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Genetic parameters of coagulation properties, milk yield, quality, and acidity estimated using coagulating and noncoagulating milk information in Brown Swiss and Holstein-Friesian cows

机译:利用凝结和非凝结奶牛奶牛和荷斯坦奶牛的凝结特性,产奶量,品质和酸度的遗传参数进行估算

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摘要

The aim of this study was to estimate heritabilities of rennet coagulation time (RCT) and curd firmness (a30) and their genetic correlations with test-day milk yield, composition (fat, protein, and casein content), somatic cell score, and acidity (pH and titratable acidity) using coagulating and noncoagulating (NC) milk information. Data were from 1,025 Holstein-Friesian (HF) and 1,234 Brown Swiss (BS) cows, which were progeny of 54 HF and 58 BS artificial insemination sires, respectively. Milk coagulation properties (MCP) of each cow were measured once using a computerized renneting meter and samples not exhibiting coagulation within 31 min after rennet addition were classified as NC milk. For NC samples, RCT was unobserved. Multivariate analyses, using Bayesian methodology, were performed to estimate the genetic relationships of RCT or a30 with the other traits and statistical inference was based on the marginal posterior distributions of parameters of concern. For analyses involving RCT, a right-censored Gaussian linear model was used and records of NC milk samples, being censored records, were included as unknown parameters in the model implementing a data augmentation procedure. Rennet coagulation timewas more heritable [heritability (h2) = 0.240 and h2 = 0.210 for HF and BS, respectively] than a30 (h2 = 0.148 and h2 = 0.168 for HF and BS, respectively). Milk coagulation properties were more heritable than a single test-day milk yield (h2 = 0.103 and h2 = 0.097 for HF and BS, respectively) and less heritable than milk composition traits whose heritability ranged from 0.275 to 0.275, with the only exception of fat content of BS milk (h2 = 0.108). A negative genetic correlation, lower than −0.85, was estimated between RCT and a30 for both breeds. Genetic relationships of MCP with yield and composition were low or moderate and favorable. The genetic correlation of somatic cell score with RCTin BS cows was large and positive and even more positive were those of RCT with pH and titratable acidity in both breeds, ranging from 0.80 to 0.94. Including NC milk information in the data affected the estimated correlations and decreased the uncertainty associated with the estimation process. On the basis of the estimated heritabilities and genetic correlations, enhancement of MCP through selective breeding with no detrimental effects on yield and composition seems feasible in both breeds. Milk acidity may play a role as an indicator trait for indirect enhancement of MCP.
机译:这项研究的目的是评估凝乳酶凝结时间(RCT)和凝乳硬度(a30)的遗传力,以及它们与测试日产奶量,组成(脂肪,蛋白质和酪蛋白含量),体细胞评分和酸度的遗传相关性。 (凝结和非凝结(NC)牛奶信息)(pH和可滴定酸度)。数据来自1,025头荷斯坦-弗里斯兰(HF)和1,234头棕色瑞士(BS)母牛,它们分别是54 HF和58 BS人工授精父代的后代。使用计算机凝乳酶仪测量每头母牛的乳凝结特性(MCP)一次,将添加凝乳酶后31分钟内未表现出凝结的样品分类为NC乳。对于NC样品,未观察到RCT。使用贝叶斯方法进行多变量分析,以估计RCT或a30与其他性状的遗传关系,并根据关注参数的边际后验分布进行统计推断。对于涉及RCT的分析,使用了右删减的高斯线性模型,NC牛奶样本的记录(作为删失的记录)作为未知参数包括在实施数据扩充程序的模型中。凝乳酶凝结时间比a30更可遗传[遗传力(h2)= 0.240,h2 = 0.210,分别比a30(HF和BS,h2 = 0.148,h2 = 0.168)。牛奶的凝结特性比单日测试的牛奶产量更可遗传(HF和BS的h2 = 0.103和h2 = 0.097),并且比遗传成分范围在0.275至0.275的牛奶成分性状的遗传性差,唯一的例外BS牛奶的含量(h2 = 0.108)。估计两个品种的RCT和a30之间的遗传负相关性低于-0.85。 MCP与产量和组成的遗传关系低或中等,有利。在两个品种中,BST奶牛​​体细胞评分与RCT的遗传相关性很大,呈正相关,在pH和可滴定酸度范围内的RCT与RCT的相关性更强。在数据中包括NC牛奶信息会影响估计的相关性,并减少与估计过程相关的不确定性。根据估计的遗传力和遗传相关性,在两个品种中通过选择性育种提高MCP且对产量和组成无不利影响似乎都是可行的。牛奶酸度可能是间接增强MCP的指标性状。

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