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用于从白蚁巢中选择性分离酸杆菌的高通量培养法

High-Throughput Cultivation for the Selective Isolation of Acidobacteria From Termite Nests.

作者信息

Oberpaul Markus, Zumkeller Celine M, Culver Tanja, Spohn Marius, Mihajlovic Sanja, Leis Benedikt, Glaeser Stefanie P, Plarre Rudy, McMahon Dino P, Hammann Peter, Schäberle Till F, Glaeser Jens, Vilcinskas Andreas

机构信息

Branch for Bioresources, Fraunhofer Institute for Molecular Biology and Applied Ecology (IME), Giessen, Germany.

Institute of Applied Microbiology, Justus Liebig University Giessen, Giessen, Germany.

出版信息

Front Microbiol. 2020 Nov 6;11:597628. doi: 10.3389/fmicb.2020.597628. eCollection 2020.

Abstract

Microbial communities in the immediate environment of socialized invertebrates can help to suppress pathogens, in part by synthesizing bioactive natural products. Here we characterized the core microbiomes of three termite species (genus ) and their nest material to gain more insight into the diversity of termite-associated bacteria. Sampling a healthy termite colony over time implicated a consolidated and highly stable microbiome, pointing toward the fact that beneficial bacterial phyla play a major role in termite fitness. In contrast, there was a significant shift in the composition of the core microbiome in one nest during a fungal infection, affecting the abundance of well-characterized species (phylum Actinobacteria) as well as less-studied bacterial phyla such as Acidobacteria. High-throughput cultivation in microplates was implemented to isolate and identify these less-studied bacterial phylogenetic group. Amplicon sequencing confirmed that our method maintained the bacterial diversity of the environmental samples, enabling the isolation of novel Acidobacteriaceae and expanding the list of cultivated species to include two strains that may define new species within the genera and .

摘要

社会化无脊椎动物周围环境中的微生物群落有助于抑制病原体,部分原因是通过合成生物活性天然产物。在这里,我们对三种白蚁物种(属)及其巢穴材料的核心微生物群进行了表征,以更深入地了解与白蚁相关细菌的多样性。随着时间的推移对一个健康白蚁群落进行采样,发现了一个稳定且高度稳定的微生物群,这表明有益细菌门在白蚁健康中起主要作用。相比之下,在真菌感染期间,一个巢穴的核心微生物群组成发生了显著变化,影响了特征明确的物种(放线菌门)以及研究较少的细菌门如酸杆菌门的丰度。采用微孔板高通量培养法来分离和鉴定这些研究较少的细菌系统发育类群。扩增子测序证实,我们的方法保持了环境样品的细菌多样性,能够分离出新的酸杆菌科,并将培养物种列表扩大到包括两个可能在属和属内定义新物种的菌株。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8f0/7677567/b2400f6fe195/fmicb-11-597628-g001.jpg

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