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Reproductive constraint is a developmental mechanism that maintains social harmony in advanced ant societies

机译:生殖约束是在先进蚂蚁社会中维持社会和谐的发展机制

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摘要

A hallmark of eusociality in ants is the reproductive division of labor between queens and workers. Yet, nothing is known about the molecular mechanisms underlying reproduction in this group. We therefore compared the developmental genetic capacity of queens and workers to reproduce in several eusocially advanced species from the two largest subfamilies of ants, the Myrmicinae and Formicinae. In flies, the asymmetric localization of maternally encoded determinants (mRNAs and proteins) during oogenesis establishes oocyte polarity and subsequently ensures proper embryonic development. Vasa and nanos, two key maternal determinants, are properly localized in the posterior of queen oocytes, but their localization is impaired in those of the workers. This mislocalization leads to severe embryonic defects in worker progeny, and therefore, represents a constraint on worker reproduction that we call ‘reproductive constraint.’ We show that reproductive constraint is phylogenetically widespread, and is at high levels in most species tested. Reproductive constraint can simultaneously reduce or eliminate the workers' ability to produce viable eggs for reproduction, while preserving their ability to produce trophic eggs for nutrition, and thus, may have been the basis for the evolutionary retention of worker ovaries in the majority of ants. We propose that high levels of reproductive constraint has most likely evolved as a consequence of selection at the colony level to reduce or eliminate any potential conflict over worker reproduction, therefore maintaining harmony and colony efficiency in advanced ant societies.
机译:蚂蚁的道德社会主义特征是皇后和工人之间的生殖分工。然而,关于这一群体生殖的分子机制还一无所知。因此,我们比较了皇后和工人们从蚂蚁的两个最大亚科,Myrmicinae和Formicinae繁殖的几个社会上先进的物种中繁殖的发育遗传能力。在果蝇中,卵子发生过程中母本编码的决定簇(mRNA和蛋白质)的不对称定位建立了卵母细胞极性,并随后确保了适当的胚胎发育。瓦萨(Vasa)和纳米(nanos)是两个主要的母体决定因素,它们正确地定位在卵母细胞的后部,但在工人的定位中受损。这种定位错误会导致工人后代严重的胚胎缺陷,因此,代表了对工人繁殖的限制,我们称之为“生殖限制”。我们证明,生殖限制在系统发育上广泛存在,并且在大多数受测物种中处于高水平。生殖限制可以同时降低或消除工人生产有生命力的卵以进行繁殖的能力,同时保留其生产营养性营养蛋的能力,因此,可能已成为大多数蚂蚁进化保留卵巢的基础。我们认为,在殖民地一级进行选择以减少或消除工人繁殖方面的任何潜在冲突的结果是,高水平的生殖限制很可能已经演变,从而在先进的蚂蚁社会中保持和谐和殖民地效率。

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