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Combination of RNA sequencing and metabolite data to elucidate improved toxic compound tolerance and butanol fermentation of Clostridium acetobutylicum from wheat straw hydrolysate by supplying sodium sulfide

机译:结合RNA测序和代谢产物数据,通过提供硫化钠,从小麦秸秆水解物中提取丙酮丁醇梭菌,提高了毒性化合物的耐受性和丁醇发酵

摘要

Sodium sulfide (SS) was added to the non-detoxified wheat straw hydrolysate for ABE fermentation by Clostridium acetobutylicum CICC8012. Biochemical measurements demonstrated that supplementation with SS promoted earlier and enhanced conversion of acid to ABE and led to a 27.48% improvement in sugar consumption, a 20.48% improvement in the sugar-based ABE yield, a 47.63% improvement in the butanol titer, and a 53.50% improvement in the ABE concentration. The response of C. acetobutylicum CICC8012 at the mRNA level was examined by a transcriptional analysis performed with RNA sequencing. The expression of genes involved in the membrane transport of carbohydrates, glycolysis, and ABE formation increased following SS-supplemented fermentation, whereas the expression of genes encoding enzymes involved in acid formation decreased, which indicates that supplemental SS affected the central fermentative pathway, down-regulated the metabolic flux toward the acid formation branches, and up-regulated the metabolic flux toward the ABE formation branches. (C) 2015 Elsevier Ltd. All rights reserved.
机译:将硫化钠(SS)添加到未解毒的小麦秸秆水解物中,用丙酮丁醇梭菌CICC8012进行ABE发酵。生化测量结果表明,SS的添加促进了酸向ABE的更早转化并增强了转化,并导致糖消耗量降低了27.48%,糖基ABE产量提高了20.48%,丁醇滴度提高了47.63%,并且ABE浓度提高53.50%。丙酮丁醇梭菌CICC8012在mRNA水平上的反应通过用RNA测序进行的转录分析来检查。 SS补充发酵后,与碳水化合物的膜运输,糖酵解和ABE形成有关的基因表达增加,而编码与酸形成有关的酶的基因表达减少,这表明补充SS影响了中央发酵途径,调节向酸形成分支的代谢通量,并向上调节向ABE形成分支的代谢通量。 (C)2015 Elsevier Ltd.保留所有权利。

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