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首页> 外文期刊>Biotechnology for Biofuels >A newly isolated Bacillus licheniformis strain thermophilically produces 2,3-butanediol, a platform and fuel bio-chemical
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A newly isolated Bacillus licheniformis strain thermophilically produces 2,3-butanediol, a platform and fuel bio-chemical

机译:新分离的地衣芽孢杆菌嗜热菌株产生2,3-丁二醇,平台和生物化学燃料

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Background 2,3-Butanediol (2,3-BD), a platform and fuel bio-chemical, can be efficiently produced by Klebsiella pneumonia, K. oxytoca, and Serratia marcescens. However, these strains are opportunistic pathogens and not favorable for industrial application. Although some generally regarded as safe (GRAS) microorganisms have been isolated in recent years, there is still a demand for safe 2,3-BD producing strains with high productivity and yield under thermophilic fermentation. Results Bacillus licheniformis strain 10-1-A was newly isolated for 2,3-BD production. The optimum temperature and medium pH were 50°C and pH 7.0 for 2,3-BD production by strain 10-1-A. The medium composition was optimized through Plackett–Burman design and response surface methodology techniques. With a two-stage agitation speed control strategy, 115.7 g/L of 2,3-BD was obtained from glucose by fed-batch fermentation in a 5-L bioreactor with a high productivity (2.4 g/L·h) and yield (94% of its theoretical value). The 2,3-BD produced by strain 10-1-A comprises (2R,3R)-2,3-BD and meso-2,3-BD with a ratio of nearly 1:1. The bdh and gdh genes encoding meso-2,3-butanediol dehydrogenase (meso-BDH) and glycerol dehydrogenase (GDH) of strain 10-1-A were expressed in Escherichia coli and the proteins were purified. meso-2,3-BD and (2R,3R)-2,3-BD were transformed from racemic acetoin by meso-BDH and GDH with NADH, respectively. Conclusions Compared with the reported GRAS 2,3-BD producers, B. licheniformis 10-1-A could thermophilically produce 2,3-BD with a high concentration, productivity and yield. Thus, the newly isolated GRAS strain 10-1-A might be a promising strain for industrial production of 2,3-BD. Two key enzymes for meso-2,3-BD and (2R,3R)-2,3-BD production were purified and further studied, and this might be helpful to understand the mechanism for 2,3-BD stereoisomers forming in B. licheniformis.
机译:背景2,3-丁二醇(2,3-BD)是一种平台和生物化学燃料,可通过肺炎克雷伯菌,产氧克雷伯氏菌和粘质沙雷氏菌高效生产。但是,这些菌株是机会病原体,不利于工业应用。尽管近年来已分离出一些通常被认为是安全的(GRAS)微生物,但仍需要在高温发酵下具有高生产率和高产量的安全的2,3-BD生产菌株。结果新分离出地衣芽孢杆菌菌株10-1-A,用于生产2,3-BD。菌株10-1-A产生2,3-BD的最佳温度和培养基pH为50°C和pH 7.0。通过Plackett-Burman设计和响应面方法技术优化了培养基成分。采用两阶段搅拌速度控制策略,在5-L生物反应器中通过分批补料发酵从葡萄糖中获得115.7 g / L的2,3-BD,具有高生产率(2.4 g / L·h)和产量(其理论值的94%)。由菌株10-1-A产生的2,3-BD包括(2R,3R)-2,3-BD和内消旋2,3-BD,其比例接近1∶1。在大肠杆菌中表达了菌株10-1-A的编码meso-2,3-丁二醇脱氢酶(meso-BDH)和甘油脱氢酶(GDH)的bdh和gdh基因,并纯化了蛋白质。外消旋乙酰辅酶分别通过内消旋-BDH和GDH与NADH从外消旋乙酰辅酶转化meso-2,3-BD和(2R,3R)-2,3-BD。结论与报道的GRAS 2,3-BD生产者相比,地衣芽孢杆菌10-1-A可以高浓度,高生产率和高产热性生产2,3-BD。因此,新分离的GRAS菌株10-1-A可能是工业生产2,3-BD的有希望的菌株。纯化并进一步研究了用于生成meso-2,3-BD和(2R,3R)-2,3-BD的两种关键酶,这可能有助于理解B中2,3-BD立体异构体形成的机理。地衣形。

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