Li Wenpeng, Yang Zhen, Yan Chao, Chen Siyu, Zhao Xingbo
College of Animal Science and Technology, China Agricultural University, Beijing, China.
Agricultural Genomics Institute, Chinese Academy of Agricultural Science, Shenzhen, China.
PeerJ. 2024 Dec 16;12:e17989. doi: 10.7717/peerj.17989. eCollection 2024.
Mitochondria play a pivotal role as carriers of genetic information through their circular DNA molecules. The rapid evolution of the D-loop region in mitochondria makes it an ideal molecular marker for exploring genetic differentiation among individuals within species and populations with close kinship. However, the influence of mtDNA D-loop region haplotypes and mtDNA copy numbers on phenotypic traits, particularly production traits in chickens, remains poorly understood. In this comprehensive study, we conducted D-loop region amplification and sequencing in the blood mitochondria of 232 female Wuliangshan black-bone chickens. Our investigation identified a total of 38 haplotypes, with a focus on 10 haplotypes that included more than five individuals. We meticulously analyzed the correlations between these haplotypes and a range of traits, encompassing body weight, tibial length, tibial circumference, body oblique length, chest width, and chest depth. The results unveiled significant disparities in specific tested traits across different haplotypes, indicating a tangible association between mtDNA haplotypes and traits in chickens. These findings underscore the potential impact of mitochondrial DNA variations on energy metabolism, ultimately leading to divergent chicken phenotypes. Furthermore, our examination revealed positive correlations between mtDNA copy numbers and tested traits for select haplotypes, while other haplotypes exhibited non-uniform relationships between traits and mtDNA copy numbers. In addition, phylogenetic analysis disclosed the involvement of two subspecies of red jungle chicken in the origin of Wuliangshan black-bone chickens. Consequently, our research contributes novel insights into mitochondrial genomic selection, augments comprehension of the roles played by haplotypes and mtDNA copy numbers in chicken population genetics and phylogenetic analysis, and furnishes fundamental data crucial for the preservation and provenance determination of black-bone chickens.
线粒体通过其环状DNA分子作为遗传信息的载体发挥着关键作用。线粒体中D-loop区域的快速进化使其成为探索物种内个体间以及亲缘关系密切的种群间遗传分化的理想分子标记。然而,mtDNA D-loop区域单倍型和mtDNA拷贝数对表型性状,特别是鸡的生产性状的影响,仍知之甚少。在这项全面的研究中,我们对232只雌性无量山黑骨鸡的血液线粒体进行了D-loop区域扩增和测序。我们的调查共鉴定出38种单倍型,重点关注包含5个以上个体的10种单倍型。我们仔细分析了这些单倍型与一系列性状之间的相关性,这些性状包括体重、胫长、胫围、体斜长、胸宽和胸深。结果显示,不同单倍型在特定测试性状上存在显著差异,表明mtDNA单倍型与鸡的性状之间存在明显关联。这些发现强调了线粒体DNA变异对能量代谢的潜在影响,最终导致鸡的表型差异。此外,我们的研究还发现,对于某些单倍型,mtDNA拷贝数与测试性状之间存在正相关,而其他单倍型在性状与mtDNA拷贝数之间呈现出不一致的关系。此外,系统发育分析揭示了原鸡的两个亚种参与了无量山黑骨鸡的起源。因此,我们的研究为线粒体基因组选择提供了新的见解,加深了对单倍型和mtDNA拷贝数在鸡群体遗传学和系统发育分析中所起作用的理解,并为黑骨鸡的保护和溯源提供了至关重要的基础数据。