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产溶剂梭菌“拉氏梭菌”将n-脂肪酸还原为伯醇的转化效率提高。

Improved conversion efficiencies for n-fatty acid reduction to primary alcohols by the solventogenic acetogen "Clostridium ragsdalei".

作者信息

Isom Catherine E, Nanny Mark A, Tanner Ralph S

机构信息

Department of Microbiology and Plant Biology, University of Oklahoma, Norman, OK, 73019, USA,

出版信息

J Ind Microbiol Biotechnol. 2015 Jan;42(1):29-38. doi: 10.1007/s10295-014-1543-z. Epub 2014 Nov 20.

Abstract

"Clostridium ragsdalei" is an acetogen that ferments synthesis gas (syngas, predominantly H2:CO2:CO) to ethanol, acetate, and cell mass. Previous research showed that C. ragsdalei could also convert propionic acid to 1-propanol and butyric acid to 1-butanol at conversion efficiencies of 72.3 and 21.0 percent, respectively. Our research showed that C. ragsdalei can also reduce pentanoic and hexanoic acid to the corresponding primary alcohols. This reduction occurred independently of growth in an optimized medium with headspace gas exchange (vented and gassed with CO) every 48 h. Under these conditions, conversion efficiencies increased to 97 and 100 % for propionic and butyric acid, respectively. The conversion efficiencies for pentanoic and hexanoic acid to 1-pentanol and 1-hexanol, respectively, were 82 and 62 %. C. ragsdalei also reduced acetone to 2-propanol at a conversion efficiency of 100 %. Further, we showed that C. ragsdalei uses an aldehyde oxidoreductase-like enzyme to reduce n-fatty acids to the aldehyde intermediates in a reaction that requires ferredoxin and exogenous CO.

摘要

“拉格斯代尔梭菌”是一种产乙酸菌,可将合成气(合成气,主要为H₂:CO₂:CO)发酵生成乙醇、乙酸和细胞物质。先前的研究表明,拉格斯代尔梭菌还能将丙酸转化为1-丙醇,将丁酸转化为1-丁醇,转化效率分别为72.3%和21.0%。我们的研究表明,拉格斯代尔梭菌还能将戊酸和己酸还原为相应的伯醇。这种还原反应在每48小时进行一次顶空气体交换(用CO通气和充气)的优化培养基中独立于生长过程发生。在这些条件下,丙酸和丁酸的转化效率分别提高到97%和100%。戊酸和己酸分别转化为1-戊醇和1-己醇的转化效率分别为82%和62%。拉格斯代尔梭菌还能将丙酮还原为2-丙醇,转化效率为100%。此外,我们发现拉格斯代尔梭菌利用一种类似醛氧化还原酶的酶,在需要铁氧化还原蛋白和外源CO的反应中将n-脂肪酸还原为醛中间体。

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