2009Unpublished venueRequires access

The effect of milk proteins on milk coagulation properties in Estonian dairy breeds.

Ivi Jõudu, M. Henno, S. Värv

Open publisher page 14 citations

Abstract

Summary. Coagulating properties of milk have influence on cheese-making ability, cheese yield, and its quality. The aim of this study was to find the effects of major milk proteins contents and their genetic variants on milk rennet coagulation properties in Estonian dairy breeds. During the years 2001-2005 a total of 1,269 cows were on repeated occasions sampled (n = 8,282). Higher contents of milk protein, total casein, the casein number, and αS1-, β-, and κ-Cn, and β-Lg, reduced the rennet coagulation time and formed a firmer curd. A higher proportion of κ-Cn with respect to αS1-Cn and β-Cn assisted in forming a firmer curd. All measured rennet coagulation parameters were significantly better for the κ-Cn BB, and worse for the κ-Cn AA, AE, and EE genotypes. Noncoagulated milk originated mainly from cows possessing κ-Cn AA genotype. Better milk coagulation properties among ER and EN cows, compared to EHF cows, are explainable by a higher frequency of the κ-casein B allele, associated with better coagulation properties, and ER cows also recorded higher contents of milk proteins, compared to EHF cows.

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What this paper is about

Summary. Coagulating properties of milk have influence on cheese-making ability, cheese yield, and its quality. The aim of this study was to find the effects of major milk proteins contents and their genetic variants on milk rennet coagulation properties in Estonian dairy breeds. During the years 2001-2005 a total of 1,269 cows were on repeated occasions sampled (n = 8,282). Higher contents of milk protein, total casein, the casein number, and αS1-, β-, and κ-Cn, and β-Lg, reduced the rennet coagulation time and formed a firmer curd. A higher proportion of κ-Cn with respect to αS1-Cn and β-Cn assisted in forming a firmer curd. All measured rennet coagulation parameters were significantly better for the κ-Cn BB, and worse for the κ-Cn AA, AE, and EE genotypes. Noncoagulated milk originated mainly from cows possessing κ-Cn AA genotype. Better milk coagulation properties among ER and EN cows, compared to EHF cows, are explainable by a higher frequency of the κ-casein B allele, associated with better coagulation properties, and ER cows also recorded higher contents of milk proteins, compared to EHF cows.

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Available abstract

Summary. Coagulating properties of milk have influence on cheese-making ability, cheese yield, and its quality. The aim of this study was to find the effects of major milk proteins contents and their genetic variants on milk rennet coagulation properties in Estonian dairy breeds. During the years 2001-2005 a total of 1,269 cows were on repeated occasions sampled (n = 8,282). Higher contents of milk protein, total casein, the casein number, and αS1-, β-, and κ-Cn, and β-Lg, reduced the rennet coagulation time and formed a firmer curd. A higher proportion of κ-Cn with respect to αS1-Cn and β-Cn assisted in forming a firmer curd. All measured rennet coagulation parameters were significantly better for the κ-Cn BB, and worse for the κ-Cn AA, AE, and EE genotypes. Noncoagulated milk originated mainly from cows possessing κ-Cn AA genotype. Better milk coagulation properties among ER and EN cows, compared to EHF cows, are explainable by a higher frequency of the κ-casein B allele, associated with better coagulation properties, and ER cows also recorded higher contents of milk proteins, compared to EHF cows.

Key concepts: Rennet, Casein, Food science, Coagulation, Genetic variants, Genotype, Milk protein, Chemistry

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