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Queen venom isosolenopsin A delivers rapid incapacitation of fire ant competitors

机译:女王毒液胰蛋白酶A提供了消防蚂蚁竞争对手的快速丧失能力

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摘要

Fire ant venom contains insecticidal alkaloids named 'solenopsins'. Whilst species-specific differences are reported, little attention has been given to caste-specific venom adaptations. The venom of fire ant queens has remained particularly poorly studied, though studies have shown it to be strikingly similar across different species, in being primarily composed of the alkaloid isosolenopsin A, regardless of the chemical configuration in workers. We predict that this is the evolutionary outcome of stabilising selection, implying that a shared mechanism is responsible for the conserved venom composition among fire ant queens. The present investigation tests whether venom plays a role in nest founding, when queens must succeed in isolation in the field against competitor species. Here, we report that fire ant queen venom and isosolenopsin A are faster to incapacitate alien ants than the venom of fire ant workers. Representative sympatric competitor ant species were selected and exposed on their heads to the venom of workers and queens of the invasive fire ant species Solenopsis invicta and S. geminate. Queen venom was found to incapacitate rival foragers quicker than worker venom. The effects were reproduced using synthetic solenopsins, establishing that solenopsin A analogues are particularly effective contact neurotoxins. Overall, the venom of S. invicta is more lethal than of S. geminate, regardless of the incapacitation speed. We believe these are fundamental aspects of the chemical ecology of the invasive ants which remain overlooked, and emphasise the need for further studies into the venom biology of founding queens.
机译:消防蚂蚁毒液含有名为'solenopsins'的杀虫生物碱。据报道,虽然物种特异性差异,但对种姓特异性的毒液适应感到很少。消防蚂蚁女王的毒液研究尤其较差,但研究已经表明它在不同物种上令人惊微相似,主要由生物碱肌醇蛋白A组成,无论工人中的化学结构如何。我们预测,这是稳定选择的进化结果,这意味着共享机制负责消防蚂蚁女王中的保守毒液组成。目前的调查测试毒液是否在巢中发挥作用,当时皇后必须在竞争对手物种中孤立地成功。在这里,我们举报了消防蚂蚁女王毒液和肌醇蛋白A比消防蚂蚁工人的毒液更快。被选中的SympaTric竞争对手蚂蚁物种被选中和暴露在他们的头上,以侵入式消防蚂蚁物种Solenopsis Invicta和S.Geminate的毒液和女王的毒液。韦莫被发现比工人毒液更快地丧失竞争对手。使用合成型溶胶再现效果,建立螺旋蛋白酶A类似物是特别有效的接触神经毒素。总的来说,S. Invicta的毒液比S. Geminate更致命,无论能力速度如何。我们认为,这些是侵入性蚂蚁的化学生态学的基本方面,这些生态学仍然被忽视,并强调需要进一步研究成立皇后毒素的毒液生物学。

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