ABSTRACT Short communication: Genetic association of variations in the osteopontin gene (SPP1) with lactation persistency in dairy cattle
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Short communication: Genetic association of variations in the osteopontin gene (SPP1) with lactation persistency in dairy cattle

机译:简短交流:奶牛中骨桥蛋白基因(SPP1)变异与泌乳持续性的遗传关联

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ABSTRACTImproving lactation persistency (LP) in dairy cattle has a beneficial effect on animal health and fertility and herd productivity. A complex trait, LP not only reflects the cow's ability to maintain milk secretion activity after the lactation peak but is also a function of the postcalving development of the mammary gland and, later on, of tissue remodeling as lactation declines. This decline is a consequence of an imbalance between cell proliferation and cell removal. In a previous study, single nucleotide polymorphisms were identified in the osteopontin (OPN) gene,SPP1. Osteopontin is a multifaceted protein that plays an important role in immune regulation and tissue remodeling. Because OPN is involved in involution, it might also have an effect on LP. The objective of the present study was to evaluate whether LP could be influenced by genetic variations in theSPP1gene. This association with LP was analyzed in the population of 578 bulls characterized in a previous study. The population mean of estimated breeding value (EBV) for LP was 100.95 ± 5.06 units. Allele and genotype association analyses were performed by comparing the frequencies of the different genotypes and alleles with EBV for LP for the respective lactation using logistic regression. The EBV for LP at the first lactation (LP1), second lactation (LP2), and third lactation (LP3) and for overall lactation (OLP) are reported for the genotypesSPP1c.-1301GA,SPP1c.-1251CT,SPP1c.-430GA, andSPP1c.*40AC. The first single nucleotide polymorphism,SPP1c.-1301GA, affected LP1, LP2, LP3, and OLP. Analysis of the estimated average allele substitution effects also confirmed that G is a favorable allele for LP, given the gain observed over LP1, LP2, LP3, and OLP. Differences in EBV for LP were observed between animals with different haplotypes at LP1, LP2, LP3, and OLP. Contrast analysis for OLP revealed that mean EBV is greater for block H1 (101.34 ± 0.30) than for animals that do not have H1 (98.20 ± 0.77). The gain with block H1 (GCGA) suggests the presence of the favorable allele G (first position in the block:SPP1c.-1301G). The pleiotropic roles of OPN position it at the crossroads of immune regulation, tissue remodeling, and involution. From a genetic perspective, data from the present study suggest OPN as a candidate gene associated with LP for dairy cows.
机译: 抽象 提高奶牛的泌乳持续性(LP)对动物健康,生育能力和畜群生产力具有有益的影响。 LP是一个复杂的特征,它不仅反映了泌乳高峰后母牛维持乳汁分泌活性的能力,而且还取决于产犊后乳腺的发育以及后来随着泌乳量减少组织重塑的功能。这种下降是细胞增殖和细胞去除之间不平衡的结果。在先前的研究中,在骨桥蛋白(OPN)基因 SPP1 中鉴定出单核苷酸多态性。骨桥蛋白是一种多方面的蛋白质,在免疫调节和组织重塑中起重要作用。因为OPN参与了内卷,所以它也可能对LP产生影响。本研究的目的是评估LP是否可能受 SPP1 基因的遗传变异影响。在先前的研究中,分析了578位公牛的种群与LP的这种关联。 LP的估计育种价值(EBV)的总体平均值为100.95±5.06单位。等位基因和基因型的关联分析是通过使用逻辑回归比较不同基因型和等位基因与EBV的LP频率进行的,以进行LP回归分析。报告了 SPP1c.-1301G A SPP1c.-1251C T SPP1c .-430G A SPP1c。* 40A C 。第一个单核苷酸多态性 SPP1c.-1301G A 影响了LP1,LP2,LP3和OLP。对估计的平均等位基因替代效应的分析还证实,鉴于在LP1,LP2,LP3和OLP上观察到的增益,G是LP的有利等位基因。在具有不同单倍型的动物(LP1,LP2,LP3和OLP)之间观察到LP的EBV差异。对OLP的对比分析显示,H1区的平均EBV(101.34±0.30)比没有H1区的动物(98.20±0.77)大。 H1块的增益(GCGA)表明存在有利的等位基因G(该块的第一个位置: SPP1c.-1301G )。 OPN的多效性作用使其处于免疫调节,组织重塑和内卷化的十字路口。从遗传角度来看,本研究的数据表明OPN是与奶牛LP相关的候选基因。

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