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Methods for understanding microbial community structures and functions in microbial fuel cells: A review

机译:理解微生物燃料电池中微生物群落结构和功能的方法:综述

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摘要

Microbial fuel cells (MFCs) employ microorganisms to recover electric energy from organic matter. However, fundamental knowledge of electrochemically active bacteria is still required to maximize MFCs power output for practical applications. This review presents microbiological and electrochemical techniques to help researchers choose the appropriate methods for the MFCs study. Pre-genomic and genomic techniques such as 16S rRNA based phylogeny and metagenomics have provided important information in the structure and genetic potential of electrode-colonizing microbial communities. Post-genomic techniques such as metatranscriptomics allow functional characterizations of electrode biofilm communities by quantifying gene expression levels. Isotope-assisted phylogenetic analysis can further link taxonomic information to microbial metabolisms. A combination of electrochemical, phylogenetic, metagenomic, and post-metagenomic techniques offers opportunities to a better understanding of the extracellular electron transfer process, which in turn can lead to process optimization for power output.
机译:微生物燃料电池(MFCs)利用微生物从有机物中回收电能。但是,仍然需要电化学活性细菌的基础知识来使MFCs的功率输出最大化以用于实际应用。这篇综述介绍了微生物学和电化学技术,以帮助研究人员为MFCs研究选择合适的方法。前基因组和基因组技术,例如基于16S rRNA的系统发育和宏基因组学,为电极定殖微生物群落的结构和遗传潜力提供了重要信息。后基因组技术(例如转录组学)可通过量化基因表达水平来表征电极生物膜群落的功能。同位素辅助的系统发育分析可以进一步将分类学信息与微生物代谢联系起来。电化学,系统发生,宏基因组学和后宏基因组学技术的结合为更好地了解细胞外电子转移过程提供了机会,而这反过来又可以导致功率输出的过程优化。

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