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刺吸式昆虫毒液的功能和蛋白质组学研究进展。

Functional and Proteomic Insights into Aculeata Venoms.

机构信息

Australian National Insect Collection, Commonwealth Scientific & Industrial Research Organisation, Canberra, ACT 2601, Australia.

Venom Evolution Lab, School of Biological Sciences, The University of Queensland, St. Lucia, QLD 4072, Australia.

出版信息

Toxins (Basel). 2023 Mar 16;15(3):224. doi: 10.3390/toxins15030224.

Abstract

Aculeate hymenopterans use their venom for a variety of different purposes. The venom of solitary aculeates paralyze and preserve prey without killing it, whereas social aculeates utilize their venom in defence of their colony. These distinct applications of venom suggest that its components and their functions are also likely to differ. This study investigates a range of solitary and social species across Aculeata. We combined electrophoretic, mass spectrometric, and transcriptomic techniques to characterize the compositions of venoms from an incredibly diverse taxon. In addition, in vitro assays shed light on their biological activities. Although there were many common components identified in the venoms of species with different social behavior, there were also significant variations in the presence and activity of enzymes such as phospholipase As and serine proteases and the cytotoxicity of the venoms. Social aculeate venom showed higher presence of peptides that cause damage and pain in victims. The venom-gland transcriptome from the European honeybee () contained highly conserved toxins which match those identified by previous investigations. In contrast, venoms from less-studied taxa returned limited results from our proteomic databases, suggesting that they contain unique toxins.

摘要

蛰刺昆虫利用毒液来实现多种不同的目的。独居蛰刺昆虫的毒液可以使猎物瘫痪并保存下来而不杀死它,而社会性蛰刺昆虫则利用毒液来保护它们的群体。毒液的这些不同应用表明其成分及其功能也可能不同。本研究调查了刺尾目昆虫中的一系列独居和社会性物种。我们结合电泳、质谱和转录组学技术,对来自一个极其多样化的分类群的毒液成分进行了表征。此外,体外测定法揭示了它们的生物活性。尽管在具有不同社会行为的物种的毒液中发现了许多常见成分,但在磷脂酶 A 和丝氨酸蛋白酶等酶的存在和活性以及毒液的细胞毒性方面也存在显著差异。社会性蛰刺昆虫的毒液中含有更多能对受害者造成伤害和疼痛的肽。欧洲蜜蜂 () 的毒液腺转录组包含高度保守的毒素,与之前的研究中鉴定的毒素相匹配。相比之下,来自研究较少的类群的毒液从我们的蛋白质组数据库中返回的结果有限,这表明它们含有独特的毒素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ec1/10053895/a2e6b7a36d89/toxins-15-00224-g001.jpg

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