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Regulating feedback inhibition caused by the accumulated acid intermediates during acidogenic hydrogen production through feed replacement

机译:通过进料置换在产酸制氢过程中调节由积累的酸中间体引起的反馈抑制

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Accumulation of acid intermediates during fermentation causes feedback inhibition to the substrate/glucose flux through hydrogen (H_2) metabolism, especially at higher organic loads. Partial substrate replacement was studied in detail as a strategy to overcome this and the efficiency was compared among three experiments studied including control. After H_2 production stopped at 41st h, new substrate was replaced at a rate of 25% and 50% in two experiments, keeping the third as control. Substrate replacement resulted in dilution of accumulated acid intermediates causing reversal of feedback inhibition that helped in regaining H_2 production. However, the efficiency varied with the fraction of replacement, wherein 50% replacement showed higher H_2 production. Increased system buffering capacity after each replacement assured decrement of cytosolic pH stress on biocatalyst. Regain in the dehydrogenase activity to certain extent after each replacement supported the regain of H_2 production and were correlated well with the bio-electro kinetics studied.
机译:发酵过程中酸中间体的积累会导致通过氢(H_2)代谢对底物/葡萄糖通量的反馈抑制,尤其是在较高的有机负荷下。为了解决这个问题,详细研究了部分基板置换的策略,并在包括对照在内的三个实验中对效率进行了比较。在第41小时停止生产H_2后,在两个实验中以25%和50%的比率替换了新的底物,将第三个作为对照。底物置换导致稀释的酸中间体稀释,从而导致反馈抑制作用逆转,从而有助于恢复H_2的产生。然而,效率随置换分数的变化而变化,其中50%的置换显示较高的H_2产生。每次更换后增加的系统缓冲能力确保了生物催化剂上胞质pH压力的降低。每次置换后,脱氢酶活性的恢复在一定程度上支持了H_2的恢复,并且与所研究的生物电动力学密切相关。

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