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Interspecies electron transfer in methanogenic propionate degrading consortia

机译:产甲烷丙酸降解组合中的种间电子转移

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摘要

Propionate is a key intermediate in the conversion of complex organic matter under methanogenic conditions. Oxidation of this compound requires obligate syntrophic consortia of acetogenic proton- and bicarbonate reducing bacteria and methanogenic archaea. Although H_2 acts as an electron-carrier in these consortia, evidence accumulates that formate plays an even more important role. To make energy yield from propionate oxidation energetically feasible for the bacteria and archaea involved, the concentrations of H_2 and formate have to be extremely low. On the other hand, the diffusion distance of these carriers has to be small to allow high propionate conversion rates. Accordingly, the high conversion rates observed in methanogenic bioreactors are due to the fact that the propionate-oxidizing bacteria and their methanogenic partners form micro-colonies within the densely packed granules.
机译:丙酸酯是产甲烷条件下复杂有机物转化的关键中间体。该化合物的氧化需要专一的产乙酸质子和碳酸氢根还原菌和产甲烷古菌的同养菌群。尽管H_2在这些财团中充当电子载体,但有证据表明,甲酸盐起着更为重要的作用。为了使丙酸酯氧化产生的能量在能量上对所涉及的细菌和古细菌可行,H_2和甲酸盐的浓度必须非常低。另一方面,这些载体的扩散距离必须小以允许高的丙酸酯转化率。因此,在产甲烷生物反应器中观察到的高转化率是由于以下事实:丙酸氧化细菌及其产甲烷伴侣在密集堆积的颗粒内形成了微菌落。

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