首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Inhibitory effect of self-generated extracellular dissolved organic carbon on carbon dioxide fixation in sulfur-oxidizing bacteria during a chemoautotrophic cultivation process and its elimination
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Inhibitory effect of self-generated extracellular dissolved organic carbon on carbon dioxide fixation in sulfur-oxidizing bacteria during a chemoautotrophic cultivation process and its elimination

机译:抑制自成细胞外溶解有机碳对化学养殖过程中硫氧化细菌二氧化碳固定的抑制作用及其消除

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摘要

The features of extracellular dissolved organic carbon (EDOC) generation in two typical aerobic sulfur-oxidizing bacteria (Thiobacillus thioparus DSM 505 and Halothiobacillus neapolitanus DSM 15147) and its impact on CO2 fixation during chemoautotrophic cultivation process were investigated. The results showed that EDOC accumulated in both strains during CO2 fixation process. Large molecular weight (MW) EDOC derived from cell lysis and decay was dominant during the entire process in DSM 505, whereas small MW EDOC accounted for a large proportion during initial and middle stages of DSM 15147 as its cytoskeleton synthesis rate did not keep up with CO2 assimilation rate. The self-generated EDOC feedback repressed cbb gene transcription and thus decreased total bacterial cell number and CO2 fixation yield in both strains, but DSM 505 was more sensitive to this inhibition effect. Moreover, the membrane bioreactor effectively decreased the EDOC/TOC ratio and improved carbon fixation yield of DSM 505.
机译:研究了两种典型的有氧硫 - 氧化细菌(Thiobacillus Thiobarus DSM 505和Halothiobacillus Neapolitanus DSM 15147)中的细胞外溶解有机碳(EDOC)的特征及其对化学养殖过程中CO2固定的影响。结果表明,在CO 2固定过程中,EDOC在两种菌株中累积。在DSM 505的整个过程中,衍生自细胞裂解和衰减的大分子量(MW)EDOC在DSM 505中的整个过程中显着,而小MW EDOC在DSM 15147的初始和中间阶段期间占较大的比例,因为其细胞骨架合成率没有跟上二氧化碳同化率。自我产生的EDOC反馈抑制CBB基因转录,从而降低了两种菌株中的总细菌细胞数和CO2固定产率,但DSM 505对该抑制作用更敏感。此外,膜生物反应器有效地降低了EDOC / TOC的比率和改善DSM 505的碳固定产率。

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