Plesnar-Bielak Agata, Skwierzyńska Anna M, Radwan Jacek
Institute of Environmental Sciences, Faculty of Biology, Jagiellonian University, Kraków, Poland.
Institute of Environmental Biology, Faculty of Biology, Adam Mickiewicz University, Poznań, Poland.
J Evol Biol. 2020 Oct;33(10):1433-1439. doi: 10.1111/jeb.13680. Epub 2020 Jul 31.
Sexual selection and conflict can act on genes with important metabolic functions, potentially shaping standing genetic variance in such genes and thus evolutionary potential of populations. Here, using experimental evolution, we show how reproductive competition intensity and thermal environment affect selection on phosphogluconate dehydrogenase (6Pgdh)-a metabolic gene involved in sexual selection and conflict in the bulb mite. The S allele of 6Pgdh increases male success in reproductive competition, but is detrimental to S-bearing males' partners. We found that the rate of the S allele spread increased with the proportion of males in the experimental populations, illustrating that harm to females is more easily compensated for males under more intense sexual competition. Furthermore, we found that under equal sex ratio, the S allele spreads faster at higher temperature. While the direction of selection on 6Pgdh was not reversed in any of the conditions we tested, which would be required for environmental heterogeneity to maintain polymorphism at this locus, our study highlights that ecological and sexual selection can jointly affect selection on important metabolic enzymes.
性选择和冲突可作用于具有重要代谢功能的基因,有可能塑造此类基因的现存遗传变异,进而影响种群的进化潜力。在此,我们通过实验进化表明,繁殖竞争强度和热环境如何影响对磷酸葡萄糖酸脱氢酶(6Pgdh)的选择,该代谢基因参与球螨的性选择和冲突。6Pgdh的S等位基因增加了雄性在繁殖竞争中的成功率,但对携带S的雄性的伴侣有害。我们发现,S等位基因的传播速率随着实验种群中雄性比例的增加而增加,这表明在更强的性竞争下,对雌性的伤害更容易被雄性弥补。此外,我们发现,在性别比例相等的情况下,S等位基因在较高温度下传播得更快。虽然在我们测试的任何条件下,对6Pgdh的选择方向都没有逆转(而这是环境异质性在该位点维持多态性所必需的),但我们的研究强调,生态选择和性选择可以共同影响对重要代谢酶的选择。