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麦长管蚜(半翅目:蚜科:绿蚜族)共生微生物组的系统发育共生结构。

Phylosymbiotic Structures of the Microbiota in Mollitrichosiphum tenuicorpus (Hemiptera: Aphididae: Greenideinae).

机构信息

Key Laboratory of Zoological Systematics and Evolution, Institute of Zoology, Chinese Academy of Sciences, Beijing, 100101, China.

College of Life Sciences, University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Microb Ecol. 2022 Jul;84(1):227-239. doi: 10.1007/s00248-021-01830-8. Epub 2021 Aug 13.

Abstract

Aphids harbor an array of symbionts that provide hosts with ecological benefits. Microbial community assembly generally varies with respect to aphid species, geography, and host plants. However, the influence of host genetics and ecological factors on shaping intraspecific microbial community structures has not been fully understood. In the present study, using Illumina sequencing of the V3 - V4 hypervariable region of the 16S rRNA gene, we characterized the microbial compositions associated with Mollitrichosiphum tenuicorpus from different regions and plants in China. The primary symbiont Buchnera aphidicola and the secondary symbiont Arsenophonus dominated the microbial flora in M. tenuicorpus. Ordination analyses and statistical tests suggested that geography and aphid genetics primarily contributed to the variation in the microbiota of M. tenuicorpus. We further confirmed the combined effect of aphid genetics and geography on shaping the structures of symbiont and secondary symbiont communities. Moreover, the significant correlation between aphid genetic divergence and symbiont community dissimilarity provides evidence for intraspecific phylosymbiosis in natural systems. Our study helped to elucidate the eco-evolutionary relationship between symbiont communities and aphids within one given species.

摘要

蚜虫体内携带有一系列共生菌,这些共生菌为宿主提供了生态益处。共生微生物群落的组装通常因蚜虫的种类、地理位置和宿主植物的不同而有所变化。然而,宿主遗传和生态因素对塑造种内微生物群落结构的影响尚未得到充分理解。在本研究中,我们使用 Illumina 测序技术对来自中国不同地区和植物的麦长管蚜的 16S rRNA 基因 V3-V4 高变区进行了测序,以分析与麦长管蚜相关的微生物组成。初级共生菌 Buchnera aphidicola 和次级共生菌 Arsenophonus 在麦长管蚜的微生物群中占主导地位。排序分析和统计检验表明,地理位置和蚜虫遗传主要导致了麦长管蚜微生物群的变化。我们进一步证实了蚜虫遗传和地理因素对共生菌和次级共生菌群落结构的综合影响。此外,蚜虫遗传分化与共生体群落差异之间的显著相关性为自然系统中种内系统发育共生提供了证据。本研究有助于阐明同一物种内共生体群落与蚜虫之间的生态进化关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9196/9250915/cc9fe3b88fe1/248_2021_1830_Fig1_HTML.jpg

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