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Sexual Reproductive Biology of a Colonial Rotifer Sinantherina socialis (Rotifera: Monogononta): Do mating strategies vary between colonial and solitary rotifer species?

机译:轮虫Sinantherina socialis(轮虫:Monongononta)的性生殖生物学:轮虫物种和单性轮虫物种的交配策略是否不同?

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摘要

In many aquatic invertebrates including monogonont rotifers, sex provides genetic variation and dormant stages that allows dispersal in time and space. While the reproductive biology of some solitary monogonont rotifer species is known, little is known concerning mating behaviors in colonial rotifers. Coloniality poses unique challenges to the typical mating behavior of solitary rotifers. For instance, most species engage in circling behavior, where the male swims in close proximity to the female. In colonial forms, access to a particular female may be hindered by nearby colony mates. Here we provide descriptions of (1) male morphology, (2) mating behavior, and (3) types of eggs of the widespread colonial rotifer Sinantherina socialis, and discuss modifications in mating strategies as a consequence of coloniality. Two important differences from mating patterns documented in solitary rotifers were found in S. socialis. First, duration of circling phase of mating is protracted for males encountering small colonies of females as compared to solitary females. Males encountering single females removed from their colonies behave similarly to those of solitary species. Second, duration of copulation in S. socialis is the shortest reported for any rotifer species. Endogamy might occur in this species as sons copulate with their sisters and mothers, at least under laboratory conditions. Examples of behaviour in linked video clips.
机译:在包括单性轮虫的许多水生无脊椎动物中,性别提供了遗传变异和休眠阶段,可以在时间和空间上分散。尽管已知某些单性轮虫轮虫物种的生殖生物学,但对殖民地轮虫的交配行为知之甚少。殖民地对单生轮虫的典型交配行为提出了独特的挑战。例如,大多数物种都在盘旋行为中,雄性在雌性附近游泳。在殖民地形式中,附近殖民者可能会妨碍接近特定女性。在这里,我们提供了(1)雄性形态,(2)交配行为和(3)广泛的轮状轮虫Sinantherina socialis卵的类型的描述,并讨论了由于殖民地而导致的交配策略的变化。在社会链球菌中发现了与单独轮虫中记载的交配模式的两个重要区别。首先,与独居雌性相比,遇到雌性小菌落的雄性的交配期延长。男性遇到从其殖民地中移出的单身女性,其行为与单身物种相似。第二,社会链球菌的交配持续时间是所有轮虫物种中最短的。至少在实验室条件下,由于儿子与姐妹和母亲交配,该物种可能发生内婚。链接的视频片段中行为的示例。

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