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大规模培养熊蜂肠道微生物群揭示了一种被低估的具有抑制病原体能力的细菌物种多样性。

Large-scale cultivation of the bumblebee gut microbiota reveals an underestimated bacterial species diversity capable of pathogen inhibition.

机构信息

Laboratory of Microbiology, Department of Biochemistry and Microbiology, Faculty of Sciences, Ghent University, K. L. Ledeganckstraat 35, Ghent B-9000, Belgium.

Laboratory of Agrozoology, Department of Crop Protection, Faculty of Bioscience Engineering, Ghent University, Belgium.

出版信息

Environ Microbiol. 2018 Jan;20(1):214-227. doi: 10.1111/1462-2920.13973. Epub 2017 Dec 1.

Abstract

A total of 1940 isolates from gut samples of 60 bumblebees representing Bombus pascuorum, Bombus terrestris, Bombus lucorum and Bombus lapidarius was collected and identified through state-of the-art taxonomic methods. The bacterial species diversity in these Bombus species exceeded that suggested by phylotype analysis through 16S rRNA amplicon sequencing, and revealed that B. pascuorum and B. terrestris had a unique microbiota composition, each. Representatives of most phylotypes reported earlier and detected in the present study were effectively isolated, and included several novel bacterial taxa and species reported for the first time in the bumblebee gut. Isolates were screened in pectin degradation assays and growth inhibition assays against the honeybee pathogens Paenibacillus larvae, Melissococcus plutonius and Ascosphaera apis and the bumblebee parasite Crithidia bombi. While inhibitory activity against each of these pathogens was observed, only one single culture was able to degrade pectin and polygalacturonic acid in vitro. The availability of accurately identified microbial isolates will facilitate future evaluation of the functional potential of the bumblebee gut microbiota.

摘要

共收集了 60 只熊蜂(代表熊蜂属的巴氏熊蜂、欧洲熊蜂、大地熊蜂和拉氏熊蜂)肠道样本中的 1940 个分离株,并通过最先进的分类学方法进行了鉴定。通过 16S rRNA 扩增子测序的系统发育分析,这些熊蜂物种的细菌物种多样性超过了预期,结果表明巴氏熊蜂和欧洲熊蜂各具有独特的微生物群落组成。先前报道的大多数系统发育型的代表,以及本研究中检测到的代表,都被有效地分离出来,包括一些在熊蜂肠道中首次报道的新细菌分类群和物种。对果胶降解和抑制蜜蜂病原体幼虫芽孢杆菌、蜂房球菌和蜂球囊菌以及熊蜂寄生虫克里蒂亚 bombbi 的生长抑制进行了筛选。虽然观察到对这些病原体的抑制活性,但只有一个单一的培养物能够在体外降解果胶和多聚半乳糖醛酸。准确鉴定微生物分离株的可用性将有助于未来评估熊蜂肠道微生物群落的功能潜力。

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