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Size-dependent sex allocation and sexual selection in Aplysia kurodai, a hermaphrodite with nonreciprocal mating

机译:互不交配的雌雄同体Aplysia kurodai的大小依赖性性别分配和性别选择

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For simultaneous hermaphrodites, a male-to-female shift in sex allocation with growth, and weak sexual selection oil the male function, is predicted by many theories,. although empirical data for both predictions are insufficient for internally fertilizing hermaphrodites with nonreciprocal mating. To address these issues, I studied mating and egg-laying behavior of the sea hare, Aplysia kurodai (Gastropoda: Opisthobranchia) in the laboratory. Both frequency and duration of egg laying increased with body weight, indicating that fecundity increased with weight. On the other hand, frequency and duration of mating Lis males did not increase with body weight, suggesting that sperm usage was independent of weight. Therefore, sex allocation shifted from male to female functions with growth. The lack of a relationship between body weight and mating activities as males also Suggests that there was no "female" choice for large partners. However, the frequency of mating as females increased with body weight, suggesting "male" choice for large partners. This "male" choice is further Supported by the presence of size-assortative mating and a longer duration of mating when the female partner was large. In addition, the variance in mating frequency Lis females was larger than that as males. As a whole, the mating behavior in A. kurodai call be summarized as choosy as males and unchoosy as females, the opposite of the patterns known ill most,gonochoric and hermaphroditic animals.
机译:对于同时发生的雌雄同体,许多理论都预言性别分配会随着增长而发生性别变化,而弱小的性选择会助长男性的机能。尽管这两个预测的经验数据不足以内部交配非雌雄同体的雌雄同体。为了解决这些问题,我在实验室研究了海兔Aplysia kurodai(天麻:Opisthobranchia)的交配和产卵行为。产卵的频率和持续时间均随体重增加而增加,表明繁殖力随体重增加而增加。另一方面,Lis雄性交配的频率和持续时间并没有随着体重的增加而增加,这表明精子的使用与体重无关。因此,随着成长,性别分配从男性职能转移到女性职能。体重与男性交配活动之间缺乏联系,这也表明大伙伴没有“女性”选择。但是,雌性的交配频率随体重增加而增加,这表明大型伴侣选择“雄性”。这种“雄性”选择进一步得到了大小配对交配的支持,并且当雌性伴侣较大时,交配时间更长。此外,雌性交配频率的变化大于雄性。总的来说,黑毛拟南芥的交配行为被概括为雄性选择,雌性选择,这与大多数雌雄同体和雌雄同体动物相反。

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