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Sex allocation adjustment to mating group size in a simultaneous hermaphrodite

机译:性别分配调整,以同时雌雄同体的交配组规模

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Sex allocation theory is considered as a touchstone of evolutionary biology, providing some of the best supported examples for Darwinian adaptation. In particular, Hamilton's local mate competition theory has been shown to generate precise predictions for extraordinary sex ratios observed in many separate-sexed organisms. In analogy to local mate competition, Charnov's mating group size model predicts how sex allocation in simultaneous hermaphrodites is affected by the mating group size (i.e., the number of mating partners plus one). Until now, studies have not directly explored the relationship between mating group size and sex allocation, which we here achieve in the simultaneously hermaphroditic flatworm Macrostomum lignano. Using transgenic focal worms with ubiquitous expression of green-fluorescent protein (GFP), we assessed the number of wild-type mating partners carrying GFP+ sperm from these focal worms when raised in different social group sizes. This allowed us to test directly how mating group size was related to the sex allocation of focal worms. We find that the proportion of male investment initially increases with increasing mating group size, but then saturates as predicted by theory. To our knowledge, this is the first direct test of the mating group size model in a simultaneously hermaphroditic animal.
机译:性别分配理论被认为是进化生物学的试金石,为达尔文适应提供了一些最有力的支持实例。尤其是,汉密尔顿的本地伴侣竞争理论已被证明可以准确预测许多在不同性别生物中观察到的非同寻常的性别比。与本地伴侣竞争类似,查尔诺夫(Charnov)的交配组规模模型预测了同时发生的雌雄同体的性别分配如何受到交配组规模(即交配对象数加一)的影响。到目前为止,研究还没有直接探讨交配组大小与性别分配之间的关系,我们在这里同时在雌雄同体的扁虫Macrostomum lignano中实现了这一点。使用具有普遍表达的绿色荧光蛋白(GFP)的转基因局灶蠕虫,我们评估了在不同社会群体规模中饲养时,这些局灶蠕虫携带GFP +精子的野生型交配伙伴的数量。这使我们能够直接测试交配组的大小与蠕虫的性别分配之间的关系。我们发现,男性投资的比例最初随着交配组规模的增加而增加,但随后如理论所预测的那样饱和。据我们所知,这是同时雌雄同体动物中交配群大小模型的首次直接检验。

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