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Expression of 17 Genes in Clostridium thermocellum ATCC 27405 during Fermentation of Cellulose or Cellobiose in Continuous Culture

机译:连续培养纤维素或纤维二糖发酵过程中热纤梭菌ATCC 27405中17个基因的表达

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摘要

Clostridium thermocellum is a thermophilic, anaerobic, cellulolytic bacterium that produces ethanol and acetic acid as major fermentation end products. The effect of growth conditions on gene expression in C. thermocellum ATCC 27405 was studied using cells grown in continuous culture under cellobiose or cellulose limitation over a ∼10-fold range of dilution rates (0.013 to 0.16 h−1). Fermentation product distribution displayed similar patterns in cellobiose- or cellulose-grown cultures, including substantial shifts in the proportion of ethanol and acetic acid with changes in growth rate. Expression of 17 genes involved or potentially involved in cellulose degradation, intracellular phosphorylation, catabolite repression, and fermentation end product formation was quantified by real-time PCR, with normalization to two calibrator genes (recA and the 16S rRNA gene) to determine relative expression. Thirteen genes displayed modest (fivefold or less) differences in expression with growth rate or substrate type: sdbA (cellulosomal scaffoldin-dockerin binding protein), cdp (cellodextrin phosphorylase), cbp (cellobiose phosphorylase), hydA (hydrogenase), ldh (lactate dehydrogenase), ack (acetate kinase), one putative type IV alcohol dehydrogenase, two putative cyclic AMP binding proteins, three putative Hpr-like proteins, and a putative Hpr serine kinase. By contrast, four genes displayed >10-fold-reduced levels of expression when grown on cellobiose at dilution rates of >0.05 h−1: cipA (cellulosomal scaffolding protein), celS (exoglucanase), manA (mannanase), and a second type IV alcohol dehydrogenase. The data suggest that at least some cellulosomal components are transcriptionally regulated but that differences in expression with growth rate or among substrates do not directly account for observed changes in fermentation end product distribution.
机译:热纤梭菌(Clostridium thermocellum)是一种嗜热,厌氧的纤维素分解细菌,其产生乙醇和乙酸作为主要发酵终产物。研究了生长条件对热纤梭菌ATCC 27405基因表达的影响,该研究使用了在纤维二糖或纤维素酶限制下连续培养的细胞,稀释率约为0.01-0.16 h-1到10倍。发酵产物的分布在纤维二糖或纤维素生长的培养物中显示出相似的模式,包括随着生长速率的变化,乙醇和乙酸的比例发生显着变化。通过实时PCR对涉及或潜在参与纤维素降解,细胞内磷酸化,分解代谢物阻遏和发酵终产物形成的17个基因的表达进行定量,并对两个校准基因(recA和16S rRNA基因)进行归一化以确定相对表达。十三个基因在表达上随生长速率或底物类型表现出适度(五倍以下)的差异:sdbA(纤维素骨架支架蛋白-dockerin结合蛋白),cdp(纤维糊精磷酸化酶),cbp(纤维二糖磷酸化酶),hydA(氢化酶),ldh(乳酸脱氢酶) ),ack(乙酸激酶),一种推定的IV型酒精脱氢酶,两种推定的环状AMP结合蛋白,三种推定的Hpr-like蛋白和一种推定的Hpr丝氨酸激酶。相比之下,当在纤维二糖上以> 0.05 h-1的稀释率生长时,四个基因的表达水平降低了> 10倍:cipA(纤维素支架蛋白),celS(外切葡聚糖酶),manA(甘露聚糖酶)和第二种类型IV酒精脱氢酶。数据表明,至少一些纤维素组分被转录调节,但是表达随生长速率或底物之间的差异并不能直接解释发酵终产物分布中观察到的变化。

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