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蚜虫凋亡途径的进化新特点。

Evolutionary novelty in the apoptotic pathway of aphids.

机构信息

UMR0203, Biologie Fonctionnelle, Insectes et Interactions (BF2i), Institut National des Sciences Appliquées Lyon (INSA Lyon), Institut National de Recherche pour l'Agriculture, l'Alimentation et l'Environnement (INRAE), University of Lyon (Univ Lyon), F-69621 Villeurbanne, France.

Laboratory of Behavioral and Developmental Genetics, Department of Human Genetics, Katholieke Universiteit (KU) Leuven, University of Leuven, B-3000 Leuven, Belgium.

出版信息

Proc Natl Acad Sci U S A. 2020 Dec 22;117(51):32545-32556. doi: 10.1073/pnas.2013847117. Epub 2020 Dec 7.

Abstract

Apoptosis, a conserved form of programmed cell death, shows interspecies differences that may reflect evolutionary diversification and adaptation, a notion that remains largely untested. Among insects, the most speciose animal group, the apoptotic pathway has only been fully characterized in , and apoptosis-related proteins have been studied in a few other dipteran and lepidopteran species. Here, we studied the apoptotic pathway in the aphid , an insect pest belonging to the Hemiptera, an earlier-diverging and distantly related order. We combined phylogenetic analyses and conserved domain identification to annotate the apoptotic pathway in and found low caspase diversity and a large expansion of its inhibitory part, with 28 inhibitors of apoptosis (IAPs). We analyzed the spatiotemporal expression of a selected set of pea aphid IAPs and showed that they are differentially expressed in different life stages and tissues, suggesting functional diversification. Five IAPs are specifically induced in bacteriocytes, the specialized cells housing symbiotic bacteria, during their cell death. We demonstrated the antiapoptotic role of these five IAPs using heterologous expression in a tractable in vivo model, the developing eye. Interestingly, IAPs with the strongest antiapoptotic potential contain two BIR and two RING domains, a domain association that has not been observed in any other species. We finally analyzed all available aphid genomes and found that they all show large IAP expansion, with new combinations of protein domains, suggestive of evolutionarily novel aphid-specific functions.

摘要

细胞凋亡是一种保守的程序性细胞死亡形式,不同物种之间存在差异,这可能反映了进化的多样化和适应性,而这种观点在很大程度上尚未得到验证。在昆虫中,作为最多样化的动物群体,凋亡途径仅在 中得到了充分描述,并且在其他一些双翅目和鳞翅目物种中研究了与凋亡相关的蛋白质。在这里,我们研究了属于半翅目的蚜虫中的凋亡途径,半翅目是一个更早分化且远缘的目。我们结合系统发育分析和保守结构域鉴定,注释了 中的凋亡途径,发现半胱天冬酶多样性较低,其抑制部分大量扩张,有 28 种凋亡抑制蛋白 (IAP)。我们分析了一组选定的豌豆蚜 IAP 的时空表达,发现它们在不同的生命阶段和组织中表达不同,表明功能多样化。在共生细菌所在的特化细胞——细菌细胞中,有 5 种 IAP 在其细胞死亡时特异性诱导。我们在一种易于处理的体内模型——发育中的眼睛中,通过异源表达证明了这 5 种 IAP 的抗凋亡作用。有趣的是,具有最强抗凋亡潜力的 IAP 含有两个 BIR 和两个 RING 结构域,这种结构域的组合在其他任何物种中都没有观察到。我们最后分析了所有可用的蚜虫基因组,发现它们都显示出 IAP 的大量扩张,以及新的蛋白结构域组合,提示具有蚜虫特有的进化新功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33f3/7768685/de06a113107c/pnas.2013847117fig01.jpg

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