4.7 Article

Genome-Wide Association Study and Selective Sweep Analysis Reveal the Genetic Architecture of Body Weights in a Chicken F2 Resource Population

期刊

FRONTIERS IN VETERINARY SCIENCE
卷 9, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fvets.2022.875454

关键词

broiler; growth trait; body weight; GWAS; selective sweep

资金

  1. National Key R&D Program of China [2021YFD1300100]
  2. Joint Guidance Project of Heilongjiang Natural Science Foundation [LH2021C036]
  3. National Natural Science Foundation of China [31572394, 31972549]
  4. China Agriculture Research System of MOF and MARA [CARS-41]
  5. Project of the Ministry of Agriculture and Rural Affairs in China [19190526]

向作者/读者索取更多资源

This study identified SNPs and genes with significant effects on body weight in different weeks of age in a broiler population using genome-wide association study and selective sweep analysis. The findings provide valuable information for understanding the genetic architecture of growth traits in broilers.
Rapid growth is one of the most important economic traits in broiler breeding programs. Identifying markers and genes for growth traits may not only benefit marker-assisted selection (MAS)/genomic selection (GS) but also provide important information for understanding the genetic architecture of growth traits in broilers. In the present study, an F-2 resource population derived from a cross between the broiler and Baier yellow chicken (a Chinese local breed) was used and body weights from 1 to 12 weeks of age [body weight (BW) 1-BW12)] were measured. A total of 519 F-2 birds were genome re-sequenced, and a combination of genome-wide association study (GWAS) and selective sweep analysis was carried out to characterize the genetic architecture affecting chicken body weight comprehensively. As a result, 1,539 SNPs with significant effects on body weights at different weeks of age were identified using a genome-wide efficient mixed-model association (GEMMA) package. These SNPs were distributed on chromosomes 1 and 4. Besides, windows under selection identified for BW1-BW12 varied from 1,581 to 2,265. A total of 42 genes were also identified with significant effects on BW1-BW12 based on both GWAS and selective sweep analysis. Among these genes, diacylglycerol kinase eta (DGKH), deleted in lymphocytic leukemia (DLEU7), forkhead box O17 (FOXO1), karyopherin subunit alpha 3 (KPNA3), calcium binding protein 39 like (CAB39L), potassium voltage-gated channel interacting protein 4 (KCNIP4), and slit guidance ligand 2 (SLIT2) were considered as important genes for broiler growth based on their basic functions. The results of this study may supply important information for understanding the genetic architecture of growth traits in broilers.

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