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From the Cover: Female reproductive tract form drives the evolution of complex sperm morphology

机译:从封面:女性生殖道形式驱动复杂精子形态的演变

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摘要

The coevolution of female mate preferences and exaggerated male traits is a fundamental prediction of many sexual selection models, but has largely defied testing due to the challenges of quantifying the sensory and cognitive bases of female preferences. We overcome this difficulty by focusing on postcopulatory sexual selection, where readily quantifiable female reproductive tract structures are capable of biasing paternity in favor of preferred sperm morphologies and thus represent a proximate mechanism of female mate choice when ejaculates from multiple males overlap within the tract. Here, we use phylogenetically controlled generalized least squares and logistic regression to test whether the evolution of female reproductive tract design might have driven the evolution of complex, multivariate sperm form in a family of aquatic beetles. The results indicate that female reproductive tracts have undergone extensive diversification in diving beetles, with remodeling of size and shape of several organs and structures being significantly associated with changes in sperm size, head shape, gains/losses of conjugation and conjugate size. Further, results of Bayesian analyses suggest that the loss of sperm conjugation is driven by elongation of the female reproductive tract. Behavioral and ultrastructural examination of sperm conjugates stored in the female tract indicates that conjugates anchor in optimal positions for fertilization. The results underscore the importance of postcopulatory sexual selection as an agent of diversification.
机译:女性配偶偏好和夸张的男性特征的共同进化是许多性选择模型的基本预测,但由于量化女性偏好的感官和认知基础的挑战,测试在很大程度上受到挑战。我们通过专注于交配后的性选择克服了这一困难,在这种选择中,易于量化的雌性生殖道结构能够偏向父系,倾向于偏爱的精子形态,因此当来自多个雄性的射精在道内重叠时代表了雌性择偶的近端机制。在这里,我们使用系统发育控制的广义最小二乘和逻辑回归来检验女性生殖道设计的进化是否可能驱动了水生甲虫家族中复杂的,多元的精子形式的进化。结果表明,雌性生殖道在潜水甲虫中已经经历了广泛的多样化,几个器官和结构的大小和形状的重塑与精子大小,头部形状,结合的得/失和结合物大小的变化显着相关。此外,贝叶斯分析的结果表明,精子结合的损失是由女性生殖道的延长引起的。行为和超微结构检查的女性结合的精子结合物表明结合物锚定在最佳位置进行受精。结果强调了交配后性选择作为多样化媒介的重要性。

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