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The role of homoacetogenic bacteria as efficient hydrogen scavengers in microbial electrochemical cells (MXCs)

机译:同产乙酸菌在微生物电化学电池(MXC)中作为高效除氢剂的作用

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We evaluated the consumption of hydrogen gas at the anode of a microbial electrolysis cell (MEC) and characterized the significance of new interactions between anode respiring bacteria (ARB) and homo-acetogens. We demonstrated the significance of biofilm limitation for direct consumption of H _2 over acetate by ARB, using the deep biofilm model. Selective inhibition of the major competing hydrogen sink at the biofilm anode, methanogenesis, resulted in significant increase in electron recovery as electric current (~10-12 A/m ~2). The presence of acetate at high concentration in the anode compartment and detection of formate, a known intermediate of the acetyl-CoA pathway, provide evidence towards the role of homoacetogenic bacteria. We also assessed the activity of homoacetogens with reverse transcription quantitative PCR targeting formyltetrahydrofolate synthetase (FTHFS) transcripts, and observed a comparable decrease in the FTHFS transcript numbers with current density and acetate concentrations as we decreased the HRT below 4.5 h. The biofilm anode community was predominated by Deltaproteobacteria (70% of total readouts) along with a fraction of the homoacetogenic genus, Acetobacterium (4% of total readouts), established by pyrosequencing targeting the V6 region of the 16S rRNA. Homoacetogens seem to play a major role as syntrophic members of the biofilm anode community when electron recovery is high.
机译:我们评估了微生物电解池(MEC)阳极上氢气的消耗,并表征了阳极呼吸细菌(ARB)和均相产乙酸原之间新的相互作用的重要性。我们使用深层生物膜模型证明了生物膜限制对于ARB直接消耗乙酸中H _2的重要性。对生物膜阳极主要竞争性氢吸收的选择性抑制,甲烷生成,导致电子回收率随着电流的增加而显着增加(〜10-12 A / m〜2)。阳极室中高浓度乙酸盐的存在和甲酸(乙酰-CoA途径的已知中间体)的检测为同型产乙酸细菌的作用提供了证据。我们还通过针对甲酰四氢叶酸合成酶(FTHFS)转录本的逆转录定量PCR评估了同源乙原的活性,并观察到当电流密度和乙酸盐浓度降低HRT至4.5 h以下时,FTHFS转录本数量的下降幅度相当。生物膜阳极群落主要由Deltaproteobacteria(占总读数的70%)以及一部分同产乙酸的醋杆菌(Acetobacterium,占总读数的4%)组成,通过对16S rRNA的V6区域进行焦磷酸测序而建立。当电子回收率很高时,同质乙原似乎起着生物膜阳极群落的营养成员的主要作用。

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