Physico-chemical characteristics of goat and sheep milk

被引:887
作者
Park, Y. W. [1 ]
Juarez, M.
Ramos, M.
Haenlein, G. F. W.
机构
[1] Fort Valley State Univ, Georgia Small Ruminant Res & Extens Ctr, Fort Valley, GA 31030 USA
[2] CSIC, Inst Frio, E-28040 Madrid, Spain
[3] CSIC, Inst Fermentac Ind, E-28006 Madrid, Spain
[4] Univ Delaware, Dept Anim & Food Sci, Newark, DE 19717 USA
关键词
goat milk; sheep milk; physico-chemical characteristics; lipids; proteins; bioactive peptides; minerals; vitamins;
D O I
10.1016/j.smallrumres.2006.09.013
中图分类号
S8 [畜牧、 动物医学、狩猎、蚕、蜂];
学科分类号
0905 ;
摘要
Physico-chemical characteristics of milk are related to its composition for a particular animal species. Sheep milk contains higher levels of total solids and major nutrient than goat and cow milk. Lipids in sheep and goat milk have higher physical characteristics than in cow milk, but physico-chemical indices (i.e., saponification, Reichert Meissl and Polenske values) vary between different reports. Micelle structures in goat and sheep milk differ in average diameter, hydration, and mineralization from those of cow milk. Caprine casein micelles contain more calcium and inorganic phosphorus, are less solvated, less heat stable, and lose P-casein more readily than bovine casein micelles. Renneting parameters in cheese making of sheep milk are affected by physico-chemical properties, including pH, larger casein micelle, more calcium per casein weight, and other mineral contents in milk, which cause differences in coagulation time, coagulation rate, curd firmness, and amount of rennet needed. Renneting time for goat milk is shorter than for cow milk, and the weak consistency of the gel is beneficial for human digestion but decreases its cheese yield. Triacylglycerols (TAG) constitute the biggest part of milk lipids (nearly 98%), including a large number of esterified fatty acids. Sheep and goat milk also have simple lipids (diacylglycerols, monoacylglycerols, cholesterol esters), complex lipids (phospholipids), and liposoluble compounds (sterols, cholesterol esters, hydrocarbons). The average fat globule size is smallest (< 3.5 mu m) in sheep milk followed by goat and cow milk. Five fatty acids (C 10:0, C 14:0, C 16:0, C 18:0, and C 18: 1) account for > 75% of total fatty acids in goat and sheep milk. Levels of the metabolically valuable short and medium chain fatty acids, caproic (C6:0) (2.9%, 2.4%, 1.6%), caprylic (C8:0) (2.6%, 2.7%, 1.3%), capric (C 10:0) (7.8%, 10.0%, 3.0%), and lauric (C 12:0) (4.4%, 5.0%, 3. 1 %) are significantly higher in sheep and goat than in cow milk, respectively. Principal caseins (CN) in goat, sheep and cow milk are alpha(s1)-CN, alpha(s2)-CN, beta-CN and kappa-CN. The main forms of caprine and ovine caseino-macropeptides (CMP), which are the soluble C-terminal derivatives from the action of chymosin on kappa-casein during the milk clotting process of cheesemaking, have been identified and are a good source of antithrombotic peptides. Sheep and goat milk proteins are also important sources of bioactive angiotensin converting enzyme (ACE) inhibitory peptides and antihypertensive peptides. They can provide a non-immune disease defence and control of microbial infections. Important minor milk proteins include immunoglobulins, lactoferrin, transferrin, ferritin, proteose peptone, calmodulin (calcium binding protein), prolactin, and folate-binding protein. Non-protein nitrogen (NPN) contents of goat and human milks are higher than in cow milk. Taurine in goat and sheep milk derived from sulphur-containing amino acids has important metabolic functions as does carnitine, which is a valuable nutrient for the human neonate. Mineral and vitamin contents of goat and sheep milk are mostly higher than in cow milk. (c) 2006 Elsevier B.V. All rights reserved.
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页码:88 / 113
页数:26
相关论文
共 213 条
[1]   Conjugated linoleic acid increases in milk when cows fed fish meal and extruded soybeans for an extended period of time [J].
AbuGhazaleh, AA ;
Schingoethe, DJ ;
Hippen, AR ;
Kalscheur, KF .
JOURNAL OF DAIRY SCIENCE, 2004, 87 (06) :1758-1766
[2]   Milk conjugated linoleic acid response to fish oil supplementation of diets differing in fatty acid profiles [J].
AbuGhazaleh, AA ;
Schingoethe, DJ ;
Hippen, AR ;
Kalscheur, KF .
JOURNAL OF DAIRY SCIENCE, 2003, 86 (03) :944-953
[3]   Milk and cheese fatty acid composition in sheep fed Mediterranean forages with reference to conjugated linoleic acid cis-9, trans-11 [J].
Addis, M ;
Cabiddu, A ;
Pinna, G ;
Decandia, M ;
Piredda, G ;
Pirisi, A ;
Molle, G .
JOURNAL OF DAIRY SCIENCE, 2005, 88 (10) :3443-3454
[4]  
Alichanidis E, 1996, INT DAIRY F, V9603, P21
[5]   Fatty acid composition of caprine milk:: Major, branched-chain, and trans fatty acids [J].
Alonso, L ;
Fontecha, J ;
Lozada, L ;
Fraga, MJ ;
Juárez, M .
JOURNAL OF DAIRY SCIENCE, 1999, 82 (05) :878-884
[6]   Genetic polymorphism of ovine milk proteins: its influence on technological properties of milk - a review [J].
Amigo, L ;
Recio, I ;
Ramos, M .
INTERNATIONAL DAIRY JOURNAL, 2000, 10 (03) :135-149
[7]  
Anifantakis E. M., 1986, Bulletin of the International Dairy Federation, P42
[8]  
Anifantakis EM, 1980, TRAVAUXSCIENTIFIQUES, VXXVII, pCB1
[9]  
ANJANEYULU ASR, 1985, J FOOD SCI TECH MYS, V22, P151
[10]  
[Anonymous], 2006, HDB MILK NONBOVINE M, DOI DOI 10.1002/9780470999738.CH3