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Evaluation of an Ethanol-Tolerant Acetobacter pasteurianus Mutant Generated by a New Atmospheric and Room Temperature Plasma (ARTP)

机译:新的大气和室温等离子体(ARTP)产生的耐乙醇耐巴斯德醋杆菌突变体的评估

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A novel atmospheric and room temperature plasma (ARTP) which used helium as the working gas was employed to generate mutants of Acetobacter pasteurianus to improve the ethanol tolerance, which is a poorly characterized industrial strain. The best strain U1-1 was selected after mutagenesis. U1-1 could grow in liquid medium with 11 % ethanol. The production of acetic acid reached 32.83 ± 0.75 g/L, 385.7 % higher than that of the parent strain, meanwhile, U1-1 has stable production. Moreover, the cell membrane permeability were measured by PI assay and the results show that the cell membrane permeability of starting strain (AP-1.01) is significantly higher than U1-1. The better ethanol tolerance of strain U1-1 was maybe due to the decreased membrane permeability.
机译:使用氦气作为工作气体的新型常温和室温等离子体(ARTP)被用来产生巴斯德醋杆菌的突变体,以提高乙醇耐受性,这是一种表征较差的工业菌株。诱变后选择最佳菌株U1-1。 U1-1可以在含有11%乙醇的液体培养基中生长。乙酸产量达到32.83±0.75 g / L,比亲本菌株高385.7%,同时U1-1产量稳定。此外,通过PI测定法测量细胞膜渗透性,结果显示起始菌株(AP-1.01)的细胞膜渗透性显着高于U1-1。 U1-1菌株对乙醇的耐受性更好,可能是由于膜通透性降低所致。

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