Key Laboratory of Chicken Genetics and Breeding, Ministry of Agriculture and Rural Affairs, Harbin, P.R. China.
Key Laboratory of Animal Genetics, Breeding and Reproduction, Education Department of Heilongjiang Province, Harbin, P.R. China.
J Anim Breed Genet. 2022 Jul;139(4):434-446. doi: 10.1111/jbg.12674. Epub 2022 Feb 28.
Chicken internal organs are indispensable parts of the body, but their genetic architectures have not been commonly understood. Herein, we estimated the genetic parameters for heart weight (HW), liver weight (LW), spleen weight (SpW), testis weight (TW), glandular stomach weight (GSW), muscular stomach weight (MSW) and identified single nucleotide polymorphisms (SNPs) and potential candidate genes associated with internal organ weights in an F population constructed by crossing broiler cocks derived from Arbor Acres with high abdominal fat content and Baier layer dams (a Chinese native breed). The restricted maximum likelihood (REML) method was applied for genetic parameters estimation of internal organ weights using GCTA software. The results showed that heritabilities of internal organ traits ranged from 0.336 to 0.673 and most of the genetic and phenotypic correlations amongst internal organs weights were positive. A genome-wide association study (GWAS) was performed based on a mixed linear model (MLM) in GEMMA software. Genotypic data were produced from the whole genome re-sequenced (26 F individuals were re-sequenced at 10 × coverage; 519 F individuals were re-sequenced at 3 × coverage). A total of 7,890,258 SNPs remained to be analysed after quality control and genotype imputation. The GWAS results indicated that significant SNPs responsible for internal organ traits were scattered on the different chicken chromosomes 1-5, 8, 11, 14, 16, 18, 19 and 27. Amongst the annotated genes, fibronectin type III domain containing 3A (FNDC3A), LOC101748122, membrane palmitoylated protein 6 (MPP6), LOC107049584 and KAT8 regulatory NSL complex subunit 1 (KANSL1) were the most promising candidates for internal organ traits. The findings will provide instrumental information for understanding the genetic basis of internal organ development.
鸡的内脏器官是身体不可或缺的部分,但它们的遗传结构尚未被普遍理解。在此,我们通过对来自 Arbor Acres 的高腹脂肉鸡和 Baier 层母鸡(中国本土品种)杂交产生的 F1 群体进行估计,对心脏重量 (HW)、肝脏重量 (LW)、脾脏重量 (SpW)、睾丸重量 (TW)、腺胃重量 (GSW)、肌胃重量 (MSW)的遗传参数进行了估计,并鉴定了与内脏器官重量相关的单核苷酸多态性 (SNP)和潜在候选基因。使用 GCTA 软件通过约束极大似然法 (REML) 对内脏器官重量的遗传参数进行了估计。结果表明,内脏器官性状的遗传力范围为 0.336 至 0.673,大多数内脏器官之间的遗传和表型相关性均为正相关。利用 GEMMA 软件中的混合线性模型 (MLM) 进行了全基因组关联研究 (GWAS)。基因型数据来自全基因组重测序 (26 个 F1 个体以 10× 覆盖率重测序;519 个 F1 个体以 3× 覆盖率重测序)。经过质量控制和基因型插补后,共分析了 7890258 个 SNP。GWAS 结果表明,负责内脏器官性状的显著 SNP 分布在鸡的不同染色体 1-5、8、11、14、16、18、19 和 27 上。在注释基因中,纤连蛋白 III 型结构域包含 3A (FNDC3A)、LOC101748122、膜棕榈酰化蛋白 6 (MPP6)、LOC107049584 和 KAT8 调节 NSL 复合物亚基 1 (KANSL1) 是内脏器官性状最有前途的候选基因。这些发现将为理解内脏器官发育的遗传基础提供有价值的信息。