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Efficient L-valine production using systematically metabolic engineered Klebsiella oxytoca

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논문

Efficient L-valine production using systematically metabolic engineered Klebsiella oxytoca

학술지

Bioresource technology : biomass, bioenergy, biowastes, conversion technologies, biotransformations, production technologies

저자명

Cao, Menghao; Sun, Weikang; Wang, Shuo; Di, Haiyan; Du, Qihang; Tan, Xiaoxu; Meng, Wensi; Kang, Zhaoqi; Liu, Yidong; Xu, Ping; Lü , Chuanjuan; Ma, Cuiqing; Gao, Chao

초록

L-Valine, a branched-chain amino acid with diversified applications, is biosynthesized with α-acetolactate as the key precursor. In this study, the metabolic flux in Klebsiella oxytoca PDL-K5, a Risk Group 1 organism producing 2,3-butanediol as the major fermentation product, was rearranged to L-valine production by introducing exogenous L-valine biosynthesis pathway and blocking endogenous 2,3-butanediol generation at the metabolic branch point α-acetolactate. After further enhancing L-valine efflux, strengthening pyruvate polymerization and selecting of key enzymes for L-valine synthesis, a plasmid-free K. oxytoca strain VKO-9 was obtained. Fed-batch fermentation with K. oxytoca VKO-9 in a 7.5 L fermenter generated 122 g/L L-valine with a yield of 0.587 g/g in 56 h. In addition, repeated fed-batch fermentation was conducted to prevent precipitation of L-valine due to oversaturation. The average concentration, yield, and productivity of produced L-valine in three cycles of repeated fed-batch fermentation were 81.3 g/L, 0.599 g/g, and 3.39 g/L/h, respectively.

발행연도

2024

발행기관

Elsevier

ISSN

0960-8524

395

페이지

pp.130403

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1 2023-12-11

논문; 2024-03-01

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