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Exocellular electron transfer in anaerobic microbial communities

机译:厌氧微生物群落中的细胞外电子转移

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Exocellular electron transfer plays an important role in anaerobic microbial communities that degrade organic matter. Interspecies hydrogen transfer between microorganisms is the driving force for complete biodegradation in methanogenic environments. Many organic compounds are degraded by obligatory syntrophic consortia of proton-reducing acetogenic bacteria and hydrogen-consuming methanogenic archaea. Anaerobic microorganisms that use insoluble electron acceptors for growth, such as iron- and manganese-oxide as well as inert graphite electrodes in microbial fuel cells, also transfer electrons exocellularly. Soluble compounds, like humic substances, quinones, phenazines and riboflavin, can function as exocellular electron mediators enhancing this type of anaerobic respiration. However, direct electron transfer by cell-cell contact is important as well. This review addresses the mechanisms of exocellular electron transfer in anaerobic microbial communities. There are fundamental differences but also similarities between electron transfer to another microorganism or to an insoluble electron acceptor. The physical separation of the electron donor and electron acceptor metabolism allows energy conservation in compounds as methane and hydrogen or as electricity. Furthermore, this separation is essential in the donation or acceptance of electrons in some environmental technological processes, e.g. soil remediation, wastewater purification and corrosion.
机译:细胞外电子转移在降解有机物的厌氧微生物群落中起重要作用。微生物之间的种间氢转移是在产甲烷环境中完全生物降解的驱动力。质子减少的产乙酸细菌和耗氢的产甲烷古细菌的强制性同养性财团降解了许多有机化合物。使用不溶性电子受体进行生长的厌氧微生物(如氧化铁和锰氧化物以及微生物燃料电池中的惰性石墨电极)也将电子转移到细胞外。可溶性化合物,如腐殖质,醌,吩嗪和核黄素,可以作为胞外电子介体,增强这种厌氧呼吸的能力。然而,通过细胞-细胞接触的直接电子转移也很重要。这项审查解决了厌氧微生物群落中胞外电子转移的机制。电子转移到另一种微生物或不溶性电子受体之间存在根本差异,但也有相似之处。电子给体和电子受体代谢的物理分离允许以甲烷,氢或电的形式保存化合物中的能量。此外,在某些环境技术过程中,例如电子的捐赠或接受,这种分离是必不可少的。土壤修复,废水净化和腐蚀。

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