生物
适应(眼睛)
系统发育树
错义突变
进化生物学
谱系(遗传)
遗传学
转基因
缺氧(环境)
转基因小鼠
休眠(计算)
否定选择
功能分歧
适应性进化
突变
表型
系统发育学
基因
机制(生物学)
自然选择
收敛演化
氨基酸取代
分子进化
基因复制
实验进化
积极选择
模式生物
作者
Jinjin Zhang,Xiuping Zhang,Ningyawen Liu,Jiang Hu,Michael Hiller,Virag Sharma,Fengming Han,He Dai,Xiaolong Tu,D.N. Cooper,Dong-Dong Wu,Lin Zeng
标识
DOI:10.1093/molbev/msag001
摘要
Hibernation is an adaptive survival strategy used by animals to cope with extreme environmental conditions. Although this physiological process involves complex metabolic changes, its underlying biological mechanisms remain largely unknown. Through comparative genomic analysis of six hibernating species across five orders, we identified an ancient amino acid substitution in POMT2 (R708Q), exhibiting signals of both convergent and positive selection in hibernating mammals. Phylogenetic analysis using HeIST indicated hemiplasy as a possible explanation, though given mammalian divergence times and the broader evidence for convergence, this is best considered an alternative rather than the primary interpretation. Functional studies using transgenic mice demonstrated the contribution of this mutation to hypoxia adaptation. Notably, despite the absence of this mutation in Rodentia hibernators, we included Graphiurus kelleni as a positive control in physiological studies of transgenic mice carrying POMT2 (R708Q), given its remarkable hypoxia adaptation during hibernation. Our findings not only provide novel insights into the genetic basis of hypoxic adaptation in hibernating mammals but also suggest incomplete lineage sorting (hemiplasy) as a plausible evolutionary mechanism for this important adaptive trait.
科研通智能强力驱动
Strongly Powered by AbleSci AI