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Proper direction of male genitalia is prerequisite for copulation in Drosophila implying cooperative evolution between genitalia rotation and mating behavior

机译:男性生殖器的正确方向是果蝇交配的先决条件这意味着生殖器旋转和交配行为之间的协同进化

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摘要

Animal morphology and behavior often appear to evolve cooperatively. However, it is difficult to assess how strictly these two traits depend on each other. The genitalia morphologies and courtship behaviors in insects, which vary widely, may be a good model for addressing this issue. In Diptera, phylogenetic analyses of mating positions suggested that the male-above position evolved from an end-to-end one. However, with this change in mating position, the dorsoventral direction of the male genitalia became upside down with respect to that of the female genitalia. It was proposed that to compensate for this incompatibility, the male genitalia rotated an additional 180° during evolution, implying evolutionary cooperativity between the mating position and genitalia direction. According to this scenario, the proper direction of male genitalia is critical for successful mating. Here, we tested this hypothesis using a Drosophila Myosin31DF (Myo31DF) mutant, in which the rotation of the male genitalia terminates prematurely, resulting in various deviations in genitalia direction. We found that the proper dorsoventral direction of the male genitalia was a prerequisite for successful copulation, but it did not affect the other courtship behaviors. Therefore, our results suggested that the male genitalia rotation and mating position evolved cooperatively in Drosophila.
机译:动物的形态和行为常常表现为协同进化。但是,很难评估这两个特征相互依赖的严格程度。昆虫的生殖器形态和求爱行为差异很大,可能是解决此问题的好模型。在双翅目中,对交配位置的系统发育分析表明,雄性以上位置是从端到端进化而来的。但是,随着这种交配位置的改变,男性生殖器的背腹方向相对于女性生殖器的背腹方向变得上下颠倒。有人提出,为了补偿这种不相容性,雄性生殖器在进化过程中又旋转了180°,这意味着交配位置和生殖器方向之间的进化协作性。根据这种情况,正确的男性生殖器方向对于成功交配至关重要。在这里,我们使用果蝇Myosin31DF(Myo31DF)突变体测试了这一假设,其中男性生殖器的旋转过早终止,导致生殖器方向发生各种偏差。我们发现正确的男性生殖器背腹方向是成功交配的先决条件,但它并不影响其他求爱行为。因此,我们的结果表明,果蝇中雄性生殖器旋转和交配位置协同进化。

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