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Inter-individual variation in adaptive capacity at onset of lactation: Linking metabolic phenotype with mitochondrial DNA haplotype in Holstein dairy cows

机译:泌乳期个体适应能力的个体差异:荷斯坦奶牛的代谢表型与线粒体DNA单倍型联系起来

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摘要

Modern-day dairy cows express great variation in metabolic capacity to adapt to the onset of lactation. Although breeding programs increased the breeding value for longevity and robustness in the sires, a respective phenotype in female offspring has not been improving as predicted. Fundamental energy generating pathways such as mitochondrial fatty acid oxidation might have a crucial role for robustness and metabolic efficiency in dairy cows. Therefore, mitochondrial enzyme expression was examined in liver samples of one set of animals before and after calving. Furthermore, the mitochondrial DNA sequence was determined for each individual of a second set of animals using liver samples. Results from the first trial indicate that the expression and extent of phosphorylation of acetyl-CoA carboxylase (ACC) is the major key step for modulating fatty acid flux into the mitochondria at early onset of lactation in Holstein dairy cows. In the second trial, mitochondrial DNA sequencing and identification of mutation patterns yielded three major haplotypes. Haplotype H2 was closely associated with liver fat content, plasma glycerol and acyl-carnitine concentrations. The mitochondrial DNA haplotype, which is a feature of the maternal lines, might be related to the inter-individual variation in metabolic capacity of Holstein dairy cows.
机译:现代奶牛的新陈代谢能力差异很大,以适应泌乳期的发作。尽管育种程序提高了父本的寿命和健壮性,但雌性后代的表型并未如预期的那样得到改善。诸如线粒体脂肪酸氧化之类的基本能量产生途径可能对奶牛的健壮性和代谢效率具有至关重要的作用。因此,在产犊前后,在一组动物的肝脏样品中检查线粒体酶的表达。此外,使用肝脏样品确定了第二组动物的每个个体的线粒体DNA序列。首次试验的结果表明,在荷斯坦奶牛泌乳初期,乙酰辅酶A羧化酶(ACC)的表达和磷酸化程度是调节脂肪酸流入线粒体的主要关键步骤。在第二项试验中,线粒体DNA测序和突变模式鉴定产生了三种主要的单倍型。 H2单倍型与肝脂肪含量,血浆甘油和酰基肉碱浓度密切相关。线粒体DNA单倍型是母系的一个特征,可能与荷斯坦奶牛的代谢能力之间的个体差异有关。

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