Major changes in domain arrangements are associated with the evolution of termites.

IF 2.1 3区 生物学 Q3 ECOLOGY
Alina A Mikhailova, Elias Dohmen, Mark C Harrison
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Abstract

Domains as functional protein units and their rearrangements along the phylogeny can shed light on the functional changes of proteomes associated with the evolution of complex traits like eusociality. This complex trait is associated with sterile soldiers and workers, and long-lived, highly fecund reproductives. Unlike in Hymenoptera (ants, bees, and wasps), the evolution of eusociality within Blattodea, where termites evolved from within cockroaches, was accompanied by a reduction in proteome size, raising the question of whether functional novelty was achieved with existing rather than novel proteins. To address this, we investigated the role of domain rearrangements during the evolution of termite eusociality. Analysing domain rearrangements in the proteomes of three solitary cockroaches and five eusocial termites, we inferred more than 5,000 rearrangements over the phylogeny of Blattodea. The 90 novel domain arrangements that emerged at the origin of termites were enriched for several functions related to longevity, such as protein homeostasis, DNA repair, mitochondrial activity, and nutrient sensing. Many domain rearrangements were related to changes in developmental pathways, important for the emergence of novel castes. Along with the elaboration of social complexity, including permanently sterile workers and larger, foraging colonies, we found 110 further domain arrangements with functions related to protein glycosylation and ion transport. We found an enrichment of caste-biased expression and splicing within rearranged genes, highlighting their importance for the evolution of castes. Furthermore, we found increased levels of DNA methylation among rearranged compared to non-rearranged genes suggesting fundamental differences in their regulation. Our findings indicate the importance of domain rearrangements in the generation of functional novelty necessary for termite eusociality to evolve.

白蚁的进化与结构域排列的重大变化有关。
作为蛋白质功能单元的结构域及其在系统发育过程中的重新排列,可以揭示蛋白质组的功能变化与复杂性状(如群居性)的进化有关。这种复杂的性状与不育的士兵和工人以及寿命长、繁殖力强的生殖者有关。与姬蜂目(蚂蚁、蜜蜂和黄蜂)不同,白蚁目(白蚁从蟑螂内部进化而来)的蚁群进化伴随着蛋白质组规模的缩小,这就提出了一个问题:功能新颖性是否是通过现有蛋白质而不是新蛋白质实现的?为了解决这个问题,我们研究了白蚁社会性进化过程中结构域重排的作用。通过分析三只独居蟑螂和五只群居白蚁蛋白质组中的结构域重排,我们推断出白蚁系统发育过程中的5000多次结构域重排。白蚁起源时出现的90个新的结构域排列富含与长寿有关的几种功能,如蛋白质稳态、DNA修复、线粒体活动和营养传感。许多结构域的重新排列与发育途径的变化有关,这对新种姓的出现非常重要。随着社会复杂性的发展,包括永久不育的工蚁和更大的觅食群落,我们又发现了 110 个与蛋白质糖基化和离子转运功能有关的结构域排列。我们发现,在重新排列的基因中,种姓偏向的表达和剪接都很丰富,这凸显了它们对种姓进化的重要性。此外,我们还发现重排基因的 DNA 甲基化水平高于非重排基因,这表明重排基因的调控存在根本性差异。我们的研究结果表明了白蚁社会性进化所需的功能新颖性产生过程中域重排的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Evolutionary Biology
Journal of Evolutionary Biology 生物-进化生物学
CiteScore
4.20
自引率
4.80%
发文量
152
审稿时长
3-6 weeks
期刊介绍: It covers both micro- and macro-evolution of all types of organisms. The aim of the Journal is to integrate perspectives across molecular and microbial evolution, behaviour, genetics, ecology, life histories, development, palaeontology, systematics and morphology.
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