Laboratory of Biophysics and Evolution, Chemistry Biology Innovation, ESPCI, Université PSL, 75005 Paris, France.
Center for Interdisciplinary Research in Biology (CIRB), Collège de France, CNRS, INSERM, Université PSL, 75005 Paris, France.
Proc Biol Sci. 2023 May 31;290(1999):20230634. doi: 10.1098/rspb.2023.0634. Epub 2023 May 17.
Phenotypes are partly shaped by the environment, which can impact both short-term adaptation and long-term evolution. In dioecious species, the two sexes may exhibit different degrees of phenotypic plasticity and theoretical models indicate that such differences may confer an adaptive advantage when the population is subject to directional selection, either because of a systematically varying environment or a load of deleterious mutations. The effect stems from the fundamental asymmetry between the two sexes: female fertility is more limited than male fertility. Whether this asymmetry is sufficient for sexual dimorphism in phenotypic plasticity to evolve is, however, not obvious. Here, we show that even in conditions where it provides an adaptive advantage, dimorphic phenotypic plasticity may be evolutionarily unstable due to sexual selection. This is the case, in particular, for panmictic populations where mating partnerships are formed at random. However, we show that the effects of sexual selection can be counteracted when mating occurs within groups of related individuals. Under this condition, sexual dimorphism in phenotypic plasticity can not only evolve but offset the twofold cost of males. We demonstrate these points with a simple mathematical model through a combination of analytical and numerical results.
表型部分由环境塑造,环境会影响短期适应和长期进化。在雌雄异株的物种中,两性可能表现出不同程度的表型可塑性,理论模型表明,当种群受到定向选择时,这种差异可能会带来适应性优势,无论是由于环境的系统性变化还是有害突变的负担。这种效应源于两性之间的基本不对称性:雌性的生育能力比雄性更有限。然而,这种不对称性是否足以使表型可塑性的性别二态性进化,这并不明显。在这里,我们表明,即使在提供适应性优势的情况下,由于性选择,两性异形的表型可塑性也可能是进化不稳定的。特别是在交配伙伴是随机形成的自由交配群体中,情况就是如此。然而,我们表明,当交配发生在有亲缘关系的个体群体中时,性选择的影响可以被抵消。在这种情况下,表型可塑性的性别二态性不仅可以进化,而且可以抵消雄性的两倍成本。我们通过结合分析和数值结果的简单数学模型证明了这一点。