评估阿兹赫里水牛脂蛋白 1 多态性与性能特征相关的遗传标记

Muhammad Siraj, Muhammad Ibrahim, Bibi Sabiha, Sohail Ahmad
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引用次数: 0

摘要

脂蛋白 1 调节乳腺的脂质代谢。脂联素 1 基因的遗传变异被认为会影响奶牛的产奶量。本研究旨在调查巴基斯坦斯瓦特地区阿兹赫里水牛脂联素 1 基因第 6 和第 8 外显子中的 SNPs 与产奶量的关系。研究人员根据产奶量记录选择了一个农场饲养的阿兹赫里水牛。其中三头水牛来自高产奶量组,平均每天产奶 12.96 ± 0.83 升;三头来自低产奶量组,平均每天产奶 6.12 ± 0.28 升。从这些水牛的血样中提取基因组 DNA,用于扩增脂蛋白 1 基因的第 6、8 和相邻内含子(6、7 和 8)。PCR 产物通过桑格测序法进行测序。在高产和低产水牛的脂联素 1 基因目标区域共发现 45 个 SNPs。总体而言,在阿济合里水牛的脂蛋白 1 基因第 8 外显子中发现了四个错义变异(g.62048T>C; Met399Thr 和 g.62069C>A; Pro406His)。产奶量与 SNP g.62048T>C;Met399Thr呈正相关,与低产奶量组相比,高产奶量组中 SNP g.62048T>C; Met399Thr 的出现频率更高(0.83 vs 0.33)。SNP g.62069C>A;Pro406His是低产奶量水牛特有的,表明它与产奶量呈负相关。此外,利用 Phyr2 网络服务器构建的脂蛋白 I 蛋白三维结构可视化和错义三维分析发现,所报告的 SNPs 对目标蛋白没有造成结构损伤。总之,SNPs g.62048T>C;Met399Thr和g.62069C>A;Pro406His可作为提高水牛产奶量的潜在遗传标记。
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Evaluation of Lipin 1 polymorphisms for genetic markers in association with performance traits in Azikheli buffalo

Lipin 1 regulates lipid metabolism in mammary glands. Genetic variation in lipin 1 gene is thought to effect milk production in dairy animals. This study aimed to investigate the association of SNPs in the exon 6 and 8 of the lipin 1 gene with milk yield in Azikheli buffalo from Swat, Pakistan. Azikheli buffaloes raised in a farm were selected based on their milk yield records. Three buffaloes were selected from the high milk yielding group with an average production of 12.96 ± 0.83 liters per day, and three from low yielding group producing 6.12 ± 0.28 liters of milk per day. Genomic DNA was extracted from the blood samples of these buffaloes, which were used to amplify exon 6, 8 the adjacent introns (6, 7 and 8) of the lipin 1 gene. The PCR products was sequenced through sanger sequencing. A total of 45 SNPs were found in the targeted regions of the lipin 1 gene in both high and low yielding buffaloes. Overall, four missense variants (g.62048T>C; Met399Thr and g.62069C>A; Pro406His) were found in the exon 8 of lipin 1 gene in Azikheli buffalo. Milk yield was positive correlated with SNP g.62048T>C; Met399Thr that was more frequent (0.83 vs 0.33) in high milk yielding buffaloes compared to the low yielding group. SNP g.62069C>A; Pro406His was unique to low milk yielding buffaloes suggesting its negative association with milk yield. Moreover, the visualization of 3D structure of the lipin I protein constructed using Phyr2 web server and the Missense 3D analysis identified no structural damages caused by the reported SNPs on the target protein. In conclusion, SNPs g.62048T>C; Met399Thr and g.62069C>A; Pro406His could serve as potential genetic markers for increasing milk productivity in buffaloes.

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