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利用高密度单核苷酸多态性芯片进行鸡斑驳蛋的全基因组关联研究。

Genome-wide association studies for mottled eggs in chickens using a high-density single-nucleotide polymorphism array.

机构信息

Jiangsu Institute of Poultry Science, Chinese Academy of Agricultural Sciences, 225125 Yangzhou, Jiangsu, China.

Jiangsu Institute of Poultry Science, Chinese Academy of Agricultural Sciences, 225125 Yangzhou, Jiangsu, China; College of Biotechnology, Jiangsu University of Science and Technology, 212003 Zhenjiang, Jiangsu, China.

出版信息

Animal. 2021 Jan;15(1):100051. doi: 10.1016/j.animal.2020.100051. Epub 2020 Dec 10.

Abstract

Mottled eggs in layer chickens are gaining increasing attention because of the economic impact on the egg industry caused by the reduced sale value of commodity eggs. However, the genetic architecture underlying mottled eggs is not well understood. The genetic architecture underlying the mottled egg trait was investigated using genome-wide association studies (GWAS) by high-density arrays, using a total of 407 pink eggs and 799 blue eggs from an F resource population generated by crossing Dongxiang Blue-shelled and White Leghorn chickens. The mottled egg score in blue eggs was found to be higher than that in pink eggs. The single-nucleotide polymorphism heritability of mottled egg at laying day and storage for 7 days was 0.18 and 0.20, respectively. Bivariate GWAS provided 29 significant loci, mainly located on GGA2, GGA3, GGA8, GGA10, GGA15, GGA17, and GGA23, affecting mottled egg on laying day. Candidate genes RIMS2, SLC25A32, RIMBP2, VPS13B, and RGS3 were obtained for mottled eggshell by bivariate GWAS and gene annotation. Our findings provide new insights into the genetic architecture of mottled egg in hens, and demonstrate that a genomic selection method would be profitable for breeding out the mottled egg trait.

摘要

杂色蛋在蛋鸡中越来越受到关注,因为商品蛋销售价值降低给蛋鸡养殖业带来了经济影响。然而,杂色蛋的遗传结构尚不清楚。本研究通过高密度基因芯片,利用东乡绿壳蛋鸡和白来航鸡杂交产生的 F1 资源群体中的 407 枚粉壳蛋和 799 枚蓝壳蛋,采用全基因组关联分析(GWAS)对杂色蛋性状的遗传结构进行了研究。结果表明,蓝壳蛋的杂色蛋评分高于粉壳蛋。在产蛋日和储存 7 天后,杂色蛋评分的单核苷酸多态性遗传力分别为 0.18 和 0.20。双变量 GWAS 提供了 29 个显著的位点,主要位于 GGA2、GGA3、GGA8、GGA10、GGA15、GGA17 和 GGA23,影响产蛋日的杂色蛋。通过双变量 GWAS 和基因注释,获得了候选基因 RIMS2、SLC25A32、RIMBP2、VPS13B 和 RGS3,这些基因与杂色蛋壳有关。本研究结果为母鸡杂色蛋的遗传结构提供了新的见解,并表明基因组选择方法将有利于培育出杂色蛋性状。

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