首页> 外文期刊>Microbial Ecology: An International Journal >The Bacterial Flora Associated with the Polyphagous Aphid Aphis gossypii Glover (Hemiptera: Aphididae) Is Strongly Affected by Host Plants
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The Bacterial Flora Associated with the Polyphagous Aphid Aphis gossypii Glover (Hemiptera: Aphididae) Is Strongly Affected by Host Plants

机译:与多牙蚜虫Aphis Gossypii Glover(Hemiptera:蚜虫)相关的细菌植物受到宿主植物的强烈影响

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摘要

Aphids live in symbiosis with a variety of bacteria, including the obligate symbiont Buchnera aphidicola and diverse facultative symbionts. The symbiotic associations for one aphid species, especially for polyphagous species, often differ across populations. In the present study, by using high-throughput 16S rRNA sequencing, we surveyed in detail the microbiota in natural populations of the cotton aphid Aphis gossypii in China and assessed differences in bacterial diversity with respect to host plant and geography. The microbial community of A. gossypii was dominated by a few heritable symbionts. Arsenophonus was the most dominant secondary symbiont, and Spiroplasma was detected for the first time. Statistical tests and ordination analyses showed that host plants rather than geography seemed to have shaped the associated symbiont composition. Special symbiont communities inhabited the Cucurbitaceae-feeding populations, which supported the ecological specialization of A. gossypii on cucurbits from the viewpoint of symbiotic bacteria. Correlation analysis suggested antagonistic interactions between Buchnera and coexisting secondary symbionts and more complicated interactions between different secondary symbionts. Our findings lend further support to an important role of the host plant in structuring symbiont communities of polyphagous aphids and will improve our understanding of the interactions among phytophagous insects, symbionts, and environments.
机译:蚜虫与各种细菌一起生活在共生中,包括紫杉醇蚜虫和多种兼容性化学者。一个蚜虫物种的共生关联,特别是对于多晶物种,通常不同于人群。在本研究中,通过使用高通量16S rRNA测序,我们详细调查了中国棉蚜Aphis Gossypii的自然群体中的微生物群,并评估了对宿主植物和地理的细菌多样性的差异。 A. Gossypii的微生物群落主导了几个遗传的Symbionts。阿森诺勒是最占主导地位的二级Symbiont,第一次检测到螺旋状物。统计测试和排序分析显示,宿主植物而不是地理似乎具有成形相关的Symbiont组合物。特殊的Symbiont社区居住了葫芦科饲养人口,从共生细菌的观点来看,支持了A. Gossypii的生态专业化。相关性分析建议布什纳与共存次级共生之间的拮抗相互作用以及不同二级共生之间的更复杂的相互作用。我们的研究结果借助宿主植物在构建复合蚜虫的共同组织中的重要作用,并将改善我们对植物昆虫,共生和环境之间的相互作用的理解。

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