Aalto University, School of Chemical Technology, Department of Biotechnology and Chemical Technology, P.O. Box 6100, FIN-02015, Finland.
VTT, Technical Research Centre of Finland Ltd, P.O. Box 1000, FI-02044 VTT Espoo, Finland.
Bioresour Technol. 2016 Nov;219:378-386. doi: 10.1016/j.biortech.2016.07.137. Epub 2016 Aug 3.
The metabolism of butanol producing bacteria Clostridium acetobutylicum was studied in chemostat with glucose limited conditions, butanol stimulus, and as a reference cultivation. COnstraint-Based Reconstruction and Analysis (COBRA) was applied using additional constraints from (13)C Metabolic Flux Analysis ((13)C-MFA) and experimental measurement results. A model consisting of 451 metabolites and 604 reactions was utilized in flux balance analysis (FBA). The stringency of the flux spaces considering different optimization objectives, i.e. growth rate maximization, ATP maintenance, and NADH/NADPH formation, for flux variance analysis (FVA) was studied in the different modelled conditions. Also a previously uncharacterized exopolysaccharide (EPS) produced by C. acetobutylicum was characterized on monosaccharide level. The major monosaccharide components of the EPS were 40n-% rhamnose, 34n-% glucose, 13n-% mannose, 10n-% galactose, and 2n-% arabinose. The EPS was studied to have butanol adsorbing property, 70(butanol)mg(EPS)g(-1) at 37°C.
利用恒化器,在葡萄糖限制条件下,以丁醇刺激和参照培养方式,研究了生产丁醇的细菌丙酮丁醇梭菌的代谢情况。利用来自(13)C 代谢通量分析((13)C-MFA)和实验测量结果的附加约束,采用基于约束的重构和分析(COBRA)。通量平衡分析(FBA)中使用了由 451 种代谢物和 604 种反应组成的模型。研究了不同建模条件下,不同优化目标(即最大生长速率、ATP 维持和 NADH/NADPH 形成)下考虑通量变化的通量空间的严格性,用于通量方差分析(FVA)。此外,还对丙酮丁醇梭菌产生的一种以前未表征的胞外多糖(EPS)进行了单糖水平的表征。EPS 的主要单糖组分为 40n-%鼠李糖、34n-%葡萄糖、13n-%甘露糖、10n-%半乳糖和 2n-%阿拉伯糖。研究了 EPS 的丁醇吸附特性,在 37°C 下为 70(butanol)mg(EPS)g(-1)。