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Estimation of genetic parameters for heat stress, including dominance gene effects, on milk yield in Thai Holstein dairy cattle

机译:估计泰国荷斯坦奶牛热应激的遗传参数,包括优势基因对奶产量的影响

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摘要

Heat stress in tropical regions is a major cause that strongly negatively affects to milk production in dairy cattle. Genetic selection for dairy heat tolerance is powerful technique to improve genetic performance. Therefore, the current study aimed to estimate genetic parameters and investigate the threshold point of heat stress for milk yield. Data included 52701 test-day milk yield records for the first parity from 6247 Thai Holstein dairy cattle, covering the period 1990 to 2007. The random regression test day model with EM-REML was used to estimate variance components, genetic parameters and milk production loss. A decline in milk production was found when temperature and humidity index (THI) exceeded a threshold of 74, also it was associated with the high percentage of Holstein genetics. All variance component estimates increased with THI. The estimate of heritability of test-day milk yield was 0.231. Dominance variance as a proportion to additive variance (0.035) indicated that non-additive effects might not be of concern for milk genetics studies in Thai Holstein cattle. Correlations between genetic and permanent environmental effects, for regular conditions and due to heat stress, were -0.223 and -0.521, respectively. The heritability and genetic correlations from this study show that simultaneous selection for milk production and heat tolerance is possible.
机译:热带地区的热应激是严重影响奶牛牛奶生产的主要原因。乳品耐热性的遗传选择是提高遗传性能的有力技术。因此,当前的研究旨在估计遗传参数,并研究热应激的阈值,以提高牛奶产量。数据包括1990年至2007年期间来自6247头泰国荷斯坦奶牛的第一胎的52701个试验日产奶量记录。使用带有EM-REML的随机回归试验日模型来估计方差成分,遗传参数和产奶量损失。当温度和湿度指数(THI)超过74的阈值时,发现牛奶产量下降,这也与荷斯坦遗传学的高百分比有关。所有方差成分估计值均随THI的增加而增加。试验日产奶量的遗传力估计为0.231。优势变异与加性变异的比例(0.035)表明,泰国荷斯坦牛的牛奶遗传学研究可能不涉及非加性效应。在正常条件下和由于热应激引起的遗传和永久环境影响之间的相关性分别为-0.223和-0.521。这项研究的遗传力和遗传相关性表明,可以同时选择产奶量和耐热性。

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