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Novel strategy for yeast construction using δ-integration and cell fusion to efficiently produce ethanol from raw starch

机译:利用δ整合和细胞融合技术从原淀粉高效生产乙醇的酵母构建新策略

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We developed a novel strategy for constructing yeast to improve levels of amylase gene expression and the practical potential of yeast by combining δ-integration and polyploidization through cell fusion. Streptococcus bovis α-amylase and Rhizopus oryzae glucoamylase/α-agglutinin fusion protein genes were integrated into haploid yeast strains. Diploid strains were constructed from these haploid strains by mating, and then a tetraploid strain was constructed by cell fusion. The α-amylase and glucoamylase activities of the tetraploid strain were increased up to 1.5- and tenfold, respectively, compared with the parental strain. The diploid and tetraploid strains proliferated faster, yielded more cells, and fermented glucose more effectively than the haploid strain. Ethanol productivity from raw starch was improved with increased ploidy; the tetraploid strain consumed 150 g/l of raw starch and produced 70 g/l of ethanol after 72 h of fermentation. Our strategy for constructing yeasts resulted in the simultaneous overexpression of genes integrated into the genome and improvements in the practical potential of yeasts. Keywords Cell fusion - δ-integration - Ethanol fermentation - Raw starch
机译:我们通过结合δ整合和多倍体化(通过细胞融合),开发了一种构建酵母以提高淀粉酶基因表达水平和酵母实际潜力的新型策略。将牛链球菌α-淀粉酶和米根霉葡糖淀粉酶/α-凝集素融合蛋白基因整合到单倍体酵母菌株中。通过交配从这些单倍体菌株构建二倍体菌株,然后通过细胞融合构建四倍体菌株。与亲本菌株相比,四倍体菌株的α-淀粉酶和葡糖淀粉酶活性分别提高了1.5倍和10倍。与单倍体菌​​株相比,二倍体和四倍体菌株增殖更快,产生更多的细胞并更有效地发酵了葡萄糖。倍性提高,提高了生淀粉的乙醇生产率。四倍体菌株在发酵72小时后消耗了150 g / l的生淀粉,并产生了70 g / l的乙醇。我们构建酵母的策略导致整合到基因组中的基因同时过度表达,并提高了酵母的实际潜力。关键词细胞融合-δ整合-乙醇发酵-生淀粉

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