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膜翅目(Hymenoptera):蚁科(Mutillidae)下的毛蚁蜇刺产生疼痛的毒液化学物质。

Venom chemistry underlying the painful stings of velvet ants (Hymenoptera: Mutillidae).

机构信息

Institute for Molecular Bioscience, The University of Queensland, Brisbane, QLD, 4072, Australia.

School of Pharmacy, The University of Queensland, Brisbane, QLD, 4102, Australia.

出版信息

Cell Mol Life Sci. 2021 Jun;78(12):5163-5177. doi: 10.1007/s00018-021-03847-1. Epub 2021 May 10.

Abstract

Velvet ants (Hymenoptera: Mutillidae) are a family of solitary parasitoid wasps that are renowned for their painful stings. We explored the chemistry underlying the stings of mutillid wasps of the genus Dasymutilla Ashmead. Detailed analyses of the venom composition of five species revealed that they are composed primarily of peptides. We found that two kinds of mutillid venom peptide appear to be primarily responsible for the painful effects of envenomation. These same peptides also have defensive utility against invertebrates, since they were able to incapacitate and kill honeybees. Both act directly on cell membranes where they directly increase ion conductivity. The defensive venom peptides of Dasymutilla bear a striking similarity, in structure and mode of action, to those of the ant Myrmecia gulosa (Fabricius), suggesting either retention of ancestral toxins, or convergence driven by similar life histories and defensive selection pressures. Finally, we propose that other highly expressed Dasymutilla venom peptides may play a role in parasitisation, possible in delay or arrest of host development. This study represents the first detailed account of the composition and function of the venoms of the Mutillidae.

摘要

velvet 蚂蚁(膜翅目:Mutillidae)是一类以其刺痛感而闻名的独居寄生蜂。我们探索了 Dasymutilla Ashmead 属 mutillid 黄蜂蜇伤的化学基础。对五种物种毒液成分的详细分析表明,它们主要由肽组成。我们发现,两种 mutillid 毒液肽似乎主要负责蜇伤的疼痛效应。这些相同的肽也对无脊椎动物具有防御作用,因为它们能够使蜜蜂丧失能力并杀死蜜蜂。两者都直接作用于细胞膜,直接增加离子导电性。Dasymutilla 的防御性毒液肽在结构和作用方式上与蚂蚁 Myrmecia gulosa(Fabricius)非常相似,这表明要么保留了祖先毒素,要么是由相似的生活史和防御选择压力驱动的趋同进化。最后,我们提出其他高度表达的 Dasymutilla 毒液肽可能在寄生过程中发挥作用,可能会延迟或阻止宿主发育。本研究代表了对 Mutillidae 毒液组成和功能的首次详细描述。

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