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昆虫的完全变态与微生物群更替

Complete metamorphosis and microbiota turnover in insects.

作者信息

Manthey Christin, Johnston Paul R, Nakagawa Shinichi, Rolff Jens

机构信息

Institut für Biologie, Evolutionary Biology, Freie Universität Berlin, Berlin, Germany.

Berlin Center for Genomics in Biodiversity Research, Berlin, Germany.

出版信息

Mol Ecol. 2023 Dec;32(23):6543-6551. doi: 10.1111/mec.16673. Epub 2022 Sep 23.

Abstract

The insects constitute the majority of animal diversity. Most insects are holometabolous: during complete metamorphosis their bodies are radically reorganized. This reorganization poses a significant challenge to the gut microbiota, as the gut is replaced during pupation, a process that does not occur in hemimetabolous insects. In holometabolous hosts, it offers the opportunity to decouple the gut microbiota between the larval and adult life stages resulting in high beta diversity whilst limiting alpha diversity. Here, we studied 18 different herbivorous insect species from five orders of holometabolous and three orders of hemimetabolous insects. Comparing larval and adult specimens, we find a much higher beta-diversity and hence microbiota turnover in holometabolous insects compared to hemimetabolous insects. Alpha diversity did not differ between holo- and hemimetabolous insects nor between developmental stages within these groups. Our results support the idea that pupation offers the opportunity to change the gut microbiota and hence might facilitate ecological niche shifts. This possible effect of niche shift facilitation could explain a selective advantage of the evolution of complete metamorphosis, which is a defining trait of the most speciose insect taxon, the holometabola.

摘要

昆虫构成了动物多样性的主体。大多数昆虫是全变态的:在完全变态过程中,它们的身体会进行彻底重组。这种重组对肠道微生物群构成了重大挑战,因为在化蛹过程中肠道会被替换,而这种过程在不完全变态昆虫中不会发生。在全变态宿主中,这为在幼虫和成虫生命阶段之间使肠道微生物群解耦提供了机会,从而导致高β多样性,同时限制α多样性。在这里,我们研究了来自五个全变态目和三个不完全变态目昆虫的18种不同的食草昆虫物种。比较幼虫和成虫标本,我们发现与不完全变态昆虫相比,全变态昆虫的β多样性更高,因此微生物群更替也更多。全变态和不完全变态昆虫之间以及这些组内的发育阶段之间,α多样性没有差异。我们的结果支持这样一种观点,即化蛹为改变肠道微生物群提供了机会,因此可能促进生态位转移。这种促进生态位转移的可能效应可以解释完全变态进化的一个选择性优势,而完全变态是最具物种多样性的昆虫类群——全变态类的一个决定性特征。

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