首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Ergatoid queen development in the ant Myrmecina nipponica: modular and heterochronic regulation of caste differentiation
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Ergatoid queen development in the ant Myrmecina nipponica: modular and heterochronic regulation of caste differentiation

机译:蚂蚁Myrmecina nipponica的类人猿女王发展:种姓分化的模块化和异时调节

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摘要

Caste polyphenism in social insects provides us with excellent opportunities to examine the plasticity and robustness underlying developmental pathways. Several ant species have evolved unusual castes showing intermediate morphologies between alate queens and wingless workers. In some low-temperature habitats, the ant Myrmecina nipponica produces such intermediate reproductives (i.e. ergatoids), which can mate and store sperm but cannot fly. To gain insight into the developmental and evolutionary aspects associated with ergatoid production, we conducted morphological and histological examinations of the post-embryonic development of compound eyes, gonads and wings during the process of caste differentiation. In compound eyes, both the queen-worker and ergatoid-worker differences were already recognized at the third larval instar. In gonads, queen-worker differentiation began at the larval stage, and ergatoid-worker differentiation began between the prepupal and pupal stages. Wing development in ergatoids was generally similar to that in workers throughout post-embryonic development. Our results showed that the developmental rate and timing of differentiation in body parts differed among castes and among body parts. These differences suggest that the rearrangement of modular body parts by heterochronic developmental regulation is responsible for the origination of novel castes, which are considered to be adaptations to specific ecological niches.
机译:社会昆虫中的种姓多态性为我们提供了很好的机会来研究潜在的发育途径的可塑性和坚固性。几种蚂蚁物种进化出不同寻常的种姓,显示出在蚁后和无翅工人之间的中间形态。在某些低温生境中,蚂蚁Myrmecina nipponica会产生这种中间繁殖体(即ergatoids),它们可以交配和储存精子,但不能飞翔。为了深入了解与类人猿生产相关的发育和进化方面,我们对种姓分化过程中复合眼,性腺和机翼的胚后发育进行了形态学和组织学检查。用复眼,在第三龄幼虫期中已经发现了皇后工人和工匠工人的差异。在性腺中,皇后工人的分化开始于幼虫阶段,而人为角质工人的分化则开始于pu前期和p期之间。在整个胚胎后的发育过程中,人为类人动物的翅膀发育通常与工人的相似。我们的结果表明,种姓之间和身体部位之间的发育速度和身体部位分化的时间有所不同。这些差异表明,通过异时性发育调节对模块化的身体部位进行重新排列是新型种姓的起源,这些种姓被认为是对特定生态位的适应。

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