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用于蛋鸡的定制50K Infinium SNP芯片的设计与评估

Design and evaluation of a custom 50K Infinium SNP array for egg-type chickens.

作者信息

Liu Zhuang, Sun Congjiao, Yan Yiyuan, Li Guangqi, Li Xiao Chang, Wu Guiqin, Yang Ning

机构信息

National Engineering Laboratory for Animal Breeding and MOA Key Laboratory of Animal Genetics and Breeding, College of Animal Science and Technology, China Agricultural University, Beijing 100193, China.

National Engineering Laboratory for Animal Breeding and MOA Key Laboratory of Animal Genetics and Breeding, College of Animal Science and Technology, China Agricultural University, Beijing 100193, China; Beijing Engineering Research Centre of Layer, Beijing 101206, China.

出版信息

Poult Sci. 2021 May;100(5):101044. doi: 10.1016/j.psj.2021.101044. Epub 2021 Feb 16.

Abstract

With the development of molecular genetics and high-throughput sequencing technology, genotyping arrays consisting of large numbers of SNP have raised great interest in animal and plant research. However, the application of commercial chicken 600K SNP arrays has varied in different populations of egg-type chickens. Moreover, their genotyping cost is too high for large-scale population applications. Herein, we independently developed a custom Illumina 50K BeadChip, named PhenoixChip-I, for egg-type chickens based on SNP from 479 sequenced individuals in 7 lines. We filtered and selected SNP with stringent criteria, such as high polymorphism, genome coverage, design score, and priorities. Finally, a total of 43,681 effective SNP successfully genotyped were included on our custom array. Approximately 14K SNP were previously reported to be associated with important economic traits in egg-type chickens. Subsequently, we verified the applicability and efficiency of the PhenoixChip-I SNP array from many aspects, including evaluating its use scientific research (population structure analysis and genome-wide association study) and the poultry breeding industry (genomic selection). The findings in our study will play a crucial role in accelerating the genetic improvement of egg-type chickens.

摘要

随着分子遗传学和高通量测序技术的发展,由大量单核苷酸多态性(SNP)组成的基因分型芯片在动植物研究中引起了极大关注。然而,商业鸡600K SNP芯片在不同蛋鸡群体中的应用情况各不相同。此外,其基因分型成本对于大规模群体应用来说过高。在此,我们基于7个品系479个测序个体的SNP,为蛋鸡自主开发了一种定制的Illumina 50K芯片,命名为PhenoixChip-I。我们采用严格标准筛选和选择SNP,如高多态性、基因组覆盖度、设计评分和优先级等。最终,我们的定制芯片上成功进行基因分型的有效SNP共有43,681个。此前约有14K SNP被报道与蛋鸡的重要经济性状相关。随后,我们从多个方面验证了PhenoixChip-I SNP芯片的适用性和效率,包括评估其在科学研究(群体结构分析和全基因组关联研究)以及家禽育种行业(基因组选择)中的应用。我们研究中的这些发现将对加速蛋鸡的遗传改良起到关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cc6/8010521/e4f657895a6f/fx1.jpg

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