Kopania Emily E K, Thomas Gregg W C, Hutter Carl R, Mortimer Sebastian M E, Callahan Colin M, Roycroft Emily, Achmadi Anang S, Breed William G, Clark Nathan L, Esselstyn Jacob A, Rowe Kevin C, Good Jeffrey M
Division of Biological Sciences, University of Montana, Missoula, MT, USA.
Department of Human Genetics, University of Utah, Salt Lake City, UT, USA.
Evolution. 2024 Dec 22;79(1):11-27. doi: 10.1093/evolut/qpae146.
It remains unclear how variation in the intensity of sperm competition shapes phenotypic and molecular evolution across clades. Mice and rats in the subfamily Murinae are a rapid radiation exhibiting incredible diversity in sperm morphology and production. We combined phenotypic and genomic data to perform phylogenetic comparisons of male reproductive traits and genes across 78 murine species. We identified several shifts towards smaller relative testes mass (RTM), presumably reflecting reduced sperm competition. Several sperm traits were associated with RTM, suggesting that mating system evolution selects for convergent suites of traits related to sperm competitive ability. We predicted that sperm competition would also drive more rapid molecular divergence in species with large testes. Contrary to this, we found that many spermatogenesis genes evolved more rapidly in species with smaller RTM due to relaxed purifying selection. While some reproductive genes evolved rapidly under recurrent positive selection, relaxed selection played a greater role in underlying rapid evolution in small testes species. Our work demonstrates that postcopulatory sexual selection can impose strong purifying selection shaping the evolution of male reproduction and that broad patterns of molecular evolution may help identify genes that contribute to male fertility.
目前尚不清楚精子竞争强度的变化如何影响不同进化枝的表型和分子进化。鼠亚科的小鼠和大鼠是一个快速辐射演化的群体,其精子形态和产生量表现出令人难以置信的多样性。我们结合表型和基因组数据,对78种鼠类物种的雄性生殖特征和基因进行了系统发育比较。我们发现了几个朝着相对睾丸质量(RTM)变小的转变,这可能反映了精子竞争的减少。几个精子特征与RTM相关,这表明交配系统的进化选择了与精子竞争能力相关的趋同性状组合。我们预测,精子竞争也会推动睾丸较大的物种中分子分化更快。与此相反,我们发现由于净化选择的放松,许多精子发生基因在RTM较小的物种中进化得更快。虽然一些生殖基因在反复的正选择下快速进化,但放松选择在小睾丸物种的快速进化中起到了更大的作用。我们的研究表明,交配后的性选择可以施加强大的净化选择,塑造雄性生殖的进化,并且广泛的分子进化模式可能有助于识别对雄性生育能力有贡献的基因。