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在热带地区的光伏板微生物群落中,嗜极生物类群占主导地位。

Extremophilic taxa predominate in a microbial community of photovoltaic panels in a tropical region.

作者信息

Moura Juliane B, Delforno Tiago P, do Prado Pierre F, Duarte Iolanda C

机构信息

Department of Biology, Laboratory of Applied Microbiology, Federal University of São Carlos, Rodovia João Leme dos Santos km 110, Itinga 18052-780, Sorocaba-SP, Brazil.

SENAI Innovation Institute for Biotechnology, Rua Anhaia, 1321, Bom Retiro, São Paulo 01130-000, São Paulo-SP, Brazil.

出版信息

FEMS Microbiol Lett. 2021 Aug 26;368(16). doi: 10.1093/femsle/fnab105.

Abstract

Photovoltaic panels can be colonized by a highly diverse microbial diversity, despite life-threatening conditions. Although they are distributed worldwide, the microorganisms living on their surfaces have never been profiled in tropical regions using 16S rRNA high-throughput sequencing and PICRUst metagenome prediction of functional content. In this work, we investigated photovoltaic panels from two cities in southeast Brazil, Sorocaba and Itatiba, using these bioinformatics approach. Results showed that, despite significant differences in microbial diversity (p < 0.001), the taxonomic profile was very similar for both photovoltaic panels, dominated mainly by Proteobacteria, Bacteroidota and lower amounts of Cyanobacteria phyla. A predominance of Hymenobacter and Methylobacterium-Methylorubrum was observed at the genus level. We identified a microbial common core composed of Hymenobacter, Deinococcus, Sphingomonas, Methylobacterium-Methylorubrum, Craurococcus-Caldovatus, Massilia, Noviherbaspirillum and 1174-901-12 sharing genera. Predicted metabolisms focused on specific genes associated to radiation and desiccation resistance and pigments, were detected in members of the common core and among the most abundant genera. Our results suggested that taxonomic and functional profiles investigated were consistent with the harsh environment that photovoltaic panels represent. Moreover, the presence of stress genes in the predicted functional content was a preliminary evidence that microbes living there are a possibly source of metabolites with biotechnological interest.

摘要

尽管存在危及生命的条件,光伏板仍可被高度多样的微生物群落定殖。虽然它们分布在世界各地,但利用16S rRNA高通量测序和功能内容的PICRUst宏基因组预测,从未对热带地区生活在其表面的微生物进行过分析。在这项工作中,我们使用这些生物信息学方法,对巴西东南部两个城市索罗卡巴和伊塔蒂巴的光伏板进行了调查。结果表明,尽管微生物多样性存在显著差异(p < 0.001),但两个光伏板的分类学特征非常相似,主要由变形菌门、拟杆菌门和少量蓝细菌门主导。在属水平上观察到膜杆菌属和甲基杆菌-甲基红菌属占优势。我们确定了一个由膜杆菌属、嗜辐射球菌属、鞘氨醇单胞菌属、甲基杆菌-甲基红菌属、克劳罗球菌-卡尔多瓦菌属、马赛菌属、新草螺菌属和1174-901-12共有属组成的微生物共同核心。在共同核心成员和最丰富的属中,检测到预测的代谢集中在与抗辐射、抗干燥和色素相关的特定基因上。我们的结果表明,所研究的分类学和功能特征与光伏板所代表的恶劣环境一致。此外,预测功能内容中应激基因的存在初步证明,生活在那里的微生物可能是具有生物技术意义的代谢物来源。

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