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The Molecular Effects of a Polymorphism in the 5′UTR of Solute Carrier Family 44, Member 5 that Is Associated with Birth Weight in Holsteins

机译:与荷斯坦牛的出生体重相关的溶质载体家族44成员5'UTR多态性的分子效应

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摘要

Dystocia is a major problem for the dairy cattle industry, and the observed high rates of this condition stem from genetic selection to increase subsequent milk production of the calving female. Because smaller birth size does not adversely affect subsequent milk production, selecting for cows with a smaller birth size would reduce dystocia rates and be beneficial for both the cattle and the farmers. To identify genes that regulate birth weight, we conducted a genome-wide association study using 1151 microsatellite markers and identified a single nucleotide polymorphism (SNP) associated with birth weight: A-326G in the 5′ untranslated region (UTR) of solute carrier family 44, member 5 (SLC44A5). Cows with higher birth weights carried the A polymorphism in the SLC44A5 5′ UTR, and the presence of the A polymorphism correlated with a high rate of dystocia. Luciferase assays and quantitative polymerase chain reaction (QPCR) assays revealed that SLC44A5 transcripts with the A polymorphism are expressed at lower levels than those carrying the G polymorphism. SLC44A5 encodes a choline transporter-like protein, and choline is a component of the major phospholipids of cell membranes. Uptake studies in HeLa cells demonstrated that SLC44A5 knockdown reduces choline efflux, whereas SLC44A5 overexpression resulted in the opposite effect. Furthermore, cell viability assays indicated that SLC44A5 knockdown increased cell proliferation, whereas SLC44A5 overexpression repressed proliferation. Taken together, our results suggest that calves with reduced SLC44A5 expression are larger due to enhanced cell proliferation. This study provides novel insights into the molecular mechanisms that control birth weight in Holsteins and suggests that SLC44A5 may serve as a potential target for preventing dystocia.
机译:难产是奶牛业的一个主要问题,而且观察到的这种情况的高发病率源于遗传选择,从而增加了产犊女性的后续产奶量。由于较小的出生体重不会对以后的产奶产生不利影响,因此选择较小出生的母牛会减少难产率,对牛和农民都有利。为了鉴定调节出生体重的基因,我们使用1151个微卫星标记进行了全基因组关联研究,并鉴定了与出生体重相关的单核苷酸多态性(SNP):溶质载体家族的5'非翻译区(UTR)中的A-326G 44,成员5(SLC44A5)。出生体重较高的母牛在SLC44A5 5'UTR中携带A多态性,而A多态性的存在与难产率高相关。荧光素酶分析和定量聚合酶链反应(QPCR)分析表明,具有A多态性的SLC44A5转录本的表达水平低于具有G多态性的SLC44A5转录本。 SLC44A5编码胆碱转运蛋白样蛋白,胆碱是细胞膜主要磷脂的成分。在HeLa细胞中的摄取研究表明,SLC44A5的敲低可降低胆碱的外排,而SLC44A5的过表达则产生相反的作用。此外,细胞活力测定表明,SLC44A5的敲低增加了细胞的增殖,而SLC44A5的过表达抑制了增殖。两者合计,我们的结果表明,由于细胞增殖增强,SLC44A5表达降低的牛犊更大。这项研究为控制荷斯坦牛出生体重的分子机制提供了新颖的见解,并表明SLC44A5可以作为预防难产的潜在靶标。

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