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Sexual selection on size and shape in Japanese beetles (Popillia japonica)

机译:日本甲虫(Popillia Japonica)大小和形状的性选择

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The mobility hypothesis argues that species in which males compete for mates in scrambles often exhibit female-biased size dimorphism because smaller male body size should increase male mobility and success in searching for mates. Sexual dimorphism can be further exaggerated if fecundity or sexual selection concurrently selects for larger female size. Scramble competition can select for trait characteristics that optimize locomotion; for example, long and slender wings should be favored if aerial speed is important to mating success. I tested these predictions in the scrambling Japanese beetle (Popillia japonica), a female-biased size dimorphic insect pest that is invasive to North America. Multivariate selection analyses support the prediction that smaller body size and larger wings in males benefit their mating success. My analyses also revealed significant selection for larger wings in females but, contrary to prediction, direct sexual selection favors smaller body size in females. These results support the mobility hypothesis and partially explain the evolution of female-biased size dimorphism in this species. Sexual selection favored rounder bodies in females and more tapered bodies in males, whereas, in both sexes, the effect of wing shape appears less important to fitness than wing size.
机译:该迁移性假设认为,雄性争夺争先恐后的物种通常表现出女性偏置的尺寸二态,因为较小的雄性体积应增加雄性移动性和在寻找配偶时的成功。如果繁殖或性选择同时选择更大的女性大小,则可以进一步夸大性二形态。争夺竞争可以选择优化运动的特征;例如,如果空中速度对顺交配成功是重要的,则应有利于长而细长的翅膀。我在争先生的日本甲虫(Popillia japonica)中测试了这些预测,这是一种对北美的侵入性的女性偏置尺寸的二晶虫害。多变量选择分析支持预测,较小的身体尺寸和较大翅膀在男性中有利于它们的交配成功。我的分析还揭示了女性较大翅膀的重要选择,但与预测相反,直接性选择有利于较小的女性体重。这些结果支持迁移率假设,部分解释该物种中雌性偏置尺寸二重的演变。性选择有利于女性和男性中更锥体的圆角,而在两性中,翼状形状的影响对于对健身的影响比机翼尺寸不太重要。

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