与奶牛繁殖力特征相关的牛 LAP3 和 SIRT1 基因的遗传变异。

IF 1.9 Q3 GENETICS & HEREDITY BMC genomic data Pub Date : 2024-03-18 DOI:10.1186/s12863-024-01209-x
Destaw Worku, Archana Verma
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Eleven single nucleotide polymorphisms (SNPs), comprising five in the promoter (rs717156555: C > G, rs720373055: T > C, rs516876447: A > G, rs461857269: C > T and rs720349928: G > A), two in 5'UTR (rs722359733: C > T and rs462932574: T > G), two in intron 12 (rs110932626: A > G and rs43702363: C > T), and one in 3'UTR of exon 13 (rs41255599: C > T) in LAP3 and one in SIRT1 (rs718329990:T > C) genes, have previously been reported to be associated with various traits of milk production and clinical mastitis in Sahiwal and Karan Fries dairy cattle. In this study, the analysis primarily aimed to assess the impact of SNPs within LAP3 and SIRT1 genes on fertility traits in Sahiwal and Karan Fries cattle. Association studies were conducted using mixed linear models, involving 125 Sahiwal and 138 Karan Fries animals in each breed. 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引用次数: 0

摘要

背景:奶牛育肥和繁殖性状的遗传进展一直受制于这些性状的低遗传率。鉴定与繁殖力和生殖力相关的候选基因和变体可提高遗传选择的准确性,加快低遗传性奶牛的育种进程。虽然牛 LAP3 和 SIRT1 基因与奶牛产奶性状的关系已得到充分证实,但它们对奶牛繁殖力的影响尚未得到探讨。11 个单核苷酸多态性 (SNP),包括启动子中的 5 个(rs717156555:C>G、rs720373055:T>C、rs516876447:A>G、rs461857269:C > T 和 rs720349928:G > A),两个在 5'UTR 中(rs722359733:C > T 和 rs462932574:T > G),两个在 12 号内含子中(rs110932626:A > G 和 rs43702363:C > T),一个在 13 号外显子的 3'UTR 中(rs41255599:C>T)和 SIRT1(rs718329990:T>C)基因中的一个基因,均与萨希瓦尔奶牛和卡兰弗里斯奶牛的产奶量和临床乳腺炎的各种性状有关。在本研究中,分析的主要目的是评估 LAP3 和 SIRT1 基因中的 SNPs 对萨希瓦尔牛和卡兰弗里斯牛繁殖力性状的影响。使用混合线性模型进行了关联研究,涉及每个品种的 125 头 Sahiwal 牛和 138 头 Karan Fries 牛。分析采用了指定的 PCR-RFLP 小组:结果:在 LAP3 基因的启动子区域,所有变体都表现出显著的(P T. 0.然而,LAP3 基因启动子区域的特定变异,即 rs722359733: C > T、rs110932626: A > G、rs43702363:C > T 和 rs41255599:C > T,分别与萨希瓦尔奶牛和卡兰弗里斯奶牛的CI和DO有明显关联。位于启动子区域的 SNP rs718329990:在 SIRT1 基因启动子区域的 SNP rs718329990: T > C 与萨希瓦尔牛的 CI 和 DO 有显著关联。基于单倍型的关联分析表明,在所研究的奶牛群体中,单倍型组合与AFC、CI和DO之间存在显著关联。与其他单倍型组合相比,H2H3 和 H2H4 单倍型组合的动物表现出更高的 AFC、CI 和 DO:这些结果证实了 LAP3 和 SIRT1 基因参与了雌性繁殖力性状的研究,表明这些基因的多态性与所研究的性状有关。总之,本研究发现的重要 SNPs 和单倍型有可能提高牛群的盈利能力,确保奶牛场的长期可持续发展,从而在奶牛育种计划中选择初产年龄早的动物并提高繁殖性能。
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Genetic variation in bovine LAP3 and SIRT1 genes associated with fertility traits in dairy cattle.

Background: The genetic progress of fertility and reproduction traits in dairy cattle has been constrained by the low heritability of these traits. Identifying candidate genes and variants associated with fertility and reproduction could enhance the accuracy of genetic selection and expedite breeding process of dairy cattle with low-heritability traits. While the bovine LAP3 and SIRT1 genes exhibit well-documented associations with milk production traits in dairy cattle, their effect on cow fertility have not yet been explored. Eleven single nucleotide polymorphisms (SNPs), comprising five in the promoter (rs717156555: C > G, rs720373055: T > C, rs516876447: A > G, rs461857269: C > T and rs720349928: G > A), two in 5'UTR (rs722359733: C > T and rs462932574: T > G), two in intron 12 (rs110932626: A > G and rs43702363: C > T), and one in 3'UTR of exon 13 (rs41255599: C > T) in LAP3 and one in SIRT1 (rs718329990:T > C) genes, have previously been reported to be associated with various traits of milk production and clinical mastitis in Sahiwal and Karan Fries dairy cattle. In this study, the analysis primarily aimed to assess the impact of SNPs within LAP3 and SIRT1 genes on fertility traits in Sahiwal and Karan Fries cattle. Association studies were conducted using mixed linear models, involving 125 Sahiwal and 138 Karan Fries animals in each breed. The analysis utilized a designated PCR-RFLP panel.

Results: In the promoter region of the LAP3 gene, all variants demonstrated significant (P < 0.05) associations with AFC, except for rs722359733: C > T. However, specific variants with the LAP3 gene's promoter region, namely rs722359733: C > T, rs110932626: A > G, rs43702363: C > T, and rs41255599: C > T, showed significant associations with CI and DO in Sahiwal and Karan Fries cows, respectively. The SNP rs718329990: T > C in the promoter region of SIRT1 gene exhibited a significant association with CI and DO in Sahiwal cattle. Haplotype-based association analysis revealed significant associations between haplotype combinations and AFC, CI and DO in the studied dairy cattle population. Animals with H2H3 and H2H4 haplotype combination exhibited higher AFC, CI and DO than other combinations.

Conclusions: These results affirm the involvement of the LAP3 and SIRT1 genes in female fertility traits, indicating that polymorphisms within these genes are linked to the studied traits. Overall, the significant SNPs and haplotypes identified in this study could have the potential to enhance herd profitability and ensure long-term sustainability on dairy farms by enabling the selection of animals with early age first calving and enhance reproductive performance in the dairy cattle breeding program.

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