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利用全基因组单核苷酸多态性对鸡体型进行比较群体基因组学分析。

Comparative population genomics analysis for chicken body sizes using genome-wide single nucleotide polymorphisms.

作者信息

Yan Sensen, Gao Chaoqun, Tian Kaiyuan, Xiao Chengpeng, Shi Junlai, Jia Xintao, Wang Kejun, Sun Guirong, Li Donghua, Li Wenting, Kang Xiangtao

机构信息

College of Animal Science and Technology, Henan Agricultural University, Zhengzhou 450046, China.

The Shennong Laboratory, Zhengzhou 450046, China.

出版信息

Anim Biosci. 2025 Apr;38(4):600-611. doi: 10.5713/ab.24.0347. Epub 2024 Oct 28.

Abstract

OBJECTIVE

This study aims to investigate the selection history, genome regions, and candidate genes associated with different chicken body sizes, thereby providing insights into the genetic basis of complex economic traits such as chicken body size and growth.

METHODS

In this study, a total of 217 individuals from eight breeds were selected. According to body size, they were divided into two groups: large chickens and bantam chickens, with four breeds in each group. Firstly, we investigate population structure by principal component analysis (PCA), phylogenetic tree, and ancestry component analysis. Next, we recognize runs of homozygosity (ROH) islands through calculating ROH. Finally, we carry out selection signatures analysis utilizing population differentiation index and nucleic acid diversity.

RESULTS

The population structure analysis show that large and bantam chickens are clearly separated. Large chickens are clustered together, the bantam chickens are relatively dispersed. The results of ROH island analysis show that 48 and 56 ROH islands were identified in large and bantam chickens respectively. Among the interesting ROH islands, a total of eight candidate genes were identified. In selection signatures analysis, a total of 322 selected genes were annotated in large chickens, such as POU1F1, BMP10, enrichment in 16 gene ontology (GO) terms. In bantam chickens, a total of 447 selected genes were annotated, such as IGF1, GRB10, enrichment in 20 GO terms and 2 Kyoto encyclopedia of genes and genomes pathways. The haplotype analysis results show that GRB10 has differences in chickens of different body sizes.

CONCLUSION

By population structure, ROH islands, and selection signatures analysis, we have identified multiple genes associated with chicken body size, growth, and development (such as BMP10, IGF1, GRB10, etc). This provides a theoretical reference for the subsequent development of molecular markers for chicken body size and the analysis of the genetic mechanism of chicken body size.

摘要

目的

本研究旨在探究与不同鸡体型相关的选择历史、基因组区域和候选基因,从而深入了解鸡体型和生长等复杂经济性状的遗传基础。

方法

本研究共选取了来自八个品种的217只个体。根据体型将它们分为两组:大型鸡和矮脚鸡,每组各有四个品种。首先,我们通过主成分分析(PCA)、系统发育树和祖先成分分析来研究群体结构。接下来,我们通过计算纯合片段(ROH)来识别ROH岛。最后,我们利用群体分化指数和核酸多样性进行选择信号分析。

结果

群体结构分析表明,大型鸡和矮脚鸡明显分开。大型鸡聚在一起,矮脚鸡相对分散。ROH岛分析结果显示,在大型鸡和矮脚鸡中分别鉴定出48个和56个ROH岛。在这些有趣的ROH岛中,共鉴定出八个候选基因。在选择信号分析中,大型鸡中共注释了322个选择基因,如POU1F1、BMP10,富集于16个基因本体(GO)术语。在矮脚鸡中,共注释了447个选择基因,如IGF1、GRB10,富集于20个GO术语和2条京都基因与基因组百科全书通路。单倍型分析结果表明,GRB10在不同体型的鸡中存在差异。

结论

通过群体结构、ROH岛和选择信号分析,我们鉴定出了多个与鸡体型、生长和发育相关的基因(如BMP10、IGF1、GRB10等)。这为后续鸡体型分子标记的开发以及鸡体型遗传机制的分析提供了理论参考。

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