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Identification of potential electrotrophic microbial community in paddy soils by enrichment of microbial electrolysis cell biocathodes

机译:通过富集微生物电解细胞生物病变鉴定水稻土的潜在电抚育微生物群落

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摘要

Electrotrophs are microbes that can receive electrons directly from cathode in a microbial electrolysis cell (MEC). They not only participate in organic biosynthesis, but also be crucial in cathode-based bioremediation. However, little is known about the electrotrophic community in paddy soils. Here, the putative electrotrophs were enriched by cathodes of MECs constructed from five paddy soils with various properties using bicarbonate as an electron acceptor, and identified by 16S rRNA-gene based Illumina sequencing. The electrons were gradually consumed on the cathodes, and 25%-45% of which were recovered to reduce bicarbonate to acetic acid during MEC operation. Firmicutes was the dominant bacterial phylum on the cathodes, and Bacillus genus within this phylum was greatly enriched and was the most abundant population among the detected putative electrotrophs for almost all soils. Furthermore, several other members of Firmicutes and Proteobacteria may also participate in electrotrophic process in different soils. Soil pH, amorphous iron and electrical conductivity significantly influenced the putative electrotrophic bacterial community, which explained about 33.5% of the community structural variation. This study provides a basis for understanding the microbial diversity of putative electrotrophs in paddy soils, and highlights the importance of soil properties in shaping the community of putative electrotrophs. (c) 2019 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:电疗是可以直接从微生物电解槽(MEC)中的阴极接收电子的微生物。它们不仅参与有机生物合成,而且在基于阴极的生物修复中也是至关重要的。然而,关于水稻土的电辅助群落少知之甚少。这里,通过使用碳酸氢盐作为电子受体的各种性质构成的MEC的阴极富集的推定的电镜,并通过16S rRNA-基因的illumina测序鉴定。电子在阴极上逐渐消耗,其中25%-45%回收,以在MEC操作期间减少碳酸氢盐与乙酸。迫使是阴极上的主要细菌门,并且这种场芽孢杆菌大大富集,并且是几乎所有土壤的检测到的推定电镜中最丰富的人群。此外,其他几个成员和植物体外的成员也可以参与不同土壤中的电养过程。土壤pH,无定形铁和导电性显着影响推定的电促细菌群落,其解释了群落结构变异的约33.5%。本研究为了解水稻土中推定电效的微生物多样性的基础,并突出了土壤性质在塑造推定电器群落中的重要性。 (c)2019中国科学院生态环境科学研究中心。 elsevier b.v出版。

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