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Ancient symbiosis confers desiccation resistance to stored grain pest beetles

机译:古代共生赋予储存谷物虫害的干燥抗性

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摘要

Microbial symbionts of insects provide a range of ecological traits to their hosts that are beneficial in the context of biotic interactions. However, little is known about insect symbiont-mediated adaptation to the abiotic environment, e.g. temperature and humidity. Here we report on an ancient (~400 Mya) clade of intracellular, bacteriome-located Bacteroidetes symbionts that are associated withgrain and wood pest beetles of the phylogenetically distant families Silvanidae and Bostrichidae. In the saw-toothed grain beetle Oryzaephilus surinamensis, we demonstrate that the symbionts affect cuticle thickness, melanization and hydrocarbon profile, enhancing desiccation resistance and thereby strongly improving fitness under dry conditions. Together with earlier observations on symbiont contributions to cuticle biosynthesis in weevils, our findings indicate that convergent acquisitions of bacterial mutualists represented key adaptations enabling diverse pest beetle groups to survive and proliferate under the low ambient humidities that characterize dry grain storage facilities.
机译:昆虫的微生物共生提供了一系列生态特征,在生物相互作用的背景下是有益的。然而,关于昆虫共生介导的适应对非生物环境毫无熟悉的,例如,众所周知。温度和湿度。在这里,我们报告了一个古老(〜400 mya)的细胞内,细菌学的菌株Symbionts,这些分析器是相关的,与系统嗜血般的遥远的家庭Silvanidae和Bostrichidae相关联。在锯齿纹甲虫甲虫甲虫甲虫血清中,我们证明了共生影响了角质层厚度,黑色化和烃曲线,增强干燥性,从而强烈提高干燥条件下的适应性。我们的研究结果与早期对Symbiont生物合成的贡献相同观察结果表明,细菌共生主义者的会聚采集代表了能够在表征干燥谷物储存设施的低环境湿度下生存和增殖的关键适应。

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