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培育提高牛乳中蛋白质组分和游离氨基酸浓度的方法。

Breeding for improved protein fractions and free amino acids concentration in bovine milk.

机构信息

Department of Veterinary Medical Sciences, Alma Mater Studiorum - University of Bologna, Ozzano dell'Emilia, Italy.

Teagasc Animal and Grassland Research and Innovation Centre, Moorepark, Fermoy, Co. Cork, Ireland.

出版信息

J Anim Breed Genet. 2022 Sep;139(5):517-529. doi: 10.1111/jbg.12681. Epub 2022 Apr 29.

Abstract

Considerable resources are required to routinely measure detailed milk compositional traits. Hence, an insufficient volume of phenotypic data can hinder genetic progress in these traits within dairy cow breeding programmes. The objective of the present study was to quantify the opportunities for breeding for improved milk protein and free amino acid (FAA) composition by exploiting mid-infrared spectroscopy (MIRS) predictions routinely recorded from milk samples. Genetic parameters for protein fractions and FAA composition were estimated using 134,546 test-day records from 16,166 lactations on 9,572 cows using linear mixed models. Heritability of MIRS-predicted protein fractions ranged from 0.19 (α-lactalbumin) to 0.55 (β-lactoglobulin A), while heritability of MIRS-predicted FAA ranged from 0.08 for glycine to 0.29 for glutamic acid. Genetic correlations among the MIRS-predicted FAA were moderate to strong ranging from -0.44 (aspartic acid and lysine) to 0.97 (glutamic acid and total FAA). Adjustment of the genetic correlations for the genetic merit of 24-h milk yield did not greatly affect the correlations. Results from the current study highlight the presence of exploitable genetic variation for both protein fractions and FAA in dairy cow milk. Besides, the direction of genetic correlations reveals that breeding programmes directly selecting for greater milk protein concentration carry with them favourable improvement in casein and whey fractions.

摘要

常规测量详细的牛奶成分特征需要大量的资源。因此,在奶牛育种计划中,这些特征的表型数据量不足可能会阻碍遗传进展。本研究的目的是通过利用牛奶样本中常规记录的中红外光谱(MIRS)预测值来量化改善牛奶蛋白和游离氨基酸(FAA)组成的育种机会。使用线性混合模型,从 9572 头奶牛的 16166 次泌乳中,对 134546 个测试日记录进行了蛋白质分数和 FAA 组成的遗传参数估计。MIRS 预测的蛋白质分数的遗传力范围从 0.19(α-乳白蛋白)到 0.55(β-乳球蛋白 A),而 MIRS 预测的 FAA 的遗传力范围从 0.08(甘氨酸)到 0.29(谷氨酸)。MIRS 预测的 FAA 之间的遗传相关性从中等到很强,范围从 -0.44(天冬氨酸和赖氨酸)到 0.97(谷氨酸和总 FAA)。对 24 小时牛奶产量的遗传优势进行遗传相关性调整并没有大大影响相关性。本研究的结果强调了奶牛牛奶中蛋白质分数和 FAA 都存在可利用的遗传变异。此外,遗传相关性的方向表明,直接选择牛奶蛋白浓度更大的育种计划伴随着乳清蛋白和酪蛋白分数的有利改善。

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