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首页> 外文期刊>Applied Microbiology >Alamethicin Suppresses Methanogenesis and Promotes Acetogenesis in Bioelectrochemical Systems
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Alamethicin Suppresses Methanogenesis and Promotes Acetogenesis in Bioelectrochemical Systems

机译:Alamethicin抑制生物电化学系统中的甲烷生成并促进产乙酸。

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Microbial electrosynthesis (MES) systems with mixed cultures often generate a variety of gaseous and soluble chemicals. Methane is the primary end product in mixed-culture MES because it is the thermodynamically most favorable reduction product of CO_(2). Here, we show that the peptaibol alamethicin selectively suppressed the growth of methanogens in mixed-culture MES systems, resulting in a shift of the solution and cathode communities to an acetate-producing system dominated by Sporomusa , a known acetogenic genus in MES systems. Archaea in the methane-producing control were dominated by Methanobrevibacter species, but no Archaea were detected in the alamethicin-treated reactors. No methane was detected in the mixed-culture reactors treated with alamethicin over 10 cycles (~3 days each). Instead, acetate was produced at an average rate of 115 nmol ml~(?1) day~(?1), similar to the rate reported previously for pure cultures of Sporomusa ovata on biocathodes. Mixed-culture control reactors without alamethicin generated methane at nearly 100% coulombic recovery, and no acetate was detected. These results show that alamethicin is effective for the suppression of methanogen growth in MES systems and that its use enables the production of industrially relevant organic compounds by the inhibition of methanogenesis.
机译:混合培养的微生物电合成(MES)系统通常会产生各种气态和可溶性化学物质。甲烷是混合培养MES的主要最终产物,因为它是热力学上最有利的CO_(2)还原产物。在这里,我们显示了在混合培养的MES系统中,肽前药alamethicin有选择地抑制了产甲烷菌的生长,导致溶液和阴极群落向以Sporomusa(MES系统中已知的产乙酸属)为主的乙酸盐生产系统转移。产甲烷的对照中的古细菌主要由甲烷甲烷短杆菌属物种组成,但在用新霉素处理的反应器中未检测到古细菌。经过10次循环(每次约3天)后,在用alamethicin处理的混合培养反应器中未检测到甲烷。取而代之的是,乙酸盐的平均生成速率为115 nmol ml·(?1)天〜(?1),类似于先前报道的在生物阴极上卵形孢子菌纯培养物的生成速率。不使用阿乐美辛的混合培养控制反应器以接近100%的库仑回收率生成甲烷,并且未检测到乙酸盐。这些结果表明,阿拉美辛可有效抑制MES系统中产甲烷菌的生长,并且其使用能够通过抑制产甲烷作用生产与工业相关的有机化合物。

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