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Random UV-C mutagenesis of Scheffersomyces (formerly Pichia) stipitis NRRL Y-7124 to improve anaerobic growth on lignocellulosic sugars

机译:裂殖酵母(原毕赤酵母)NRRL Y-7124的随机UV-C诱变以改善木质纤维素糖上的厌氧生长

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摘要

Scheffersomyces (formerly Pichia) stipitis NRRL Y-7124 was mutagenized using UV-C irradiation to produce yeast strains for anaerobic conversion of lignocellulosic sugars to ethanol. UV-C irradiation potentially produces large numbers of random mutations broadly and uniformly over the whole genome to generate unique strains. Wild-type cultures of S. stipitis NRRL Y-7124 were subjected to UV-C (234 nm) irradiation targeted at approximately 40% cell survival. When surviving cells were selected in sufficient numbers via automated plating strategies and cultured anaerobically on xylose medium for 5 months at 28°C, five novel mutagenized S. stipitis strains were obtained. Variable number tandem repeat analysis revealed that mutations had occurred in the genome, which may have produced genes that allowed the anaerobic utilization of xylose. The mutagenized strains were capable of growing anaerobically on xylose/glucose substrate with higher ethanol production during 250- to 500-h growth than a Saccharomyces cerevisiae yeast strain that is the standard for industrial fuel ethanol production. The S. stipitis strains resulting from this intense multigene mutagenesis strategy have potential application in industrial fuel ethanol production from lignocellulosic hydrolysates.
机译:使用UV-C辐射诱变舍弗氏菌(以前称为毕赤酵母)的NRRL Y-7124诱变剂,以产生用于将木质纤维素糖厌氧转化为乙醇的酵母菌株。 UV-C辐射可能会在整个基因组上广泛且均匀地产生大量随机突变,从而产生独特的菌株。对野生链霉菌NRRL Y-7124的野生型培养物进行UV-C(234 nm)照射,靶向细胞存活率约为40%。当通过自动接种策略选择足够数量的存活细胞并在木糖培养基上厌氧培养28个月达5个月时,获得了五种新颖诱变的链球菌。可变数目串联重复分析表明,基因组中发生了突变,这可能产生了允许厌氧利用木糖的基因。诱变的菌株能够在木糖/葡萄糖底物上厌氧生长,在250至500小时的生长过程中,其乙醇产量要高于酿酒酵母酵母菌株,后者是工业燃料乙醇生产的标准品。由这种强烈的多基因诱变策略产生的S.stipitis菌株在木质纤维素水解产物的工业燃料乙醇生产中具有潜在的应用。

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