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化学和转录组多样性与蜚蠊目昆虫社会复杂性的上升水平不相关。

Chemical and transcriptomic diversity do not correlate with ascending levels of social complexity in the insect order Blattodea.

作者信息

Golian Marek J, Friedman Daniel A, Harrison Mark, McMahon Dino P, Buellesbach Jan

机构信息

Institute for Evolution & Biodiversity University of Münster Münster Germany.

Department of Entomology & Nematology University of California - Davis Davis California USA.

出版信息

Ecol Evol. 2024 Jul 31;14(8):e70063. doi: 10.1002/ece3.70063. eCollection 2024 Aug.

Abstract

Eusocial insects, such as ants and termites, are characterized by high levels of coordinated social organization. This is contrasted by solitary insects that display more limited forms of collective behavior. It has been hypothesized that this gradient in sociobehavioral sophistication is positively correlated with chemical profile complexity, due to a potentially increased demand for diversity in chemical communication mechanisms in insects with higher levels of social complexity. However, this claim has rarely been assessed empirically. Here, we compare different levels of chemical and transcriptomic complexity in selected species of the order Blattodea that represent different levels of social organization, from solitary to eusocial. We primarily focus on cuticular hydrocarbon (CHC) complexity, since it has repeatedly been demonstrated that CHCs are key signaling molecules conveying a wide variety of chemical information in solitary as well as eusocial insects. We assessed CHC complexity and divergence between our studied taxa of different social complexity levels as well as the differentiation of their respective repertoires of CHC biosynthesis gene transcripts. Surprisingly, we did not find any consistent pattern of chemical complexity correlating with social complexity, nor did the overall chemical divergence or transcriptomic repertoire of CHC biosynthesis genes reflect on the levels of social organization. Our results challenge the assumption that increasing social complexity is generally reflected in more complex chemical profiles and point toward the need for a more cautious and differentiated view on correlating complexity on a chemical, genetic, and social level.

摘要

群居性昆虫,如蚂蚁和白蚁,其特点是具有高度协调的社会组织。这与表现出更有限形式集体行为的独居昆虫形成对比。据推测,这种社会行为复杂性的梯度与化学特征的复杂性呈正相关,这是因为社会复杂性较高的昆虫对化学通讯机制多样性的需求可能增加。然而,这一说法很少得到实证评估。在这里,我们比较了蜚蠊目选定物种中不同水平的化学和转录组复杂性,这些物种代表了从独居到群居的不同社会组织水平。我们主要关注表皮碳氢化合物(CHC)的复杂性,因为反复证明CHC是在独居和群居昆虫中传递各种化学信息的关键信号分子。我们评估了不同社会复杂性水平的研究类群之间CHC的复杂性和差异,以及它们各自CHC生物合成基因转录本库的分化。令人惊讶的是,我们没有发现任何与社会复杂性相关的化学复杂性一致模式,CHC生物合成基因的整体化学差异或转录组库也没有反映出社会组织水平。我们的结果挑战了这样一种假设,即社会复杂性的增加通常反映在更复杂的化学特征上,并指出需要对化学、遗传和社会层面的复杂性相关性持更谨慎和有区别的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bb0/11289792/4d98ea3102c6/ECE3-14-e70063-g003.jpg

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