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Enhanced 2,3-butanediol production by optimizing fermentation conditions and engineering Klebsiella oxytoca M1 through overexpression of acetoin reductase

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논문

Enhanced 2,3-butanediol production by optimizing fermentation conditions and engineering Klebsiella oxytoca M1 through overexpression of acetoin reductase

학술지

PloS one

저자명

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

초록

<P>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 <I>Klebsiella oxytoca</I> 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 <I>K</I>. <I>oxytoca</I> M1 revealed more than 8-fold higher reduction activity than oxidation activity, the engineered <I>K</I>. <I>oxytoca</I> M1 overexpressing the <I>budC</I> 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 <I>K</I>. <I>oxytoca</I> 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 <I>K</I>. <I>oxytoca</I> M1 revealing the nature of reductase.</P>

발행연도

2015

발행기관

Public Library of Science

라이선스

cc-by

ISSN

1932-6203

10

9

페이지

pp.e0138109

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논문; 2015-09-14

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