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Microbial Fuel Cells and Microbial Ecology: Applications in Ruminant Health and Production Research

机译:微生物燃料电池和微生物生态学:反刍动物健康和生产研究中的应用

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摘要

Microbial fuel cell (MFC) systems employ the catalytic activity of microbes to produce electricity from the oxidation of organic, and in some cases inorganic, substrates. MFC systems have been primarily explored for their use in bioremediation and bioenergy applications; however, these systems also offer a unique strategy for the cultivation of synergistic microbial communities. It has been hypothesized that the mechanism(s) of microbial electron transfer that enable electricity production in MFCs may be a cooperative strategy within mixed microbial consortia that is associated with, or is an alternative to, interspecies hydrogen (H2) transfer. Microbial fermentation processes and methanogenesis in ruminant animals are highly dependent on the consumption and production of H2in the rumen. Given the crucial role that H2 plays in ruminant digestion, it is desirable to understand the microbial relationships that control H2 partial pressures within the rumen; MFCs may serve as unique tools for studying this complex ecological system. Further, MFC systems offer a novel approach to studying biofilms that form under different redox conditions and may be applied to achieve a greater understanding of how microbial biofilms impact animal health. Here, we present a brief summary of the efforts made towards understanding rumen microbial ecology, microbial biofilms related to animal health, and how MFCs may be further applied in ruminant research.
机译:微生物燃料电池(MFC)系统利用微生物的催化活性,通过有机物(在某些情况下是无机物)底物的氧化来发电。 MFC系统主要用于生物修复和生物能源应用。但是,这些系统还为培养协同微生物群落提供了独特的策略。已经假设,能够在MFC中产生电能的微生物电子转移机制可能是与种间氢(H2)转移相关或为种间氢(H2)转移的替代微生物团体中的一种合作策略。反刍动物的微生物发酵过程和甲烷生成高度依赖于瘤胃中H2的消耗和产生。考虑到H2在反刍动物消化中的关键作用,希望了解控制瘤胃内H2分压的微生物关系。 MFC可作为研究这一复杂生态系统的独特工具。此外,MFC系统提供了一种新颖的方法来研究在不同的氧化还原条件下形成的生物膜,并且可用于更好地了解微生物生物膜如何影响动物健康。在这里,我们简要介绍了为了解瘤胃微生物生态学,与动物健康有关的微生物生物膜以及如何将MFCs进一步应用于反刍动物研究而做出的努力。

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