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Multiple sexual selection pressures drive the rapid evolution of complex morphology in a male secondary genital structure

机译:多重性选择压力推动男性次生殖器结构中复杂形态的快速演变

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摘要

The genitalia of internally fertilizing taxa represent a striking example of rapid morphological evolution. Although sexual selection can shape variation in genital morphology, it has been difficult to test whether multiple sexual selection pressures combine to drive the rapid evolution of individual genital structures. Here, we test the hypothesis that both pre‐ and postcopulatory sexual selection can act in concert to shape complex structural variation in secondary genital morphology. We genetically modified the size and shape of the posterior lobes of Drosophila melanogaster males and tested the consequences of morphological variation on several reproductive measures. We found that the posterior lobes are necessary for genital coupling and that they are also the targets of multiple postcopulatory processes that shape quantitative variation in morphology, even though these structures make no direct contact with the external female genitalia or internal reproductive organs during mating. We also found that males with smaller and less structurally complex posterior lobes suffer substantial fitness costs in competitive fertilization experiments. Our results show that sexual selection mechanisms can combine to shape the morphology of a single genital structure and that the posterior lobes of D. melanogaster are the targets of multiple postcopulatory selection pressures.
机译:内部施肥的分类单元的生殖器代表了形态快速进化的一个突出例子。尽管性选择可以改变生殖器形态的变化,但是很难测试多种性选择压力是否结合在一起以驱动各个生殖器结构的快速发展。在这里,我们检验了以下假设:交配前和交配后的性选择均可协同作用,以塑造次要生殖器形态的复杂结构变异。我们对果蝇雄性果蝇后叶的大小和形状进行了基因改造,并测试了其形态变异对几种生殖措施的影响。我们发现后叶是生殖器耦合所必需的,并且它们也是形成形态定量变化的多个后交配过程的目标,即使这些结构在交配过程中与外部女性生殖器或内部生殖器官没有直接接触。我们还发现,在竞争性的受精实验中,具有较小和较少结构复杂的后叶的雄性会遭受大量健身费用。我们的结果表明,性选择机制可以结合以塑造单个生殖器结构的形态,而黑腹果蝇的后叶是多种交配后选择压力的目标。

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