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Sexual selection in honey bees: colony variation and the importance of size in male mating success.

机译:蜜蜂的性选择:群体变异和雄性交配成功中体型的重要性。

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Sexual selection is a dominant force in the evolution of many animals and can be particularly significant in species that mate in aerial swarms characterized by strong male-male competition. However, such mating biology, typical of many social insects, is also quite challenging to study. Here, we investigate sexual selection in the honey bee that has 2 distinct male morphs (normal sized and small). Males mate only once and females return to their nest after mating, making it possible to measure the lifetime fitness of both sexes. We allowed known numbers of normal-sized males from 6 colonies and small males from another 6 colonies to compete for natural matings with experimental virgin queens. We then determined the mating success of males by genotyping the offspring of these queens. Colonies differed by an order of magnitude in the intrinsic mating success of their males, confirming that the reproductive fitness of honey bee colonies is highly variable. Small males achieved approximately half as many matings as expected given their number of flights and, in addition, had a significantly smaller share of paternity per mating than normal-sized males. Interestingly, the flight activity of small males suggested that they may compensate for their lower competitiveness by flying outside the most competitive mating period in the afternoon. The lower fitness of small males shows that sexual selection is strong in honey bees and contributes to inclusive fitness dynamics that favor worker cooperation within their societies.
机译:性选择是许多动物进化的主导力量,在与雄性-雄性竞争为特征的空中群体交配的物种中尤其重要。但是,这种交配生物学(许多社会昆虫中很常见的)也很难研究。在这里,我们研究了具有2种不同雄性形态(正常大小和较小)的蜜蜂的性选择。雄性只交配一次,雌性交配后返回巢穴,从而可以测量两性的一生。我们允许来自6个菌落的已知数量的正常大小雄性和来自其他6个菌落的小雄性竞争与实验原始女皇的自然交配。然后,我们通过对这些皇后的后代进行基因分型来确定雄性的交配成功。菌落在其雄性的内在交配成功方面相差一个数量级,证实了蜜蜂菌落的繁殖适应性是高度可变的。小型雄性按其飞行次数可以实现预期交配的一半,此外,与正常大小的雄性相比,每次交配的亲子比例要小得多。有趣的是,雄性雄性的飞行活动表明,他们可以通过在下午竞争性最强的交配期外飞行来弥补较低的竞争性。小雄性的适应性较低,表明蜜蜂的性选择很强,并且有助于促进包容性的适应动力,有利于工人在其社会中进行合作。

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