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Quantitative assessment of DNA damage in the industrial ethanol production strain Saccharomyces cerevisiae PE-2

机译:在工业乙醇生产菌株酿酒酵母酿酒酵母PE-2中的定量评估DNA损伤

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摘要

Lignocellulosic hydrolysates remain one of the most abundantly used substrates for the sustainable production of second generation fuels and chemicals with Saccharomyces cerevisiae. Nevertheless, fermentation inhibitors such as acetic acid, furfural and hydroxymethylfurfural are formed during the process and can lead to slow or stuck fermentations and/or act as genotoxic agents leading to production strain genetic instability. We have developed a novel dominant deletion (DEL) cassette assay for quantification of DNA damage in both wild-type and industrial yeast strains. Using this assay, the ethanol production strain S. cerevisiae PE-2 was shown to be more resistant to hydrogen peroxide and furfural than the laboratory DEL strain RS112. Indeed, the PE-2 strain also showed a lower tendency for recombination, consistent with a more efficient DNA protection. The dominant DEL assay presented herein should prove to be a useful tool in the selection of robust yeast strains and process conditions for second generation feedstock fermentations.
机译:木质纤维素水解产物仍然是用于可持续生产第二代燃料和酿酒酵母的化学品的最丰富的基材之一。然而,在该过程中形成发酵抑制剂,例如乙酸,糠醛和羟甲基甲基糠醛,并且可以导致慢或卡住的发酵和/或作为遗传毒剂,导致产生应变遗传遗传不稳定。我们开发了一种新的显性缺失(Del)盒式磁带测定,用于定量野生型和工业酵母菌株中的DNA损伤。使用该测定法,显示乙醇产量菌株S.Cerevisiae PE-2对过氧化氢和糠醛比实验室Del菌株Rs112更抗腐蚀。实际上,PE-2菌株还表现出重组的较低趋势,与更有效的DNA保护一致。本文提出的显性Del测定应证明是选择鲁棒酵母菌株以及用于第二代原料发酵的工艺条件的有用工具。

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