Lin Xiang, Zheng Hong-Xiang, Davie Allan, Zhou Shi, Wen Li, Meng Jun, Zhang Yong, Aladaer Qimude, Liu Bin, Liu Wu-Jun, Yao Xin-Kui
a Tianjin Key Laboratory of Exercise Physiology and Sports Medicine , Tianjin University of Sports , Tianjin , P.R. China.
b State Key Laboratory of Genetic Engineering and MOE Key Laboratory of Contemporary Anthropology, School of Life Sciences and Institutes of Biomedical Sciences , Fudan University , Shanghai , P.R.China.
Mitochondrial DNA A DNA Mapp Seq Anal. 2018 Mar;29(2):323-330. doi: 10.1080/24701394.2016.1278535. Epub 2017 Jan 27.
Mitochondrial DNA (mtDNA) encodes the genes for respiratory chain sub-units that determine the efficiency of oxidative phosphorylation in mitochondria. The aim of this study was to determine if there were any haplogroups and variants in mtDNA that could be associated with athletic performance of Thoroughbred horses. The whole mitochondrial genomes of 53 maternally unrelated Australian Thoroughbred horses were sequenced and an association study was performed with the competition histories of 1123 horses within their maternal lineages. A horse mtDNA phylogenetic tree was constructed based on a total of 195 sequences (including 142 from previous reports). The association analysis showed that the sample groups with poor racing performance history were enriched in haplogroup L3b (p = .0003) and its sub-haplogroup L3b1a (p = .0007), while those that had elite performance appeared to be not significantly associated with haplogroups G2 and L3a1a1a (p > .05). Haplogroup L3b and L3b1a bear two and five specific variants of which variant T1458C (site 345 in 16s rRNA) is the only potential functional variant. Furthermore, secondary reconstruction of 16s RNA showed considerable differences between two types of 16s RNA molecules (with and without T1458C), indicating a potential functional effect. The results suggested that haplogroup L3b, could have a negative association with elite performance. The T1458C mutation harboured in haplogroup L3b could have a functional effect that is related to poor athletic performance.
线粒体DNA(mtDNA)编码呼吸链亚基的基因,这些基因决定了线粒体中氧化磷酸化的效率。本研究的目的是确定mtDNA中是否存在与纯种马运动表现相关的单倍群和变异。对53匹母系无亲缘关系的澳大利亚纯种马的整个线粒体基因组进行了测序,并对其母系谱系中1123匹马的比赛历史进行了关联研究。基于总共195个序列(包括先前报告中的142个)构建了马mtDNA系统发育树。关联分析表明,比赛成绩不佳的样本组在单倍群L3b(p = 0.0003)及其亚单倍群L3b1a(p = 0.0007)中富集,而那些具有优秀表现的样本组似乎与单倍群G2和L3a1a1a没有显著关联(p > 0.05)。单倍群L3b和L3b1a分别有两个和五个特定变异,其中变异T1458C(16s rRNA中的第345位点)是唯一潜在的功能变异。此外,16s RNA的二级结构重建显示两种类型的16s RNA分子(有和没有T1458C)之间存在相当大的差异,表明存在潜在的功能效应。结果表明,单倍群L3b可能与优秀表现呈负相关。单倍群L3b中存在的T1458C突变可能具有与运动表现不佳相关的功能效应。