Department of Ecology and Evolution, University of Lausanne, Lausanne, Switzerland.
Applied Biodiversity Research Division, South African National Biodiversity Institute, Cape Town, South Africa.
Elife. 2021 Nov 2;10:e67485. doi: 10.7554/eLife.67485.
Differences between males and females are usually more subtle in dioecious plants than animals, but strong sexual dimorphism has evolved convergently in the South African Cape plant genus . Such sexual dimorphism in leaf size is expected largely to be due to differential gene expression between the sexes. We compared patterns of gene expression in leaves among 10 species across the genus. Surprisingly, we found no positive association between sexual dimorphism in morphology and the number or the percentage of sex-biased genes (SBGs). Sex bias in most SBGs evolved recently and was species specific. We compared rates of evolutionary change in expression for genes that were sex biased in one species but unbiased in others and found that SBGs evolved faster in expression than unbiased genes. This greater rate of expression evolution of SBGs, also documented in animals, might suggest the possible role of sexual selection in the evolution of gene expression. However, our comparative analysis clearly indicates that the more rapid rate of expression evolution of SBGs predated the origin of bias, and shifts towards bias were depleted in signatures of adaptation. Our results are thus more consistent with the view that sex bias is simply freer to evolve in genes less subject to constraints in expression level.
雌雄异株植物中雌雄之间的差异通常比动物更细微,但南非海角植物属中的强烈性二型性已经趋同进化。叶片大小的这种性别二型性在很大程度上归因于性别之间的差异基因表达。我们比较了属内 10 个物种的叶片基因表达模式。令人惊讶的是,我们没有发现形态上的性别二型性与性偏向基因(SBG)的数量或百分比之间存在正相关关系。大多数 SBG 的性别偏向是最近进化而来的,并且是物种特异性的。我们比较了在一个物种中具有性别偏向但在其他物种中无偏向的基因的表达进化速率,发现 SBG 的表达进化速度比无偏向基因快。这种 SBG 在表达上的更大进化速率也在动物中得到了证明,这可能表明性选择在基因表达进化中的可能作用。然而,我们的比较分析清楚地表明,SBG 的表达进化更快是在偏倚的起源之前发生的,并且在适应的特征中,偏倚的转变被耗尽了。因此,我们的结果更符合这样一种观点,即性别偏向在表达水平受限制较少的基因中更自由地进化。