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通过优化发酵条件和对产酸克雷伯氏菌M1进行工程改造(过表达乙偶姻还原酶)提高2,3-丁二醇产量

Enhanced 2,3-Butanediol Production by Optimizing Fermentation Conditions and Engineering Klebsiella oxytoca M1 through Overexpression of Acetoin Reductase.

作者信息

Cho Sukhyeong, Kim Taeyeon, Woo Han Min, Lee Jinwon, Kim Yunje, Um Youngsoon

机构信息

Clean Energy Research Center, Korea Institute of Science and Technology (KIST), Seoul, Republic of Korea.

Clean Energy Research Center, Korea Institute of Science and Technology (KIST), Seoul, Republic of Korea; Interdisciplinary Program in Agriculture Biotechnology, College of Agriculture and Life science, Seoul National University, Seoul, Republic of Korea.

出版信息

PLoS One. 2015 Sep 14;10(9):e0138109. doi: 10.1371/journal.pone.0138109. eCollection 2015.

Abstract

Microbial production of 2,3-butanediol (2,3-BDO) has been attracting increasing interest because of its high value and various industrial applications. In this study, high production of 2,3-BDO using a previously isolated bacterium Klebsiella oxytoca M1 was carried out by optimizing fermentation conditions and overexpressing acetoin reductase (AR). Supplying complex nitrogen sources and using NaOH as a neutralizing agent were found to enhance specific production and yield of 2,3-BDO. In fed-batch fermentations, 2,3-BDO production increased with the agitation speed (109.6 g/L at 300 rpm vs. 118.5 g/L at 400 rpm) along with significantly reduced formation of by-product, but the yield at 400 rpm was lower than that at 300 rpm (0.40 g/g vs. 0.34 g/g) due to acetoin accumulation at 400 rpm. Because AR catalyzing both acetoin reduction and 2,3-BDO oxidation in K. oxytoca M1 revealed more than 8-fold higher reduction activity than oxidation activity, the engineered K. oxytoca M1 overexpressing the budC encoding AR was used in fed-batch fermentation. Finally, acetoin accumulation was significantly reduced by 43% and enhancement of 2,3-BDO concentration (142.5 g/L), yield (0.42 g/g) and productivity (1.47 g/L/h) was achieved compared to performance with the parent strain. This is by far the highest titer of 2,3-BDO achieved by K. oxytoca strains. This notable result could be obtained by finding favorable fermentation conditions for 2,3-BDO production as well as by utilizing the distinct characteristic of AR in K. oxytoca M1 revealing the nature of reductase.

摘要

由于2,3-丁二醇(2,3-BDO)具有高价值和多种工业应用,其微生物生产一直备受关注。在本研究中,通过优化发酵条件和过表达乙偶姻还原酶(AR),利用先前分离的产酸克雷伯菌M1实现了2,3-BDO的高产。研究发现,提供复合氮源并使用NaOH作为中和剂可提高2,3-BDO的比产量和产率。在补料分批发酵中,2,3-BDO产量随搅拌速度增加(300 rpm时为109.6 g/L,400 rpm时为118.5 g/L),副产物形成显著减少,但由于400 rpm时乙偶姻积累,400 rpm时的产率低于300 rpm时的产率(0.40 g/g对0.34 g/g)。由于AR在产酸克雷伯菌M1中催化乙偶姻还原和2,3-BDO氧化,其还原活性比氧化活性高8倍以上,因此在补料分批发酵中使用过表达编码AR的budC的工程化产酸克雷伯菌M1。最终,乙偶姻积累显著降低了43%,与亲本菌株相比,2,3-BDO浓度(142.5 g/L)、产率(0.42 g/g)和生产率(1.47 g/L/h)均有所提高。这是迄今为止产酸克雷伯菌菌株实现的最高2,3-BDO滴度。通过找到有利于2,3-BDO生产的发酵条件以及利用产酸克雷伯菌M1中AR的独特特性揭示还原酶的本质,可获得这一显著结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c310/4569360/ef745785cfd6/pone.0138109.g001.jpg

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