How natural diversity is maintained is an evolutionary puzzle. Genetic variation can be eroded by drift and directional selection but some polymorphisms persist for long time periods, implicating a role for balancing selection. Here, we investigate the maintenance of a chromosomal inversion polymorphism in the seaweed fly Coelopa frigida. Using experimental evolution and quantifying fitness, we show that the inversion underlies a life-history trade-off, whereby each haplotype has opposing effects on larval survival and adult reproduction. Numerical simulations confirm that such antagonistic pleiotropy can maintain polymorphism. Our results also highlight the importance of sex-specific effects, dominance and environmental heterogeneity, whose interaction enhances the maintenance of polymorphism through antagonistic pleiotropy. Overall, our findings directly demonstrate how overdominance and sexual antagonism can emerge from a life-history trade-off, inviting reconsideration of antagonistic pleiotropy as a key part of multi-headed balancing selection processes that enable the persistence of genetic variation.

译文

如何保持自然多样性是一个进化难题。遗传变异可能会因漂移和方向选择而受到侵蚀,但某些多态性会长期存在,这意味着平衡选择的作用。在这里,我们研究了海藻蝇Coelopa frigida中染色体反转多态性的维持。通过实验进化和量化适应性,我们证明了反转是生活史权衡的基础,其中每个单倍型对幼虫的存活和成年繁殖具有相反的影响。数值模拟证实,这种拮抗多效性可以保持多态性。我们的结果还强调了性别特异性效应,优势和环境异质性的重要性,它们的相互作用通过拮抗多效性增强了多态性的维持。总的来说,我们的发现直接证明了过度支配和性拮抗如何从生活史的权衡中出现,邀请人们重新考虑拮抗多效性作为多头平衡选择过程的关键部分,从而实现遗传变异的持久性。

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