Volkova Natalia A, Romanov Michael N, German Nadezhda Yu, Larionova Polina V, Vetokh Anastasia N, Volkova Ludmila A, Sermyagin Alexander A, Shakhin Alexey V, Griffin Darren K, Sölkner Johann, McEwan John, Brauning Rudiger, Zinovieva Natalia A
L. K. Ernst Federal Research Center for Animal Husbandry, Dubrovitsy, Podolsk 142132, Russia.
School of Natural Sciences, University of Kent, Canterbury CT2 7NJ, UK.
Int J Mol Sci. 2025 Aug 25;26(17):8243. doi: 10.3390/ijms26178243.
Molecular research for genetic variants underlying body weight (BW) provides crucial information for this important selected trait when developing productive poultry breeds, lines and crosses. We searched for molecular markers-single nucleotide polymorphisms (SNPs)-and candidate genes associated with this trait in 240 F resource population Japanese quails (). This population was produced by crossing two breeds with contrasting growth phenotypes, i.e., Japanese (with lower growth) and Texas White (with higher growth). The birds were genotyped using the genotyping-by-sequencing method followed by a genome-wide association study (GWAS). Using 74,387 SNPs, GWAS resulted in 142 significant SNPs and 42 candidate genes associated with BW at the age of 1, 14, 28, 35, 42, 49 and 56 days. Hereby, 25 SNPs simultaneously associated with BW at more than one age were established that colocalized with nine prioritized candidate genes (PCGs), including , , , , , , , , and . Twelve PCGs were identified in the regions of two or more significant SNPs, including , , , , , , , , , , , and . These SNPs and PCGs can serve as molecular genetic markers for the genomic selection of quails with desirable BW phenotypes to enhance growth rates and meat productivity.
对体重(BW)潜在遗传变异的分子研究,在培育高产家禽品种、品系和杂交品种时,为这一重要的选择性状提供了关键信息。我们在240只F资源群体日本鹌鹑中寻找与该性状相关的分子标记——单核苷酸多态性(SNP)和候选基因。这个群体是通过将两个具有不同生长表型的品种杂交产生的,即日本鹌鹑(生长较慢)和德州白鹌鹑(生长较快)。采用测序基因分型方法对这些鹌鹑进行基因分型,随后进行全基因组关联研究(GWAS)。利用74387个SNP,GWAS在1、14、28、35、42、49和56日龄时发现了142个与BW相关的显著SNP和42个候选基因。据此,确定了25个在多个年龄同时与BW相关的SNP,它们与9个优先候选基因(PCG)共定位,包括[此处原文未列出具体基因名称]。在两个或更多显著SNP区域鉴定出12个PCG,包括[此处原文未列出具体基因名称]。这些SNP和PCG可作为分子遗传标记,用于对具有理想BW表型的鹌鹑进行基因组选择,以提高生长速度和肉产量。