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A functional genomics approach to evaluate candidate genes located in a QTL interval for milk production traits on BTA6

机译:一种功能基因组学方法,用于评估位于BTL6上牛奶生产性状的QTL区间中的候选基因

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摘要

The potential genetic and economic advantage of marker-assisted selection for enhanced production in dairy cattle has provided an impetus to conduct numerous genome scans in order to identify associations between DNA markers and future productive potential. One area of focus has been a quantitative trait locus on bovine chromosome 6 (BTA6) found to be associated with milk yield, milk protein and fat percentage, which has been subsequently fine-mapped to six positional candidate genes. Subsequent investigations have yet to resolve which of the potential positional candidate genes is responsible for the observed associations with productive performance. In this study, we analysed candidate gene expression and the effects of gene knockdown on expression of o- and -casein mRNA in a small interfering RNA transfected bovine in vitro mammosphere model. From our expression studies in vivo, we observed that four of the six candidates (ABCG2, SPP1, PKD2 and LAP3) exhibited differential expression in bovine mammary tissue over the lactation cycle, but in vitro functional studies indicate that inhibition of only one gene, SPP1, had a significant impact on milk protein gene expression. These data suggest that the gene product of SPP1 (also known as osteopontin) has a significant role in the modulation of milk protein gene expression. While these findings do not exclude other positional candidates from influencing lactation, they support the hypothesis that the gene product of SPP1 is a significant lactational regulatory molecule.
机译:标记辅助选择提高奶牛生产潜力的潜在遗传和经济优势为进行大量基因组扫描提供了动力,以鉴定DNA标记与未来生产潜力之间的关联。重点关注的领域之一是牛染色体6(BTA6)上的定量性状基因座,与牛奶产量,牛奶蛋白质和脂肪百分比有关,随后将其精细映射到六个位置候选基因。随后的研究尚未解决哪个潜在的位置候选基因负责观察到的与生产性能的关联。在这项研究中,我们分析了候选基因表达以及基因敲除对小分子干扰RNA转染牛体外球囊模型中o-和-casein mRNA表达的影响。从我们体内的表达研究中,我们观察到六个候选物中的四个(ABCG2,SPP1,PKD2和LAP3)在泌乳周期中在牛乳腺组织中表现出差异表达,但体外功能研究表明仅抑制一个基因SPP1 ,对牛奶蛋白质基因表达有重大影响。这些数据表明,SPP1的基因产物(也称为骨桥蛋白)在乳蛋白基因表达的调节中具有重要作用。尽管这些发现并未排除其他候选位置影响泌乳,但它们支持了SPP1基因产物是重要的泌乳调节分子的假说。

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