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首页> 外文期刊>Journal of Biotechnology >Propionic acid production in a plant fibrous-bed bioreactor with immobilized Propionibacteriumfreudenreichii CCTCC M207015
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Propionic acid production in a plant fibrous-bed bioreactor with immobilized Propionibacteriumfreudenreichii CCTCC M207015

机译:固定化弗氏丙酸杆菌CCTCC M207015的植物纤维床生物反应器中丙酸的生产

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摘要

A plant fibrous-bed bioreactor (PFB) was constructed for propionic acid production. Sugar cane bagasse was applied to the PFB as immobilizing material. Starting at a concentration of 80g/L of glucose, Propionibacterium freudenreichii CCTCC M207015 produced 41.20±2.03g/L of propionic acid at 108h in the PFB. The value was 21.07% higher than that produced by free cell fermentation. Intermittent and constant fed-batch fermentations were performed in the PFB to optimize the fermentation results. The highest propionic acid concentration obtained from constant fed-batch fermentation was 136.23 ± 6.77 g/L, which is 1.40 times higher than the highest concentration (97.00 g/L) previously reported. Scanning electron microscopy analysis showed that cells exhibited striking changes in morphology after PFB domestication. Compared with free cell fermentation, the fluxes of propionic acid synthesis and the pentose phosphate pathway in PFB fermentation increased by 84.65% and 227.62%, respectively. On the otherhand, a decrease in succinic and acetic acid fluxes was also observed. The metabolic flux distributions of the two PFB fed-batch fermentation strategies also demonstrated that constant fed-batch fermentation is a more beneficial method for the immobilized production of propionic acid. The relevant key enzyme activities and metabolic flux variations of the batch cultures showed good consistency. These results suggest that the PFB was effective in high-concentration propionic acid production.
机译:构建了用于丙酸生产的植物纤维床生物反应器(PFB)。将甘蔗渣作为固定材料应用于PFB。从80 g / L的葡萄糖浓度开始,弗氏丙酸杆菌CCTCC M207015在PFB中于108h产生41.20±2.03g / L的丙酸。该值比自由细胞发酵产生的值高21.07%。在PFB中进行间歇和恒定分批补料发酵以优化发酵结果。连续分批补料发酵获得的最高丙酸浓度为136.23±6.77 g / L,比先前报道的最高浓度(97.00 g / L)高1.40倍。扫描电子显微镜分析显示,PFB驯化后细胞表现出惊人的形态变化。与游离细胞发酵相比,PFB发酵中丙酸合成通量和磷酸戊糖途径的通量分别增加了84.65%和227.62%。另一方面,还观察到琥珀酸和乙酸通量降低。两种PFB分批补料发酵策略的代谢通量分布也表明,恒定分批补料发酵是固定化丙酸生产的更有益的方法。分批培养的相关关键酶活性和代谢通量变化显示出良好的一致性。这些结果表明,PFB在高浓度丙酸生产中是有效的。

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