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Enhanced Reducing Equivalent Generation for 1,3-Propanediol Production Through Cofermentation of Glycerol and Xylose by Klebsiella pneumoniae

机译:通过肺炎克雷伯菌共发酵甘油和木糖提高还原产生的1,3-丙二醇的当量

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摘要

1,3-Propanediol (1,3-PD) biosynthesis plays a key role in NADH consumption to regulate the intracellular reducing equivalent balance of Klebsiella pneumoniae. This study aimed to increase reducing equivalent for enhancing 1,3-PD production through cofermentation of glycerol and xylose. Adding xylose as cosubstrate resulted in more reducing equivalent generation and higher cell growth. In batch fermentation under microaerobic condition, the 1,3-PD concentration, conversion from glycerol, and biomass (OD600) relative to cofermentation were increased significantly by 9.1%, 20%, and 15.8%, respectively. The reducing equivalent (NADH) was increased by 1–3 mg/g (cell dry weight) compared with that from glycerol alone. Furthermore, 2,3-butannediol was also doubly produced as major byproduct. In fed-batch fermentation with xylose as cosubstrate, the final 1,3-PD concentration, conversion from glycerol, and productivity were improved evidently from 60.78 to 67.21 g/l, 0.52 to 0.63 mol/mol, and 1.64 to1.82 g/l/h, respectively.
机译:1,3-丙二醇(1,3-PD)的生物合成在NADH消耗中起着关键作用,以调节肺炎克雷伯菌的细胞内还原当量平衡。这项研究旨在通过甘油和木糖的共同发酵来增加还原当量,以提高1,3-PD的产量。添加木糖作为共底物导致更多的减少的等效生成和更高的细胞生长。在微需氧条件下的分批发酵中,相对于发酵,1,3-PD浓度,甘油转化率和生物量(OD 600 )分别显着增加了9.1%,20%和15.8%。 。与仅甘油相比,还原当量(NADH)增加了1-3 mg / g(细胞干重)。此外,还以主要副产物的形式双重生产了2,3-丁二醇。在以木糖为共底物的分批补料发酵中,最终的1,3-PD浓度,甘油转化率和生产率显着提高,分别从60.78至67.21 g / l,0.52至0.63 mol / mol和1.64至1.82 g / l。 l / h。

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