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Influence of nutritional and operational parameters on the production of butanol or 1,3-propanediol from glycerol by a mutant Clostridium pasteurianum

机译:营养和操作参数对突变型巴氏梭状芽胞杆菌从甘油生产丁醇或1,3-丙二醇的影响

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摘要

Butanol and 1,3-propanediol (1,3-PDO) are simultaneously produced by Clostridium pasteurianum from glycerol. In this study, random chemical mutagenesis of C. pasteurianum DSM 525 was conducted to improve its tolerance to butanol. Selected nutritional and operational parameters were evaluated to identify strategies that favour the production of each metabolite. From those experiments, it was possible to isolate cells able to produce 22% more butanol than the parent strain in serum bottles. The supplementation of the culture medium with 2 mg l1 of iron increased the production of butanol by 163%, and the optimum inoculum age was found to be 12 h. Overall, the experiments conducted in bioreactor led to lower butanol titers than in serum bottles, which is attributed to the higher pressure present in the bottles. At pH 6.0, N2 sparging notoriously favoured the production of biomass and 1,3-PDO, while a lower pH (5.0) led to a higher butanol yield, although growth was negatively affected. The results herein gathered allowed the identification of specific conditions that favour the production of either butanol or 1,3-PDO. Furthermore, it was found that N2 sparging is a suitable strategy to maximize the titer, yield and productivity of 1,3-PDO using C. pasteurianum.
机译:巴氏梭菌由甘油同时生产丁醇和1,3-丙二醇(1,3-PDO)。在这项研究中,进行了巴氏梭菌DSM 525的随机化学诱变,以提高其对丁醇的耐受性。对选定的营养和操作参数进行了评估,以确定有利于每种代谢产物生产的策略。从这些实验中,有可能在血清瓶中分离出比亲本菌株多生产22%丁醇的细胞。向培养基中添加2 mg l1的铁可使丁醇的产量提高163%,最佳接种年龄为12 h。总体而言,在生物反应器中进行的实验导致丁醇滴度低于血清瓶,这是由于瓶中存在较高的压力。在pH 6.0时,众所周知,N2的喷射有利于生物质和1,3-PDO的产生,而较低的pH(5.0)则导致较高的丁醇收率,尽管生长受到不利影响。本文收集的结果允许鉴定有利于丁醇或1,3-PDO生产的特定条件。此外,发现N 2喷射是使用巴氏梭菌使1,3-PDO的效价,产率和生产率最大化的合适策略。

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