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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Metabolic engineering of Clostridium tyrobutyricum for enhanced butyric acid production from undetoxified corncob acid hydrolysate
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Metabolic engineering of Clostridium tyrobutyricum for enhanced butyric acid production from undetoxified corncob acid hydrolysate

机译:酪蛋白酸梭菌的代谢工程从未溶解的玉米饼水解产物增强丁酸产生

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摘要

Resistance to furan derivatives and phenolic compounds plays an important role in the use of lignocellulosic biomass for biological production of chemicals and fuels. This study confirmed that expression of short-chain dehydrogenase/reductase (SDR) from Clostridium beijerinckii NCIMB 8052 significantly improved the tolerance of C. tyrobutyricum to furfural due to the enhanced activity for furfural reduction. And on this basis, co-expression of SDR and heat shock chaperones GroESL could simultaneously enhance the tolerance of C. tyrobutyricum to furan derivatives and phenolic compounds, which were the main inhibitors presented in dilute-acid lignocellulosic hydrolysates. Consequently, the recombinant strain ATCC 25755/sdr + groESL exhibited good performance in butyric acid production with corncob acid hydrolysate as the substrate. Batch fermentation in bioreactor showed that the butyrate produced by ATCC 25755/sdr + groESL was 32.8 g/L, increased by 28.1% as compared with the wild-type strain. Meanwhile, the butyrate productivity increased from 0.19 g/L.h to 0.29 g/L.h.
机译:对呋喃衍生物和酚类化合物的抗性在使用木质纤维素生物量以用于生物生产化学品和燃料中的重要作用。本研究证实,由于糠醛减少的增强活性,甲状腺蛋白CcKIIN 8052的短链脱氢酶/还原酶(SDR)的表达显着提高了C.酪蛋白与糠醛的耐受性。在此基础上,SDR和热休克伴侣烯醇的共同表达可以同时增强C.酪蛋白酪蛋白与呋喃衍生物和酚类化合物的耐受性,其是稀酸木质纤维素水解产物中呈递的主要抑制剂。因此,重组菌株ATCC 25755 / SDR + GOOSL在丁酸生产中表现出良好的性能,用玉米菌酸水解产物作为基材。生物反应器中的分批发酵表明,与野生型菌株相比,ATCC 25755 / SDR + GROESL产生的丁酸盐为32.8克/升,增加28.1%。同时,丁酸盐生产率从0.19g / l.h增加到0.29g / l.h。

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