Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing, 100084, China.
College of Food Science and Nutritional Engineering, China Agricultural University, Beijing, China.
Appl Microbiol Biotechnol. 2018 Aug;102(15):6753-6763. doi: 10.1007/s00253-018-9151-x. Epub 2018 Jun 18.
Butanol fermentation comprises two successive and distinct stages, namely acidogenesis and solventogenesis. The current lack of clarity regarding the underlying metabolic regulation of fermentation impedes improvements in biobutanol production. Here, a proteomics study was performed in the acidogenesis phase, the lowest pH point (transition point), and the solventogenesis phase in the butanol-producing symbiotic system TSH06. Forty-two Clostridium acetobutylicum proteins demonstrated differential expression levels at different stages. The protein level of butanol dehydrogenase increased in the solventogenesis phase, which was in accordance with the trend of butanol concentration. Stress proteins were upregulated either at the transition point or in the solventogenesis phase. The cell division-related protein Maf was upregulated at the transition point. We disrupted the maf gene in C. acetobutylicum TSH1, and Bacillus cereus TSH2 was added to form a new symbiotic system. TSH06△maf produced 13.9 ± 1.0 g/L butanol, which was higher than that of TSH06 (12.3 ± 0.9 g/L). Butanol was furtherly improved in fermentation at variable temperature with neutral red addition for both TSH06 and TSH06△maf. The butanol titer of the maf deletion strain was higher than that of the wild type, although the exact mechanism remains to be determined.
丁醇发酵包括两个连续且不同的阶段,即产酸阶段和溶剂生成阶段。目前,发酵过程中潜在代谢调控的不明确性阻碍了生物丁醇生产的改进。在这里,在产丁醇共生系统 TSH06 中进行了酸发酵阶段、最低 pH 值(过渡点)和溶剂生成阶段的蛋白质组学研究。在不同阶段,有 42 种丙酮丁醇梭菌蛋白表现出不同的表达水平。在溶剂生成阶段,丁醇脱氢酶的蛋白水平增加,这与丁醇浓度的趋势一致。在过渡点或溶剂生成阶段,应激蛋白被上调。与细胞分裂相关的蛋白 Maf 在过渡点上调。我们在 C. acetobutylicum TSH1 中敲除 maf 基因,并添加蜡状芽孢杆菌 TSH2 形成新的共生系统。TSH06△maf 产生 13.9±1.0 g/L 丁醇,高于 TSH06(12.3±0.9 g/L)。对于 TSH06 和 TSH06△maf,在添加中性红的变温发酵中进一步提高了丁醇产量。尽管确切的机制仍有待确定,但缺失菌株的丁醇产量高于野生型。