Russian Research Institute of Farm Animal Genetics and Breeding ‒ Branch of the L. K. Ernst Federal Research Centre for Animal Husbandry, Pushkin, St. Petersburg, 196601, Russia.
School of Biosciences, University of Kent, Canterbury, CT2 7NJ, UK.
J Zhejiang Univ Sci B. 2024 Apr 15;25(4):324-340. doi: 10.1631/jzus.B2300443.
The worldwide chicken gene pool encompasses a remarkable, but shrinking, number of divergently selected breeds of diverse origin. This study was a large-scale genome-wide analysis of the landscape of the complex molecular architecture, genetic variability, and detailed structure among 49 populations. These populations represent a significant sample of the world's chicken breeds from Europe (Russia, Czech Republic, France, Spain, UK, etc.), Asia (China), North America (USA), and Oceania (Australia). Based on the results of breed genotyping using the Illumina 60K single nucleotide polymorphism (SNP) chip, a bioinformatic analysis was carried out. This included the calculation of heterozygosity/homozygosity statistics, inbreeding coefficients, and effective population size. It also included assessment of linkage disequilibrium and construction of phylogenetic trees. Using multidimensional scaling, principal component analysis, and ADMIXTURE-assisted global ancestry analysis, we explored the genetic structure of populations and subpopulations in each breed. An overall 49-population phylogeny analysis was also performed, and a refined evolutionary model of chicken breed formation was proposed, which included egg, meat, dual-purpose types, and ambiguous breeds. Such a large-scale survey of genetic resources in poultry farming using modern genomic methods is of great interest both from the viewpoint of a general understanding of the genetics of the domestic chicken and for the further development of genomic technologies and approaches in poultry breeding. In general, whole genome SNP genotyping of promising chicken breeds from the worldwide gene pool will promote the further development of modern genomic science as applied to poultry.
世界范围内的鸡基因库包含了数量惊人但正在减少的、具有不同起源和不同选择方向的品种。本研究对来自欧洲(俄罗斯、捷克共和国、法国、西班牙、英国等)、亚洲(中国)、北美(美国)和大洋洲(澳大利亚)的 49 个种群的复杂分子结构、遗传多样性和详细结构进行了大规模的全基因组分析。这些种群代表了世界范围内鸡品种的重要样本。基于使用 Illumina 60K 单核苷酸多态性(SNP)芯片对品种进行基因分型的结果,进行了生物信息学分析。这包括计算杂合性/纯合性统计、近交系数和有效种群大小。还包括评估连锁不平衡和构建系统发育树。使用多维尺度分析、主成分分析和 ADMIXTURE 辅助的全球祖先分析,我们探索了每个品种的种群和亚群的遗传结构。还进行了总体的 49 个种群系统发育分析,并提出了一个鸡品种形成的精细进化模型,其中包括蛋鸡、肉鸡、兼用型和模糊品种。利用现代基因组方法对家禽养殖中的遗传资源进行如此大规模的调查,无论从对家鸡遗传学的普遍理解的角度,还是从家禽养殖中基因组技术和方法的进一步发展的角度来看,都具有重要意义。总的来说,对来自世界基因库的有前途的鸡品种进行全基因组 SNP 基因分型将促进现代基因组科学在应用于家禽方面的进一步发展。