首页> 外文期刊>Evolution: International Journal of Organic Evolution >Optimal copula duration in yellow dung flies: Ejaculatory duct dimensions and size-dependent sperm displacement
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Optimal copula duration in yellow dung flies: Ejaculatory duct dimensions and size-dependent sperm displacement

机译:黄蝇的最佳copula持续时间:射精管的大小和精子的大小依赖性

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We aim to interpret sperm displacement in relation to male size in the yellow dung fly, Scatophaga stercoraria, and to compare the general properties of indirect and direct size-dependent sperm displacement in insects. We examine the hypothesis that male size-dependent sperm displacement in dung flies can be explained by size-dependent increases in the ejaculatory apparatus, allowing greater sperm flow rates in larger males. We expect sperm flow rates to be proportional to the diameter of the aedeagus duct to the power x, where x lies between 2 and 3. We test this hypothesis using a simulation model of indirect sperm displacement that has been developed to accommodate recent observations on sperm transfer, in which sperm flow from the male into the female bursa and are then transferred to the spermathecae by movements of the female tract. The indirect model approximates to the pattern of size-related sperm displacement, with scaling power 3 giving a better fit than power 2. Copula duration shows a male size-dependent decrease in this species. We apply the indirect model of sperm displacement, in conjunction with parameters obtained from field and laboratory data, to predict size-dependent changes in optimal copula duration from the male perspective. This model concurs with the observations by predicting a size-dependent decline in optimal copula duration, as did an earlier model in which displacement was direct (new sperm displace previously stored sperm directly from the sperm stores). Our new approach gives a better fit than the earlier direct model. Thus, both results (displacement rates and copula duration) can be explained by size-dependent changes in the ejaculatory apparatus of the male with the female's exchange rate of sperm (from bursa to spermathecae) remaining constant with respect to male size, although we discuss the possibility that this female process may accelerate with increased male size. In general, where the sperm input rate is around the same magnitude as the exchange rate, indirect displacement will be dependent on the size of the male, as in dung flies, but this dependency is lost if the input rate is very high relative to the exchange rate across the entire range of male size. Size-dependent displacement should always apply for males with direct displacement. [References: 46]
机译:我们旨在解释黄粪蝇Scatophaga stercoraria中与雄性大小有关的精子置换,并比较昆虫中间接和直接的大小依赖性精子置换的一般特性。我们检验了这样的假说,即粪蝇中雄性大小依赖的精子移位可以通过射精装置中大小依赖的增加来解释,从而允许较大雄性中更大的精子流速。我们期望精子流速与Powered的前庭导管直径成正比,其中x介于2到3之间。我们使用间接精子置换的仿真模型测试了这一假设,该模型已被开发来适应最近对精子的观察。转移,其中精子从雄性流到雌性法氏囊,然后通过雌性管的运动转移到精子囊中。间接模型近似于与尺寸有关的精子移位模式,缩放能力3比适应力2更好。拟合持续时间显示了该物种中雄性大小依赖的减少。我们结合从田野和实验室数据获得的参数,应用精子置换的间接模型,从男性的角度预测最佳copula持续时间的大小依赖性变化。该模型通过预测最佳copula持续时间的大小依赖性下降而与观察结果相符,早期模型中的位移是直接的(新精子直接从精子存储中置换先前存储的精子)。与早期的直接模型相比,我们的新方法具有更好的拟合度。因此,这两种结果(移位率和系膜持续时间)都可以通过雄性射精器的尺寸依赖性变化来解释,而雌性的精子交换率(从法氏囊到精子囊)相对于雄性大小保持恒定,尽管我们讨论了随着雄性个体的增大,雌性过程可能加速的可能性。通常,在精子输入速率与交换速率大致相同的情况下,间接排泄将取决于雄性的大小,例如在lies蝇中,但是如果输入速率相对于精子输入速率非常高,则这种依赖性就会消失。男性规模的整个范围内的汇率。与尺寸有关的位移应始终适用于直接位移的男性。 [参考:46]

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