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首页> 外文期刊>Oikos: A Journal of Ecology >Bacterial phylogeny predicts volatile organic compound composition and olfactory response of an aphid parasitoid
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Bacterial phylogeny predicts volatile organic compound composition and olfactory response of an aphid parasitoid

机译:细菌系统发生预测蚜虫寄生体的挥发性有机化合物组合物和嗅觉响应

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摘要

There is increasing evidence that microorganisms emit a wide range of volatile compounds (mVOCs, microbial volatile organic compounds) that act as insect semiochemicals, and therefore play an important role in insect behaviour. Although it is generally believed that phylogenetically closely related microbes tend to have similar phenotypic characteristics and therefore may elicit similar responses in insects, currently little is known about whether the evolutionary history and phylogenetic relationships among microorganisms have an impact on insect-microbe interactions. In this study, we tested the hypothesis that phylogenetic relationships among 40Bacillusstrains isolated from diverse environmental sources predicted mVOC composition and the olfactory response of the generalist aphid parasitoidAphidius colemani. Results revealed that phylogenetically closely relatedBacillusstrains emitted similar blends of mVOCs and elicited a comparable olfactory response ofA. colemaniin Y-tube olfactometer bioassays, varying between attraction and repellence. Analysis of the chemical composition of the mVOC blends showed that allBacillusstrains produced a highly similar set of volatiles, but often in different concentrations and ratios. Benzaldehyde was produced in relatively high concentrations by strains that repelA. colemani, while attractive mVOC blends contained relatively higher amounts of acetoin, 2,3-butanediol, 2,3-butanedione, eucalyptol and isoamylamine. Overall, these results indicate that bacterial phylogeny had a strong impact on mVOC compositions and as a result on the olfactory responses of insects.
机译:越来越多的证据表明微生物发出了一种充当昆虫的挥发性化合物(MVOC,微生物挥发性有机化合物),并因此在昆虫行为中起重要作用。虽然普遍认为,这种密切相关的微生物倾向于具有相似的表型特征,因此可能引起昆虫中的类似反应,目前是关于微生物中的进化历史和系统发育关系对昆虫 - 微生物相互作用的影响很少。在这项研究中,我们测试了从不同环境源中分离的40bacillusstrains中的系统发育关系预测MVOC成分以及通用蚜虫帕拉西基皮肤科的嗅觉反应的假设。结果表明,线源性密切相关的MVOC混合物和引发了类似的嗅觉反应。 COLEMANIIN Y型管嗅觉表生物测定,吸引力和排斥之间变化。 MVOC混合物的化学成分分析表明,Allbacillusstrains产生高度相似的挥发物,但通常以不同的浓度和比率。苯甲醛是通过重新链接的菌株以相对高的浓度产生的。 COLEMANI,虽然有吸引力的MVOC混合物含有相对较高量的丙酮蛋白,2,3-丁二醇,2,3-丁二烯,桉树和异戊胺。总的来说,这些结果表明细菌系统发生对MVOC组成具有很大的影响,并导致昆虫的嗅觉反应。

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