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Phenotypically plastic adjustment of sex allocation in a simultaneous hermaphrodite.

机译:表观上可塑性同时调整雌雄同体性别分配。

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摘要

Sex allocation theory for simultaneous hermaphrodites predicts an influence of the mating group size on sex allocation. Mating group size may depend on the size of the group in which an individual lives, or on the density, but studies to date have not distinguished between the two factors. We performed an experiment in which we raised a transparent simultaneous hermaphrodite, the flatworm Macrostomum sp., in different group sizes (pairs, triplets, quartets and octets) and in different enclosure sizes (small and large). This design allows us to differentiate between the effects of group size and density. After worms reached maturity we determined their reproductive allocation patterns from microscopic images taken in vivo. The results suggest that the mating group size is a function of the group size, and not of the density. They support the shift to higher male allocation in larger mating groups predicted by sex allocation theory. To our knowledge, this is the first study that unambiguously shows phenotypically plastic sex allocation in response to mating group size in a simultaneous hermaphrodite.
机译:同时雌雄同体的性别分配理论预测交配组的大小对性别分配的影响。交配组的大小可能取决于一个人所居住的组的大小或密度,但是迄今为止的研究尚未区分这两个因素。我们进行了一项实验,在该实验中,我们以不同的组大小(成对,三胞胎,四重奏和八位字节)和不同的围栏大小(大小)饲养了透明的同时雌雄同体的扁虫Macrostomum sp.。这种设计使我们能够区分组大小和密度的影响。蠕虫成熟后,我们从体内拍摄的显微图像中确定了它们的繁殖分配模式。结果表明,交配组的大小是组大小的函数,而不是密度的函数。他们支持通过性别分配理论预测,在较大的交配群体中向较高的男性分配过渡。据我们所知,这是第一项明确显示表型可塑性性别分配对同时雌雄同体交配群大小的反应的研究。

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