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The genetic basis of a social polymorphism in halictid bees

机译:盐蜜蜜蜂社会多态性的遗传基础

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The emergence of eusociality represents a major evolutionary transition from solitary to group reproduction. The most commonly studied eusocial species, honey bees and ants, represent the behavioral extremes of social evolution but lack close relatives that are non-social. Unlike these species, the halictid bee Lasioglossum albipes produces both solitary and eusocial nests and this intraspecific variation has a genetic basis. Here, we identify genetic variants associated with this polymorphism, including one located in the intron of syntaxin 1a (syx1a), a gene that mediates synaptic vesicle release. We show that this variant can alter gene expression in a pattern consistent with differences between social and solitary bees. Surprisingly, syx1a and several other genes associated with sociality in L. albipes have also been implicated in autism spectrum disorder in humans. Thus, genes underlying behavioral variation in L. albipes may also shape social behaviors across a wide range of taxa, including humans.
机译:道德社会主义的出现代表了从孤独繁殖到群体繁殖的主要进化过渡。人们最常研究的社交社会物种是蜜蜂和蚂蚁,它们代表了社会进化的极端行为,但缺乏非社会的近亲。与这些物种不同,盐蜜蜂Lasioglossum albipes既产生单生巢又向正常社会筑巢,而这种种内变异具有遗传基础。在这里,我们确定与这种多态性相关的遗传变异,包括一个位于syntaxin 1a(syx1a)的内含子中的基因,该基因介导突触小泡的释放。我们表明,这种变异可以改变基因表达的方式与社交蜜蜂和单居蜜蜂之间的差异一致。出人意料的是,syx1a和其他与阿尔伯氏乳杆菌社交性相关的其他基因也与人类自闭症谱系障碍有关。因此,潜在的L. albipes行为变异的基因也可能影响包括人类在内的各种分类单元的社会行为。

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