese varieties, such as Manchego and Roquefort cheeses. However, cows\u2019 milk can vary dramatically in carotenoid content from ~4 to 13 mg\/g fat, depending on breed, feed type and stage of lactation. In contrast, sheep\u2019s milk is unlikely to be suitable for the manufacture of Cheddar cheese, in which the rich straw-yellow colour, relatively low level of lipolysis and non-rancid flavour are key quality criteria.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Owing to its low ratio of as1- to as2-casein, goat milk gels much more slowly than cow milk on rennet addition and forms markedly weaker gels and curds, and is consequently much more suited for the manufacture of soft cheese, but less suited for manufacture of hard cheeses, such as Emmental, Gouda, Mozzarella and Cheddar. Apart from the altered proportions of individual caseins, other factors such as the (generally) lower contents of calcium and total casein may also contribute to the relatively poor rennet coagulation characteristics of goat milk.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">Composition of milk affecting the cheese quality and yield<\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">The gross composition of cheese milk, especially the concentrations of casein and fat, has a major influence on several aspects of cheese manufacture, including rennet coagulability, gel strength, curd syneresis, cheese composition, yield and quality.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Casein: <\/em><\/strong><span style=\"font-size: 1em\">Casein, which is typically present at 2.5% in cows\u2019 milk, is the main structural protein of both rennet- and acid-induced milk gels.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Whey protein: <\/em><\/strong><span style=\"font-size: 1em\">Whey protein in cows\u2019 milk is typically ~ 0.6\u20130.7%. On heat-induced denaturation, the whey proteins can interact via thiol\u2013disulphide bonds with other whey proteins and with \u03ba-casein. High heat treatment of milk (\u2265 82\u25e6C for 26 s) is generally undesirable for rennet-curd cheeses as denatured protein at levels of \u2265 25% of total impedes the ability of the milk to gel on rennet addition, causes marked deterioration in melt properties of the cheese.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Milk fat: <\/em><\/strong><span style=\"font-size: 1em\">The principal fatty acids in milk fat on a total weight basis are palmitic, oleic and myristic. While the shorter chain fatty acids (C4:0 to C12:0) are present in lower quantities on a weight basis, they are primarily responsible for the piquant flavour of hard Italian cheeses, such as Parmesan and Romano, or the sharp goaty\/sheep-like flavours of soft goat milk cheeses. These fatty acids are hydrolyzed from the milk fat triacylglycerols by lipase enzymes, formed during maturation.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Minerals: <\/em><\/strong><span style=\"font-size: 1em\">The insoluble (colloidal salts associated with the casein) and soluble (serum) salts exist in equilibrium. While the soluble citrate and phosphate competes with the casein for calcium ions, the polyvalent casein is the main player controlling the equilibrium concentrations of salts.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">The calcium content of milk changes with stage of lactation and season. Variation in calcium content of milk is expected to affect the level of intact casein, citrate, pH, casein micelle size, ionic strength that interactively affect rennet gelation of milk and cheese making efficiency yield.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Apart from variations in the levels of gross constituents (protein, fat), seasonal variation can also occur in the \u2018quality\u2019 of the protein in terms of its ability to form a gel with satisfactory curd firming and syneretic (wheying off) properties and to produce cheese curd of satisfactory\u00a0<\/span><span style=\"font-size: 1em;text-align: initial\">moisture content. Late-lactation milk generally gives poor rennet coagulability (low curd firmness), impaired curd syneresis, high moisture Cheddar cheese and lower recovery of milk fat to cheese. Low lactose levels in milk generally coincide with high SCC and levels of plasmin activity, and may be indicative of udder infection.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">Factors affecting the quality of milk for cheese manufacture<\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">The quality of milk for cheese manufacture is affected by five key parameters, namely composition, microbiology, somatic cell count (SCC), enzymatic activity and levels of residues\/contaminants.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\">Milk enzymes: <\/strong><span style=\"font-size: 1em\">Milk enzymes (trypsin like proteinase, plasmin proteinase, etc.) originate from a number of sources, viz., milk itself, bacterial contamination (proteinase and lipase from psychrotrophic bacteria) and somatic cells present in milk. Proteinase and lipase enzymes can have significant effects on cheese making properties, yield and quality.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Microbial quality and contamination of milk: <\/em><\/strong><span style=\"font-size: 1em\">Contamination outside the udder can originate from two main sources, namely the environment of the cow and milk contact surfaces. Milking heavily soiled cows could result in bulk milk counts exceeding 1 \u00d7104 cfu\/ ml; contamination of milk by unclean teats can contaminate the milk with heat-resistant bacterial spores, which can be problematic for the cheese industry. Clostridium species (<\/span><em style=\"font-size: 1em\">Clostridium tyrobutyricum -<\/em><span style=\"font-size: 1em\"> sporeformer) can cause problems with late gas-blowing development in some types of cheese; main source of clostridia in milk is feeding of poor-quality silage. Refrigerated storage of milk is conducive to the growth of psychrotrophic bacteria. These bacteria typically come from the cows\u2019 environment such as dirt and manure. Heat treatment of milk (thermization, pasteurisation) at the dairy may destroy the psychrotrophic bacteria, but not necessarily the products of their metabolism (free fatty acids - FFA) or their enzymes that can adversely affect rennet coagulation properties of the milk, cheese yield and quality. Psychrotrophic bacteria produce extracellular enzymes capable of hydrolyzing proteins and fats of milk. Thus, they can increase the likelihood of off-flavours and odours and cause changes in body, texture and colour.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Somatic cell count of milk: <\/em><\/strong><span style=\"font-size: 1em\">Factors that contribute to increases in somatic cell count (SCC) of bulk milk include subclinical mastitis, advance in stage of lactation, lactation number, stress and poor nutrition. Somatic cells are present at low levels (&lt; 100 \u00d7 103 cells per ml) in normal milk from healthy animals during mid lactation. Increasing SCC in the range 1 \u00d7 105 to 6 \u00d7 105 cells per ml of milk resulted in an increase in rennet coagulation time and reduction in curd-firming rate and cheese curd firmness; adversely affecting the cheese yield.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Genetic variants of milk<\/em><\/strong><em style=\"font-size: 1em\">: <\/em><span style=\"font-size: 1em\">Compared to the AA variants, the BB genotypes of both \u03ba-casein and \u03b2-lg are generally associated with a higher concentration of casein and superior rennet coagulation properties, as reflected by higher curd firming rates and gel firmness after a given\u00a0<\/span><span style=\"font-size: 1em;text-align: initial\">renneting time. The BB variants of \u03ba-casein and \u03b2-lg have been associated with superior cheese making properties, as reflected by the higher recovery of fat, a lower level of curd fines, and higher cheese yields for a range of varieties, including Cheddar, Edam, Gouda, Mozzarella and Camembert.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Chemical residues in milk: <\/em><\/strong><span style=\"font-size: 1em\">The presence of chemical residues and contaminants in milk is of public health concern and a cause of economic loss to the cheese industry. A range of veterinary drugs including antibiotics are commonly administered to animals to combat diseases, the most prevalent being mastitis. Milk indicated as positive for antibiotic residues on receipt at dairy companies is discarded. Antimicrobial residues (i.e. antibiotics) can lead to partial or complete inhibition of acid production by starter cultures, inadequate ripening and ageing of cheese and cause defects of flavour and texture of cheese products. Other sources of contaminants to milk include cleaning and disinfecting agents (trichloromethane, iodine) and compounded animal feeds (mycotoxins).<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">Pre-treatment of milk for cheese making<\/strong><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Cheese making is favoured if milk is subjected to few pre-treatments viz., bactofugation, microfiltration, standardization for casein\/fat ratio, homogenization, pasteurization, thermization and so on.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Bactofugation of milk: <\/em><\/strong><span style=\"font-size: 1em\">The introduction of the bactofuge has helped to control the quality of milk in regions of the world where the bacteriological quality of the milk is poor. The bactofuge is a high-speed centrifuge specially designed for removing bacteria and bacterial spores from milk at high temperatures; decreasing the bacterial numbers by &gt; 95.0%. About 6.0% of milk solids are present in the sludge, which is UHT treated at 130\u2013140\u00b0C\/few seconds and added back to the cheese milk, to avoid losses.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Standardization of cheese milk: <\/em><\/strong><span style=\"font-size: 1em\">Milk is standardized by adjusting the casein to fat (C\/F) ratio (usually 0.7 for Cheddar and Gouda-type cheeses) in milk to control the percent fat on dry matter (FDM) (prescribed in legal standards) to produce consistent cheese. Methods to increase the casein content of cheese milk include addition of skim-milk powder, condensed skim, milk protein concentrate or caseinates or the removal of fat as cream.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Pasteurization of milk: <\/em><\/strong><span style=\"font-size: 1em\">Cheese milk must be adequately pasteurized (72\u00b0C\/15 s). In few countries, the use of raw milk for cheese making is still prevalent. The pasteurization temperature adopted should be at minimal temperature-time combination as dictated by law, since higher temperatures has an adverse influence on rennetability and thus cheese texture.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Thermization of milk: <\/em><\/strong><span style=\"font-size: 1em\">Extended cold storage of milk may lead to development of high psychrotrophic population that produces proteolytic and lipolytic enzymes resistant to pasteurization. These enzymes can reduce cheese yield and may adversely affect cheese quality.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Thermization of milk at sub pasteurization temperature (i.e. 57-68oC for 10-15 s) on reception at cheese factory reduces the number of psychrotrophs in milk and hence may prove advantageous with regard to cheese yield.<\/span><\/p>\r\n&nbsp;\r\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Homogenization of cheese milk: <\/em><\/strong><span style=\"font-size: 1em\">Usually cheese milk is not subjected to homogenization treatment. However, it may be beneficial in few cheese varieties like Blue, Feta, Akawi, etc. and especially in increasing the moisture retention in case of low-fat cheeses. Usually low fat cream (15-20% fat) is subjected to homogenization, referred to as \u2018partial homogenization\u2019. Recombined milk cheese is invariably made employing homogenization. Usually lower homogenization pressures (25-50 kg\/cm2) are adopted to avoid deleterious effect on the body and texture of cheese. Homogenization leads to whiter cheese and improves the flavor too. Use of homogenized milk helps in increasing Mozzarella cheese yield.<\/span><\/p>\r\n\r\n<\/div>\r\n<table>\r\n<tbody>\r\n<tr>\r\n<td><strong>you can view video on Technology of Cheese Manufacture \u2013I: Milk quality, Ingredients andClassification of cheese<\/strong><\/td>\r\n<td><a href=\"https:\/\/youtu.be\/Md_ESzq2Sww\" target=\"_blank\" rel=\"noopener\"><img class=\"alignnone wp-image-120\" src=\"http:\/\/epgpbooks.inflibnet.ac.in\/wp-content\/uploads\/2018\/11\/download.png\" alt=\"\" width=\"36\" height=\"36\" \/><\/a><\/td>\r\n<\/tr>\r\n<\/tbody>\r\n<\/table>\r\n<strong>Web links<\/strong>\r\n<ul>\r\n \t<li>www.agro.afacereamea.ro\/wp...\/Technology%20of%20Cheesemaking.pdf<\/li>\r\n<\/ul>\r\n&nbsp;","rendered":"<div><span style=\"float: right\"><a href=\"https:\/\/youtu.be\/Md_ESzq2Sww\" target=\"_blank\" rel=\"noopener\"><img decoding=\"async\" src=\"http:\/\/epgpbooks.inflibnet.ac.in\/wp-content\/uploads\/2018\/11\/download.png\" alt=\"epgp books\" width=\"75px\" height=\"75px;\" \/><\/a><br \/>\n<\/span><\/div>\n<div>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p>&nbsp;<\/p>\n<p><strong>Definition of cheese<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\">As per Food Safety and Standards Authority of India (FSSAI), cheese means the ripened or unripened soft or semihard, hard and extra hard product, which may be coated with food grade waxes or polyfilm, and in which the whey protein \/ casein ratio does not exceed that of milk. Cheese is obtained by coagulating wholly or partly milk and\/ or products obtained from milk through the action of nonanimal rennet or other suitable coagulating agents and by partially draining the whey resulting from such coagulation and\/ or processing techniques involving coagulation of milk and\/ or products obtained from milk which give a final product with similar physical, chemical and organoleptic characteristics. The product may contain starter cultures of harmless lactic acid and \/ or flavour producing bacteria and cultures of other harmless microorganisms, safe and suitable enzymes and sodium chloride. It may be in the form of blocks, slices, cut, shredded or grated cheese.<\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\">The cheese may contain maximum of 3000 ppm sorbic acid or its Na, K or Ca salts calculated as sorbic acid, and or 12.5 ppm of nisin, either singly or in combination. Natamycin may be used for surface treatment only.<\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\">(i)\u00a0\u00a0 <strong>Ripened cheese <\/strong>is cheese which is not ready for consumption shortly after manufacture but which must be held for some time at such temperature and other conditions as will result in necessary biochemical and physical changes characterizing the cheese in question.<\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\">(ii)\u00a0\u00a0\u00a0 <strong>Mould Ripened cheese <\/strong>is a ripened cheese in which the ripening has been accomplished primarily by the development of characteristic mould growth through the interior and\/ or on the surface of the cheese.<\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\">(iii)\u00a0\u00a0\u00a0 <strong>Unripened cheese <\/strong>including fresh cheese is cheese which is ready for consumption shortly after manufacture.<\/p>\n<p>&nbsp;<\/p>\n<p>The specifications for cheese as per FSSAI are collated in Table 1.<\/p>\n<\/div>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"size-full wp-image-135 aligncenter\" src=\"http:\/\/ftp04.epgpbooks.inflibnet.ac.in\/wp-content\/uploads\/sites\/44\/2018\/07\/1-27.png\" alt=\"\" width=\"649\" height=\"111\" srcset=\"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-27.png 649w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-27-300x51.png 300w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-27-65x11.png 65w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-27-225x38.png 225w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-27-350x60.png 350w\" sizes=\"auto, (max-width: 649px) 100vw, 649px\" \/><\/p>\n<div>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"size-full wp-image-136 aligncenter\" src=\"http:\/\/ftp04.epgpbooks.inflibnet.ac.in\/wp-content\/uploads\/sites\/44\/2018\/07\/1-28.png\" alt=\"\" width=\"655\" height=\"125\" srcset=\"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-28.png 655w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-28-300x57.png 300w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-28-65x12.png 65w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-28-225x43.png 225w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-28-350x67.png 350w\" sizes=\"auto, (max-width: 655px) 100vw, 655px\" \/><\/p>\n<p style=\"text-align: justify\">There are hundreds of varieties of natural cheese now being produced worldwide. However, the vast majority of cheese consumed in India remains limited to only a few varieties such as Cheddar as processed cheese or processed cheese spread, Swiss, Gouda and Mozzarella.<\/p>\n<p>&nbsp;<\/p>\n<p><strong>Principle of Cheese manufacture<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\">Cheese\u00a0 is\u00a0\u00a0 a\u00a0\u00a0 concentrated\u00a0 protein\u00a0\u00a0 gel,\u00a0\u00a0 which\u00a0\u00a0 occludes\u00a0\u00a0 fat\u00a0 and\u00a0\u00a0 moisture.\u00a0\u00a0 Its\u00a0 manufacture essentially involves gelation of cheese milk, dehydration of the gel to form a curd and treatment of the curd (e.g. dry stirring, cheddaring, texturisation, salting, molding, pressing). The molded curd may be consumed fresh (shortly after manufacture, for example within 1 week) or matured for periods of ~2 weeks to 2 years to form a ripened cheese.<\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\">Just after manufacture, rennet-curd cheeses are usually matured or ripened by holding under specific conditions of temperature and humidity for periods which range from ~ 2 to 4 weeks for soft cheeses (for Camembert-type cheeses) to ~ 2 years for some hard cheeses (for Parmesan- style cheeses). During this period, physico-chemical changes take place which transform the \u2018rubbery\/chewy\u2019\u00a0 textured\u00a0 fresh\u00a0 cheese\u00a0 curd\u00a0 to\u00a0 the\u00a0 finished\u00a0 cheese\u00a0 with\u00a0 the\u00a0 desired\u00a0 quality characteristics, e.g. a soft, smooth, short and adhesive texture with a mushroom-like flavour and creamy mouth-feel for Camembert, or a long, elastic sliceable texture and mild, sweet flavour for Leerdammer cheese.<\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong>Ingredients used in cheese making<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong><em>Milk and milk solids<\/em><\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\">The main ingredient used in cheese making is milk. Cheese is made using cow, buffalo, goat, sheep or a blend of these milks. However, in India cheese can only be made from cow milk, buffalo milk or a combination of the two milks as per FSSAI.<\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Milk derived ingredients like white butter, skim milk powder, whey powder, butter milk powder, chakka (partly whey drained fermented curd) are permitted for use in preparation of \u2018Processed cheese spread\u2019.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\"><em>Starter cultures<\/em><\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Cultures for cheese making are called lactic acid bacteria (LAB) because their primary source of energy is lactose in milk and their primary metabolic product is lactic acid. Starter cultures are used early in the cheese making process to assist coagulation by lowering the pH prior to rennet addition. The metabolism of the starter cultures contribute desirable flavor compounds, and help prevent the growth of spoilage organisms. Starters play a role in the acidification of cheese milk to the desired pH during manufacture. In addition, starter bacteria play an important role in the maturation and flavour development of cheese. Current starter technologies include genetically modified starters, adjunct starters and fast-acid starters, which are available commercially as liquid, frozen or dried. Frozen cultures are available in concentrated or unconcentrated forms and inoculated directly into milk, so called \u2018direct vat cultures\u2019. Dried starters may be spray-dried or preferably freeze-dried.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Typical\u00a0\u00a0 starter\u00a0\u00a0 bacteria\u00a0\u00a0 include\u00a0\u00a0\u00a0 <\/span><em style=\"font-size: 1em\">Lactococcus<\/em><span style=\"font-size: 1em\">\u00a0\u00a0\u00a0\u00a0 <\/span><em style=\"font-size: 1em\">lactis <\/em><span style=\"font-size: 1em\">subsp.<\/span><em style=\"font-size: 1em\"> lactis <\/em><span style=\"font-size: 1em\">or<\/span><em style=\"font-size: 1em\"> cremoris<\/em><span style=\"font-size: 1em\">,<\/span><em style=\"font-size: 1em\"> Streptococcus\u00a0<\/em><em style=\"font-size: 1em\">salivarius <\/em><span style=\"font-size: 1em\">subsp.<\/span><em style=\"font-size: 1em\"> thermophilus<\/em><span style=\"font-size: 1em\">,<\/span><em style=\"font-size: 1em\"> Lactobacillus delbruckii <\/em><span style=\"font-size: 1em\">subsp.<\/span><em style=\"font-size: 1em\"> bulgaricus<\/em><span style=\"font-size: 1em\">,<\/span><em style=\"font-size: 1em\"> Lactobacillus helveticus <\/em><span style=\"font-size: 1em\">and so on.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Adjunct cultures are used to provide or enhance the characteristic flavor and texture of cheese. Common adjunct cultures added during manufacture include <\/span><em style=\"font-size: 1em\">Lactobacillus<\/em> <em style=\"font-size: 1em\">casei <\/em><span style=\"font-size: 1em\">and<\/span><em style=\"font-size: 1em\"> Lactobacillus plantarum <\/em><span style=\"font-size: 1em\">for flavor in Cheddar cheese, or the use of<\/span><em style=\"font-size: 1em\"> Propionibacterium freudenreichii <\/em><span style=\"font-size: 1em\">for eye formation in Swiss. Adjunct cultures can also be used as a smear for smearing the outside of the formed cheese, such as the use of <\/span><em style=\"font-size: 1em\">Brevibacterium linens<\/em><span style=\"font-size: 1em\"> of Gruyere, Brick and Limburger cheeses.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Yeasts and molds are used in some cheeses to provide the characteristic color and flavor. Torula yeast is used in the smear for the ripening of Brick and Limburger cheese. Examples of molds include <\/span><em style=\"font-size: 1em\">Penicillium camemberti<\/em><span style=\"font-size: 1em\"> in Camembert and Brie, and <\/span><em style=\"font-size: 1em\">Penicillium roqueforti<\/em><span style=\"font-size: 1em\"> in Blue cheeses.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\"><em>Milk coagulant<\/em><\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">The type of coagulant used depends on the type of cheese desired. For acid cheeses, an acid source such as acetic acid (the acid in vinegar) or glucono-delta-lactone is used; others include lactic, citric, malic and phosphoric acids. For rennet cheeses, calf rennet or, more commonly, rennet produced through microbial bioprocessing (rennet substitutes) is used.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em;text-align: initial\">The two basic methods for clotting milk for cheese manufacture are by rennet or acid, leading to the respective terms, rennet- or acid-coagulated cheeses. In general, acid-coagulated cheeses are soft, whereas rennet-set cheeses are firm.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Chymosin is the principal milk-clotting enzyme used in cheese making. There are several coagulants of animal and microbial origin. These include calf chymosin, bovine and porcine pepsins, proteases from <\/span><em style=\"font-size: 1em\">Mucor meihei<\/em><span style=\"font-size: 1em\">, <\/span><em style=\"font-size: 1em\">Mucor pusillus<\/em><span style=\"font-size: 1em\">, or <\/span><em style=\"font-size: 1em\">Cryophonectria parasitica<\/em><span style=\"font-size: 1em\"> and fermentation derived chymosins. These enzymes, often called rennets, hydrolyze the micelle-stabilizing \u03ba-casein at or near the Phe(105)\u2013Met(106) bond. The rennet altered milk coagulates in the presence of Ca2+ at ~30\u00b0C. Rennet-hydrolyzed \u03ba-casein gives a hydrophobic <\/span><em style=\"font-size: 1em\">para<\/em><span style=\"font-size: 1em\">-\u03ba-casein (f1\u2013105) that remains with the curd, and a hydrophilic glycol-macropeptide (f106\u2013169) that is lost in the whey. The activity of chymosin and other milk clotting enzymes is pH dependent; activity increasing as the pH is lowered. It is reported that &lt; 10% of the enzyme used to clot milk remains active in cheese and plays a role in the initial stages of ripening. The residual activities of the microbial enzymes <\/span><em style=\"font-size: 1em\">M. meihei<\/em><span style=\"font-size: 1em\"> and <\/span><em style=\"font-size: 1em\">M. pusillus<\/em><span style=\"font-size: 1em\"> are independent of the milk pH at setting.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\"><em>Flavourings<\/em><\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Flavorings may be added depending on the cheese type. Some common ingredients include herbs, spices, hot and sweet peppers, horseradish and port wine.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\"><em>Miscellaneous food additives<\/em><\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Calcium chloride <\/em><\/strong><span style=\"font-size: 1em\">is sometimes added to the cheese milk (@ 0.01-0.02% by weight) to improve the coagulation properties of the milk.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\"><em>Salt (NaCl) <\/em><\/strong><span style=\"text-align: initial;font-size: 1em\">is always used as a seasoning, and helps in prolonging the shelf life of cheese too.\u00a0<\/span><span style=\"text-align: initial;font-size: 1em\">Brine salted cheese are kept in brine.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Annatto or <\/em><\/strong><strong style=\"font-size: 1em\"><em>\u03b2<\/em><\/strong><strong style=\"font-size: 1em\"><em>-carotene <\/em><\/strong><span style=\"font-size: 1em\">colourant may be used, as required, to produce cheese having uniform yellow colour day to day, to cope up with the variation in the colour of cheese based on the feed of the animal or the effect of season.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\"><em>Transglutaminase en<\/em><\/strong><strong style=\"text-align: initial;font-size: 1em\">zyme <\/strong><span style=\"text-align: initial;font-size: 1em\">has been advantageously used to improve the yield of specific cheese varieties.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">Classification of cheese<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">I.\u00a0<\/strong><strong style=\"text-align: initial;font-size: 1em\">Classification based on the source of milk<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Some cheeses are categorized by the source of the milk used to produce them or by the added fat content of the milk from which they are produced. Most of the world&#8217;s commercially available\u00a0<\/span><span style=\"text-align: initial;font-size: 1em\">cheese is made from cow&#8217;s milk, however some produce cheese from goat and sheep milk. Well-known examples include <\/span><strong style=\"text-align: initial;font-size: 1em\">Roquefort<\/strong><span style=\"text-align: initial;font-size: 1em\"> (produced in France) and <\/span><strong style=\"text-align: initial;font-size: 1em\">Pecorino Romano<\/strong><span style=\"text-align: initial;font-size: 1em\"> (produced in Italy) from ewe&#8217;s milk. One farm in Sweden produces cheese from moose\u2019s milk. Sometimes cheeses marketed under the same name are made from milk of different animal i.e. Feta style cheeses are made from sheep&#8217;s milk in Greece and from cow&#8217;s milk elsewhere.\u00a0<\/span><span style=\"text-align: initial;font-size: 1em\">Double cream cheeses are soft cheeses of cow&#8217;s milk enriched with cream so that their fat on dry matter content (FDM) is 60\u201375% or, in the case of triple creams, at least 75% FDM.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">II.<\/strong><span style=\"text-align: initial;font-size: 1em\">\u00a0<\/span><strong style=\"text-align: initial;font-size: 1em\">Classification of cheese based on method of coagulation<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">The cheese varieties may be classified into few families depending on the way in which milk is coagulated. Majority of cheeses are coagulated by rennet, where the milk is converted to a gel by the action of an enzyme \u2013 Rennet. Rennet coagulated cheeses include the majority of major international varieties (e.g. Cheddar, Gouda, Mozzarella, Swiss, Blue, Camembert). The milk may be coagulated by direct acidification producing another family of cheeses. Acid-coagulated varieties, including Cottage cheese and Quark, differ from yoghurt by the fact that some moisture is removed in the form of whey, whereas yoghurt has nearly the same moisture as milk.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">Acid curd cheeses<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">In the manufacture of acid-curd cheeses, the milk gel is cut or broken, and whey is removed by various means viz., centrifugation, ultrafiltration (UF) and\/or straining the broken gel in muslin cloth bags. In some varieties (e.g. <\/span><strong style=\"font-size: 1em\">Cream cheese<\/strong><span style=\"font-size: 1em\">), whey separation is enhanced by heating the broken gel to temperatures of ~80\u25e6C prior to centrifugation or to ~50\u25e6C prior to UF or straining. In the manufacture of <\/span><strong style=\"font-size: 1em\">Quark<\/strong><span style=\"font-size: 1em\"> cheese, the temperature of the concentrated curd (~18% TS) is cooled rapidly to &lt; 8\u25e6C to limit hydrophobic interactions between the proteins to minimize defects such as sandy, chalky, or grainy mouth-feel, and\/or wheying-off. Manufacture of Cream cheese involves high heat treatment of the curd (~80\u25e6C), addition of NaCl (~0.5g\/100g) and hydrocolloids (blend of xanthan and guar gum, ~0.3g\/100g), mixing, homogenization and cooling.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">III.<\/strong><span style=\"text-align: initial;font-size: 1em\">\u00a0\u00a0\u00a0 <\/span><strong style=\"text-align: initial;font-size: 1em\">Classification based on Firmness (moisture content)<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">All cheeses, whether rennet or acid set, can be classified as soft, semi-soft (semi-hard), hard, or very hard, depending on their moisture content. Categorizing cheeses by moisture content or firmness is a common practice. The lines between \u2018<\/span><strong style=\"font-size: 1em\">Soft<\/strong><span style=\"font-size: 1em\">\u2019, \u2018<\/span><strong style=\"font-size: 1em\">Semi-soft\u2019<\/strong><span style=\"font-size: 1em\">, \u2018<\/span><strong style=\"font-size: 1em\">Semi-hard\u2019<\/strong><span style=\"font-size: 1em\">, and \u2018<\/span><strong style=\"font-size: 1em\">Hard<\/strong><span style=\"font-size: 1em\">\u2019 are arbitrary. The factor that controls cheese hardness is moisture content, which depends on the pressure with which it is packed into moulds, and also based on the aging time.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: justify;font-size: 1em\">Semi-soft cheese: <\/strong><span style=\"text-align: justify;font-size: 1em\">Semi-soft cheeses and the sub-group,<\/span><strong style=\"text-align: justify;font-size: 1em\"> Monastery <\/strong><span style=\"text-align: justify;font-size: 1em\">cheeses have high moisture content and tend to be mild-tasting. Some well-known such cheese varieties include <\/span><strong style=\"text-align: justify;font-size: 1em\">Havarti<\/strong><span style=\"text-align: justify;font-size: 1em\">, <\/span><strong style=\"text-align: justify;font-size: 1em\">Munster <\/strong><span style=\"text-align: justify;font-size: 1em\">and<\/span><strong style=\"text-align: justify;font-size: 1em\"> Port Salut.<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\">Medium-hard cheese: <\/strong><span style=\"font-size: 1em\">Cheeses that range in texture from semi-soft to firm include Swiss-style cheeses such as <\/span><strong style=\"font-size: 1em\">Emmental<\/strong><span style=\"font-size: 1em\"> and <\/span><strong style=\"font-size: 1em\">Gruyere<\/strong><span style=\"font-size: 1em\">. The same bacteria that give such cheeses their\u00a0<\/span><span style=\"font-size: 1em\">eyes also contribute to their aromatic and sharp flavours. Other semi-soft to firm cheeses includes <\/span><strong style=\"font-size: 1em\">Gouda<\/strong><span style=\"font-size: 1em\">, <\/span><strong style=\"font-size: 1em\">Edam<\/strong><span style=\"font-size: 1em\">, <\/span><strong style=\"font-size: 1em\">Jarlsberg<\/strong><span style=\"font-size: 1em\"> and <\/span><strong style=\"font-size: 1em\">Cantal<\/strong><span style=\"font-size: 1em\">. Cheeses of this type are ideal for melting and are often served on toast for quick snacks or simple meals.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\">Semi-hard or hard cheese: <\/strong><span style=\"font-size: 1em\">Harder cheeses have lower moisture content than softer cheeses. They are generally packed into moulds under greater pressure and aged for a longer time than the soft cheeses. Cheeses that are classified as semi-hard to hard include Cheddar, originating in the village of Cheddar in England. <\/span><strong style=\"font-size: 1em\">Cheddar<\/strong><span style=\"font-size: 1em\"> is one of a family of semi-hard or hard cheeses (including <\/span><strong style=\"font-size: 1em\">Cheshire<\/strong><span style=\"font-size: 1em\"> and <\/span><strong style=\"font-size: 1em\">Gloucester<\/strong><span style=\"font-size: 1em\">), whose curd is cut, gently heated, piled, and stirred before being pressed into forms. <\/span><strong style=\"font-size: 1em\">Colby<\/strong><span style=\"font-size: 1em\"> and <\/span><strong style=\"font-size: 1em\">Monterey Jack<\/strong><span style=\"font-size: 1em\"> are similar but milder cheeses; their curd is rinsed before it is pressed, washing away some acidity and minerals. A similar curd-washing takes place when making the Dutch cheeses <\/span><strong style=\"font-size: 1em\">Edam<\/strong><span style=\"font-size: 1em\"> and <\/span><strong style=\"font-size: 1em\">Gouda<\/strong><span style=\"font-size: 1em\">.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Natural cheese is most often classified according to moisture content. Very high moisture cheeses, such as cream and cottage, are not aged and, thus, are often called \u2018Fresh cheeses\u2019. Hard cheeses also referred to as \u2018grating cheese\u2019 such as <\/span><strong style=\"font-size: 1em\">Parmesan<\/strong><span style=\"font-size: 1em\"> and <\/span><strong style=\"font-size: 1em\">Pecorino Romano<\/strong><span style=\"font-size: 1em\"> are firmly packed into large forms and aged for months or years.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">The classification of cheese based on moisture content and the cheese categorized based on its texture is depicted in Tables 2 and 3 respectively.<\/span><\/p>\n<\/div>\n<div>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"size-full wp-image-137 aligncenter\" src=\"http:\/\/ftp04.epgpbooks.inflibnet.ac.in\/wp-content\/uploads\/sites\/44\/2018\/07\/1-29.png\" alt=\"\" width=\"666\" height=\"318\" srcset=\"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-29.png 666w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-29-300x143.png 300w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-29-65x31.png 65w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-29-225x107.png 225w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-29-350x167.png 350w\" sizes=\"auto, (max-width: 666px) 100vw, 666px\" \/><\/p>\n<\/div>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"size-full wp-image-138 aligncenter\" src=\"http:\/\/ftp04.epgpbooks.inflibnet.ac.in\/wp-content\/uploads\/sites\/44\/2018\/07\/1-30.png\" alt=\"\" width=\"671\" height=\"85\" srcset=\"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-30.png 671w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-30-300x38.png 300w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-30-65x8.png 65w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-30-225x29.png 225w, https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-content\/uploads\/sites\/44\/2018\/07\/1-30-350x44.png 350w\" sizes=\"auto, (max-width: 671px) 100vw, 671px\" \/><\/p>\n<div>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\">Much cheese is consumed in the form of processed cheese, e.g. on cheeseburgers. Processed cheese is produced by shredding and melting young, natural cheese together with emulsifying salts into a smooth molten mass which is then cooled and molded into the shape desired.<\/p>\n<p>&nbsp;<\/p>\n<p><strong>V.\u00a0\u00a0 Classification based on non-dairy ingredients used<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong>Cheese analogues: <\/strong>Another commercial product is analogue (or imitation cheese). Cheese analogues are cheese-like products formulated from ingredients, usually a form of casein powder known as rennet casein and a source of fat (either butterfat or usually vegetable oil). Cheese analogues are used mainly as ingredients in consumer-ready meals.<\/p>\n<p>&nbsp;<\/p>\n<p><strong>VI. Classification based on brining\/pickling<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong>Brine\/Pickled cheeses: <\/strong>Brined or pickled cheese is matured in a solution of brine in an airtight or semi-permeable container. This process gives the cheese good stability, inhibiting bacterial growth, even in hot countries. Brined cheeses may be soft or hard, varying in moisture content and in colour and flavour, according to the type of milk used. All such brined cheeses are rindless, and generally taste clean, salty and acidic when fresh, developing some piquancy when aged, and most will be white. Varieties of brined cheese include <strong>Feta<\/strong>, <strong>Halloumi<\/strong>, <strong>Serene<\/strong> and <strong>Telemea<\/strong>, a variant of<strong> Brinza<\/strong>. Brined cheese is the main type of cheese produced and eaten in the Middle East and Mediterranean areas.<\/p>\n<p>&nbsp;<\/p>\n<p><strong>VII. Classification based on mold used for ripening<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong>Mold cheeses: <\/strong>There are three main categories of cheese in which the presence of mold is an important feature. These are soft-ripened cheeses, washed rind cheeses and blue cheeses.<\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong>Soft-ripened: <\/strong>Soft-ripened cheeses begin firm and rather chalky in texture, but are aged from the exterior inwards by exposing them to mold. The mold may be a velvety <em>bloom<\/em> of <em>Penicillium<\/em> <em>candida <\/em>or<em> P. camemberti <\/em>that forms a flexible white crust and contributes to the smooth, runny, or gooey textures and more intense flavour of such aged cheeses. Brie and Camembert are made by allowing white mold to grow on the outside of a soft cheese for a few days or weeks. Goat&#8217;s milk cheeses are often treated in a similar manner, sometimes with white molds (Ch\u00e8vre-Bo\u00eete) and sometimes with blue.<\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\">Washed-rind: <\/strong><span style=\"font-size: 1em\">Washed-rind cheeses are soft in character and ripen inwards like those with white molds. Washed-rind cheeses are periodically cured in a solution of salt water brine and\/or mold-bearing agents that may include beer, wine, brandy or spices, making their surfaces amenable to bacteria <\/span><em style=\"font-size: 1em\">Brevibacterium linens<\/em><span style=\"font-size: 1em\"> (the reddish-orange &#8220;smear bacteria&#8221;) that impart pungent odour and distinctive flavour, and produce a firm, flavourful rind around the cheese. Washed-rind cheeses can be soft (<\/span><strong style=\"font-size: 1em\">Limburger<\/strong><span style=\"font-size: 1em\">), semi-hard, or hard (<\/span><strong style=\"font-size: 1em\">Appenzeller<\/strong><span style=\"font-size: 1em\">).<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\">Smear-ripened: <\/strong><span style=\"font-size: 1em\">Some washed-rind cheeses are also smear-ripened with solutions of bacteria or fungi, most commonly <\/span><em style=\"font-size: 1em\">Brevibacterium linens<\/em><span style=\"font-size: 1em\">, <\/span><em style=\"font-size: 1em\">Debaryomyces hansenii<\/em><span style=\"font-size: 1em\"> and\/or <\/span><em style=\"font-size: 1em\">Geotrichum<\/em> <em style=\"font-size: 1em\">candidum <\/em><span style=\"font-size: 1em\">which usually gives them a stronger flavour as the cheese matures. Many, but not all, of these cheeses have a distinctive pinkish or orange colouring of the exterior. Unlike other washed-rind cheeses, the washing is done to ensure uniform growth of desired bacteria or fungi and to prevent the growth of undesired molds. Notable examples of smear-ripened cheeses include <\/span><strong style=\"font-size: 1em\">Munster<\/strong><span style=\"font-size: 1em\"> and <\/span><strong style=\"font-size: 1em\">Port Salut<\/strong><span style=\"font-size: 1em\">.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\">Blue: <\/strong><span style=\"font-size: 1em\">Blue cheese is created by inoculating a cheese with <\/span><em style=\"font-size: 1em\">Penicillium roqueforti<\/em><span style=\"font-size: 1em\"> or <\/span><em style=\"font-size: 1em\">Penicillium<\/em> <em style=\"font-size: 1em\">glaucum<\/em><span style=\"font-size: 1em\">. This is done while the cheese is still in the form of loosely pressed curds, and may be further enhanced by piercing a ripening block of cheese with skewers. The mold grows within the cheese as it ages. These cheeses have distinct blue veins, which gives them their name and, often, assertive flavours. The moulds range from pale green to dark blue, and may be accompanied by white and crusty brown molds. The cheese texture can be soft or firm. Some of the renowned cheeses of this type include Roquefort, Gorgonzola and Stilton.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">Type of milk used for cheese making<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Majority of the cheese is made from cow\u2019s milk. However, buffalo milk is also used for cheese making in few countries including Italy, India, Pakistan, etc. Cow milk is more suited for preparation of Cheddar cheese compared to buffalo milk.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Sheep\u2019s milk is more suited than cows\u2019 milk for the production of piquant-flavoured cheeses, such as Pecorino Romano owing to the higher concentration of short-chain fatty acids (C4:0, C6:0, C8:0, C10:0 and C12:0) in its milk fat, which contributes to such flavour profile. The low carotenoid content of sheep\u2019s and goat\u2019s milk relative to cows\u2019 milk is also more suited to the manufacture of white-coloured cheese varieties, such as Manchego and Roquefort cheeses. However, cows\u2019 milk can vary dramatically in carotenoid content from ~4 to 13 mg\/g fat, depending on breed, feed type and stage of lactation. In contrast, sheep\u2019s milk is unlikely to be suitable for the manufacture of Cheddar cheese, in which the rich straw-yellow colour, relatively low level of lipolysis and non-rancid flavour are key quality criteria.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Owing to its low ratio of as1- to as2-casein, goat milk gels much more slowly than cow milk on rennet addition and forms markedly weaker gels and curds, and is consequently much more suited for the manufacture of soft cheese, but less suited for manufacture of hard cheeses, such as Emmental, Gouda, Mozzarella and Cheddar. Apart from the altered proportions of individual caseins, other factors such as the (generally) lower contents of calcium and total casein may also contribute to the relatively poor rennet coagulation characteristics of goat milk.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">Composition of milk affecting the cheese quality and yield<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">The gross composition of cheese milk, especially the concentrations of casein and fat, has a major influence on several aspects of cheese manufacture, including rennet coagulability, gel strength, curd syneresis, cheese composition, yield and quality.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Casein: <\/em><\/strong><span style=\"font-size: 1em\">Casein, which is typically present at 2.5% in cows\u2019 milk, is the main structural protein of both rennet- and acid-induced milk gels.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Whey protein: <\/em><\/strong><span style=\"font-size: 1em\">Whey protein in cows\u2019 milk is typically ~ 0.6\u20130.7%. On heat-induced denaturation, the whey proteins can interact via thiol\u2013disulphide bonds with other whey proteins and with \u03ba-casein. High heat treatment of milk (\u2265 82\u25e6C for 26 s) is generally undesirable for rennet-curd cheeses as denatured protein at levels of \u2265 25% of total impedes the ability of the milk to gel on rennet addition, causes marked deterioration in melt properties of the cheese.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Milk fat: <\/em><\/strong><span style=\"font-size: 1em\">The principal fatty acids in milk fat on a total weight basis are palmitic, oleic and myristic. While the shorter chain fatty acids (C4:0 to C12:0) are present in lower quantities on a weight basis, they are primarily responsible for the piquant flavour of hard Italian cheeses, such as Parmesan and Romano, or the sharp goaty\/sheep-like flavours of soft goat milk cheeses. These fatty acids are hydrolyzed from the milk fat triacylglycerols by lipase enzymes, formed during maturation.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Minerals: <\/em><\/strong><span style=\"font-size: 1em\">The insoluble (colloidal salts associated with the casein) and soluble (serum) salts exist in equilibrium. While the soluble citrate and phosphate competes with the casein for calcium ions, the polyvalent casein is the main player controlling the equilibrium concentrations of salts.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">The calcium content of milk changes with stage of lactation and season. Variation in calcium content of milk is expected to affect the level of intact casein, citrate, pH, casein micelle size, ionic strength that interactively affect rennet gelation of milk and cheese making efficiency yield.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Apart from variations in the levels of gross constituents (protein, fat), seasonal variation can also occur in the \u2018quality\u2019 of the protein in terms of its ability to form a gel with satisfactory curd firming and syneretic (wheying off) properties and to produce cheese curd of satisfactory\u00a0<\/span><span style=\"font-size: 1em;text-align: initial\">moisture content. Late-lactation milk generally gives poor rennet coagulability (low curd firmness), impaired curd syneresis, high moisture Cheddar cheese and lower recovery of milk fat to cheese. Low lactose levels in milk generally coincide with high SCC and levels of plasmin activity, and may be indicative of udder infection.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">Factors affecting the quality of milk for cheese manufacture<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">The quality of milk for cheese manufacture is affected by five key parameters, namely composition, microbiology, somatic cell count (SCC), enzymatic activity and levels of residues\/contaminants.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\">Milk enzymes: <\/strong><span style=\"font-size: 1em\">Milk enzymes (trypsin like proteinase, plasmin proteinase, etc.) originate from a number of sources, viz., milk itself, bacterial contamination (proteinase and lipase from psychrotrophic bacteria) and somatic cells present in milk. Proteinase and lipase enzymes can have significant effects on cheese making properties, yield and quality.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Microbial quality and contamination of milk: <\/em><\/strong><span style=\"font-size: 1em\">Contamination outside the udder can originate from two main sources, namely the environment of the cow and milk contact surfaces. Milking heavily soiled cows could result in bulk milk counts exceeding 1 \u00d7104 cfu\/ ml; contamination of milk by unclean teats can contaminate the milk with heat-resistant bacterial spores, which can be problematic for the cheese industry. Clostridium species (<\/span><em style=\"font-size: 1em\">Clostridium tyrobutyricum &#8211;<\/em><span style=\"font-size: 1em\"> sporeformer) can cause problems with late gas-blowing development in some types of cheese; main source of clostridia in milk is feeding of poor-quality silage. Refrigerated storage of milk is conducive to the growth of psychrotrophic bacteria. These bacteria typically come from the cows\u2019 environment such as dirt and manure. Heat treatment of milk (thermization, pasteurisation) at the dairy may destroy the psychrotrophic bacteria, but not necessarily the products of their metabolism (free fatty acids &#8211; FFA) or their enzymes that can adversely affect rennet coagulation properties of the milk, cheese yield and quality. Psychrotrophic bacteria produce extracellular enzymes capable of hydrolyzing proteins and fats of milk. Thus, they can increase the likelihood of off-flavours and odours and cause changes in body, texture and colour.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Somatic cell count of milk: <\/em><\/strong><span style=\"font-size: 1em\">Factors that contribute to increases in somatic cell count (SCC) of bulk milk include subclinical mastitis, advance in stage of lactation, lactation number, stress and poor nutrition. Somatic cells are present at low levels (&lt; 100 \u00d7 103 cells per ml) in normal milk from healthy animals during mid lactation. Increasing SCC in the range 1 \u00d7 105 to 6 \u00d7 105 cells per ml of milk resulted in an increase in rennet coagulation time and reduction in curd-firming rate and cheese curd firmness; adversely affecting the cheese yield.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Genetic variants of milk<\/em><\/strong><em style=\"font-size: 1em\">: <\/em><span style=\"font-size: 1em\">Compared to the AA variants, the BB genotypes of both \u03ba-casein and \u03b2-lg are generally associated with a higher concentration of casein and superior rennet coagulation properties, as reflected by higher curd firming rates and gel firmness after a given\u00a0<\/span><span style=\"font-size: 1em;text-align: initial\">renneting time. The BB variants of \u03ba-casein and \u03b2-lg have been associated with superior cheese making properties, as reflected by the higher recovery of fat, a lower level of curd fines, and higher cheese yields for a range of varieties, including Cheddar, Edam, Gouda, Mozzarella and Camembert.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Chemical residues in milk: <\/em><\/strong><span style=\"font-size: 1em\">The presence of chemical residues and contaminants in milk is of public health concern and a cause of economic loss to the cheese industry. A range of veterinary drugs including antibiotics are commonly administered to animals to combat diseases, the most prevalent being mastitis. Milk indicated as positive for antibiotic residues on receipt at dairy companies is discarded. Antimicrobial residues (i.e. antibiotics) can lead to partial or complete inhibition of acid production by starter cultures, inadequate ripening and ageing of cheese and cause defects of flavour and texture of cheese products. Other sources of contaminants to milk include cleaning and disinfecting agents (trichloromethane, iodine) and compounded animal feeds (mycotoxins).<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"text-align: initial;font-size: 1em\">Pre-treatment of milk for cheese making<\/strong><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Cheese making is favoured if milk is subjected to few pre-treatments viz., bactofugation, microfiltration, standardization for casein\/fat ratio, homogenization, pasteurization, thermization and so on.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Bactofugation of milk: <\/em><\/strong><span style=\"font-size: 1em\">The introduction of the bactofuge has helped to control the quality of milk in regions of the world where the bacteriological quality of the milk is poor. The bactofuge is a high-speed centrifuge specially designed for removing bacteria and bacterial spores from milk at high temperatures; decreasing the bacterial numbers by &gt; 95.0%. About 6.0% of milk solids are present in the sludge, which is UHT treated at 130\u2013140\u00b0C\/few seconds and added back to the cheese milk, to avoid losses.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Standardization of cheese milk: <\/em><\/strong><span style=\"font-size: 1em\">Milk is standardized by adjusting the casein to fat (C\/F) ratio (usually 0.7 for Cheddar and Gouda-type cheeses) in milk to control the percent fat on dry matter (FDM) (prescribed in legal standards) to produce consistent cheese. Methods to increase the casein content of cheese milk include addition of skim-milk powder, condensed skim, milk protein concentrate or caseinates or the removal of fat as cream.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Pasteurization of milk: <\/em><\/strong><span style=\"font-size: 1em\">Cheese milk must be adequately pasteurized (72\u00b0C\/15 s). In few countries, the use of raw milk for cheese making is still prevalent. The pasteurization temperature adopted should be at minimal temperature-time combination as dictated by law, since higher temperatures has an adverse influence on rennetability and thus cheese texture.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Thermization of milk: <\/em><\/strong><span style=\"font-size: 1em\">Extended cold storage of milk may lead to development of high psychrotrophic population that produces proteolytic and lipolytic enzymes resistant to pasteurization. These enzymes can reduce cheese yield and may adversely affect cheese quality.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><span style=\"font-size: 1em\">Thermization of milk at sub pasteurization temperature (i.e. 57-68oC for 10-15 s) on reception at cheese factory reduces the number of psychrotrophs in milk and hence may prove advantageous with regard to cheese yield.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p style=\"text-align: justify\"><strong style=\"font-size: 1em\"><em>Homogenization of cheese milk: <\/em><\/strong><span style=\"font-size: 1em\">Usually cheese milk is not subjected to homogenization treatment. However, it may be beneficial in few cheese varieties like Blue, Feta, Akawi, etc. and especially in increasing the moisture retention in case of low-fat cheeses. Usually low fat cream (15-20% fat) is subjected to homogenization, referred to as \u2018partial homogenization\u2019. Recombined milk cheese is invariably made employing homogenization. Usually lower homogenization pressures (25-50 kg\/cm2) are adopted to avoid deleterious effect on the body and texture of cheese. Homogenization leads to whiter cheese and improves the flavor too. Use of homogenized milk helps in increasing Mozzarella cheese yield.<\/span><\/p>\n<\/div>\n<table>\n<tbody>\n<tr>\n<td><strong>you can view video on Technology of Cheese Manufacture \u2013I: Milk quality, Ingredients andClassification of cheese<\/strong><\/td>\n<td><a href=\"https:\/\/youtu.be\/Md_ESzq2Sww\" target=\"_blank\" rel=\"noopener\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-120\" src=\"http:\/\/epgpbooks.inflibnet.ac.in\/wp-content\/uploads\/2018\/11\/download.png\" alt=\"\" width=\"36\" height=\"36\" \/><\/a><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p><strong>Web links<\/strong><\/p>\n<ul>\n<li>www.agro.afacereamea.ro\/wp&#8230;\/Technology%20of%20Cheesemaking.pdf<\/li>\n<\/ul>\n<p>&nbsp;<\/p>\n","protected":false},"author":3,"menu_order":15,"template":"","meta":{"pb_show_title":"on","pb_short_title":"","pb_subtitle":"","pb_authors":[],"pb_section_license":""},"chapter-type":[],"contributor":[],"license":[],"class_list":["post-130","chapter","type-chapter","status-publish","hentry"],"part":3,"_links":{"self":[{"href":"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-json\/pressbooks\/v2\/chapters\/130","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-json\/pressbooks\/v2\/chapters"}],"about":[{"href":"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-json\/wp\/v2\/types\/chapter"}],"author":[{"embeddable":true,"href":"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-json\/wp\/v2\/users\/3"}],"version-history":[{"count":7,"href":"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-json\/pressbooks\/v2\/chapters\/130\/revisions"}],"predecessor-version":[{"id":266,"href":"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-json\/pressbooks\/v2\/chapters\/130\/revisions\/266"}],"part":[{"href":"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-json\/pressbooks\/v2\/parts\/3"}],"metadata":[{"href":"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-json\/pressbooks\/v2\/chapters\/130\/metadata\/"}],"wp:attachment":[{"href":"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-json\/wp\/v2\/media?parent=130"}],"wp:term":[{"taxonomy":"chapter-type","embeddable":true,"href":"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-json\/pressbooks\/v2\/chapter-type?post=130"},{"taxonomy":"contributor","embeddable":true,"href":"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-json\/wp\/v2\/contributor?post=130"},{"taxonomy":"license","embeddable":true,"href":"https:\/\/ebooks.inflibnet.ac.in\/ftp04\/wp-json\/wp\/v2\/license?post=130"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}