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Monogamy in large bee societies: a stingless paradox

机译:大型蜜蜂社会的一夫一妻制:一种无刺激的悖论

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摘要

High genetic diversity is important for the functioning of large insect societies. Across the social Hymenoptera (ants, bees, and wasps), species with the largest colonies tend to have a high colony-level genetic diversity resulting from multiple queens (polygyny) or queens that mate with multiple males (polyandry). Here we studied the genetic structure of Trigona spinipes, a stingless bee species with colonies an order of magnitude larger than those of polyandrous honeybees. Genotypes of adult workers and pupae from 43 nests distributed across three Brazilian biomes showed that T. spinipes colonies are usually headed by one singly mated queen. Apart from revealing a notable exception from the general incidence of high genetic diversity in large insect societies, our results reinforce previous findings suggesting the absence of polyandry in stingless bees and provide evidence against the sperm limitation hypothesis for the evolution of polyandry. Stingless bee species with large colonies, such as T. spinipes, thus seem promising study models to unravel alternative mechanisms to increase genetic diversity within colonies or understand the adaptive value of low genetic diversity in large insect societies.
机译:高度的遗传多样性对于大型昆虫社会的运作很重要。在整个社会膜翅目(蚂蚁,蜜蜂和黄蜂)中,具有最大菌落的物种往往具有较高的菌落水平遗传多样性,这是由多个皇后(一夫多妻制)或与多个雄性交配的一夫多妻制(一妻多夫制)造成的。在这里,我们研究了Trigona spinipes的遗传结构,这是一种无刺蜂,其菌落比一头蜜蜂的蜜蜂大一个数量级。来自分布在三个巴西生物群落中的43个巢的成年工人和p的基因型表明,刺桐的菌落通常以一个单交女王为首。除了揭示大型昆虫社会中高遗传多样性普遍发生的显着例外外,我们的研究结果还强化了先前的发现,表明无st蜜蜂缺乏一夫多妻制,并提供了针对一夫多妻制进化的精子限制假说的证据。因此,具有较大菌落的无刺蜂物种(例如,T。spinipes)似乎很有前途,其研究模式有望揭示增加菌落内遗传多样性的替代机制,或了解大型昆虫社会中低遗传多样性的适应性价值。

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