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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Bacterial and archaeal guilds associated with electrogenesis and methanogenesis in paddy field soil
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Bacterial and archaeal guilds associated with electrogenesis and methanogenesis in paddy field soil

机译:稻田土壤中细菌和古细菌协会与电发生和甲烷生成有关

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摘要

It is tempting to develop green energy biotechnology to supplement the depletion of fossil fuel resources and to reduce the greenhouse gas emissions. It has been recently demonstrated that paddy soil can be used to construct the sediment-type microbial fuel cells (MFCs). The mechanisms involved in electricity generation and its effects on methanogenesis, however, remain poorly understood. In the present experiment, we constructed paddy soil MFCs to evaluate the effect of MFC on CH4 emission and to determine the bacterial and archaeal populations associated with MFC anodes. We found that electrical current in MFCs increased rapidly in three weeks, while only minor current was detected in MFCs without rice plants. Methane emission decreased in closed circuit MFCs compared with open circuit MFCs that did not have electricity output Molecular approaches revealed that the upstream fermentation bacterial community was not significantly affected by MFCs. However, the relative abundances of Geobacteraceae increased markedly in MFCs; and concurrently the classical syntrophs including Syntrophaceae, Syntrophorhabdaceae, Syntrophobacteraceae and Syntrophomonadaceae increased. Among methanogenic archaea, the relative abundance of Methanosaetaceae increased significantly in closed circuit MFCs compared with open-circuit MFCs. Collectively, our study suggests that the activities of electron-transferring bacteria and archaea are significantly promoted in paddy soil MFCs. (C) 2015 Elsevier B.V. All rights reserved.
机译:试图开发绿色能源生物技术以补充化石燃料资源的消耗并减少温室气体的排放。最近已经证明,稻田土壤可用于构建沉积物型微生物燃料电池(MFC)。然而,关于发电及其对甲烷生成的影响的机制仍知之甚少。在本实验中,我们构建了稻田土壤MFC,以评估MFC对CH4排放的影响,并确定与MFC阳极相关的细菌和古细菌种群。我们发现MFC中的电流在三周内迅速增加,而没有水稻的MFC中仅检测到很小的电流。与没有电力输出的开路MFC相比,闭路MFC中的甲烷排放降低。分子方法显示,MFC并未明显影响上游发酵细菌群落。然而,在MFCs中,细菌科的相对丰度显着增加。并同时增加了剑突科,剑突科,剑突科和剑突科的经典突触。在产甲烷的古细菌中,与开路MFC相比,闭路MFC中甲烷藻科的相对丰度显着增加。总体而言,我们的研究表明,水稻土MFC中电子传递细菌和古细菌的活性得到显着促进。 (C)2015 Elsevier B.V.保留所有权利。

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