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首页> 外文期刊>Biotechnology for Biofuels >Metabolism, morphology and transcriptome analysis of oscillatory behavior of Clostridium butyricum during long-term continuous fermentation for 1,3-propanediol production
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Metabolism, morphology and transcriptome analysis of oscillatory behavior of Clostridium butyricum during long-term continuous fermentation for 1,3-propanediol production

机译:1,3-丙二醇产量期间,在长期连续发酵过程中梭菌诱惑性振荡行为的新陈代谢,形态学和转录体分析

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Oscillation is a special cell behavior in microorganisms during continuous fermentation, which poses threats to the output stability for industrial productions of biofuels and biochemicals. In previous study, a spontaneous oscillatory behavior was observed in Clostridium butyricum-intensive microbial consortium in continuous fermentation for 1,3-propanediol (1,3-PDO) production from glycerol, which led to the discovery of oscillation in species C. butyricum. Spontaneous oscillations by C. butyricum tended to occur under glycerol-limited conditions at low dilution rates. At a glycerol feed concentration of 88?g/L and a dilution rate of 0.048?h?1, the oscillatory behavior of C. butyricum was observed after continuous operation for 146?h and was sustained for over 450?h with an average oscillation period of 51?h. During oscillations, microbial glycerol metabolism exhibited dramatic periodic changes, in which productions of lactate, formate and hydrogen significantly lagged behind that of other products including biomass, 1,3-PDO and butyrate. Analysis of extracellular oxidation–reduction potential and intracellular ratio of NAD /NADH indicated that microbial cells experienced distinct redox changes during oscillations, from oxidized to reduced state with decreasing of growth rate. Meanwhile, C. butyricum S3 exhibited periodic morphological changes during oscillations, with aggregates, elongated shape, spores or cell debris at the trough of biomass production. Transcriptome analysis indicated that expression levels of multiple genes were up-regulated when microbial cells were undergoing stress, including that for pyruvate metabolism, conversion of acetyl-CoA to acetaldehyde as well as stress response. This study for the first time systematically investigated the oscillatory behavior of C. butyricum in aspect of occurrence condition, metabolism, morphology and transcriptome. Based on the experimental results, two hypotheses were put forward to explain the oscillatory behavior: disorder of pyruvate metabolism, and excessive accumulation of acetaldehyde.
机译:振荡是在连续发酵过程中微生物中的特殊细胞行为,这造成了对生物燃料和生化生物化学的工业生产的产量稳定性的威胁。在先前的研究中,在甘油的连续发酵中,在甘油中的连续发酵中观察到自发振荡行为,从甘油中的1,3-丙二醇(1,3-PDO)产生,这导致了在物种C. Buticricum中发现振荡的振荡。通过C.Butricum的自发振荡倾向于在低稀释率下在甘油限制条件下发生。在甘油进料浓度为88Ω···升浓度,稀释率为0.048ΩH2 H 2。在连续操作后,在连续操作后观察到静脉静脉的振荡行为146Ω·H,并且具有平均振荡的450℃以上持续450?期间为51?h。在振荡期间,微生物甘油代谢表现出显着的周期性变化,其中乳酸盐,甲酸盐和氢的产品显着落后于包括生物质,1,3-PDO和丁酸盐的其他产品的落后。 NAD / NADH细胞外氧化潜力和细胞内比的分析表明,微生物细胞在振荡期间经历了不同的氧化还原变化,从氧化到降低状态,随着生长速率的降低。同时,C.Butyricum S3在振荡期间表现出周期性的形态变化,在生物质生产的槽中具有聚集体,细长形状,孢子或细胞碎片。转录组分析表明,当微生物细胞经历胁迫时上调多种基因的表达水平,包括用于丙酮酸代谢,乙酰-CoA转化为乙醛以及应激反应。本研究首次系统地研究了发生条件,代谢,形态和转录组方面的C.Butricum的振荡行为。基于实验结果,提出了两个假设来解释振荡行为:丙酮酸代谢紊乱,以及乙醛的过度积累。

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