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Evaluating and engineering Saccharomyces cerevisiae promoters for increased amylase expression and bioethanol production from raw starch

机译:评估和工程酿酒酵母酿酒酵母促进剂增加淀粉酶的淀粉酶表达和生物乙醇生产

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Bioethanol production from starchy biomass via consolidated bioprocessing (CBP) will benefit from amylolytic Saccharomyces cerevisiae strains that produce high levels of recombinant amylases. This could be achieved by using strong promoters and modification thereof to improve gene expression under industrial conditions. This study evaluated eight endogenous S. cerevisiae promoters for the expression of a starch-hydrolysing alpha-amylase gene. A total of six of the native promoters were modified to contain a promoter-proximal intron directly downstream of the full-length promoter. Varying results were obtained; four native promoters outperformed the ENO1(P) benchmark under aerobic conditions and two promoters showed better expression under simulated CBP conditions. The addition of the RPS25A intron significantly improved the expression from most promoters, displaying increased transcript levels, protein concentrations and amylase activities. Raw starch-utilising strains were constructed through co-expression of selected alpha-amylase cassettes and a glucoamylase gene. The amylolytic strains displayed improved fermentation vigour on raw corn starch and broken rice, reaching 97% of the theoretical ethanol yield and converting 100% of the available carbon to products within 120 h in small-scale CBP fermentations on broken rice. This study showed that enhanced amylolytic strains for the conversion of raw starch to ethanol can be achieved through turnkey promoter selection and/or engineering.
机译:通过综合生物处理(CBP)从淀粉生物量产生的生物乙醇生产将受益于产生高水平的重组淀粉酶的淀粉醇类酿酒酵母菌菌株。这可以通过使用强大的启动子和改性来实现以改善工业条件下的基因表达。该研究评估了八个内源性S.酿酒酵母启动子,用于表达淀粉水解α-淀粉酶基因。修饰了总共六种本地启动子以含有直接在全长启动子下游的启动子 - 近端内含子。获得了不同的结果;四种本机启动子在有氧条件下表现出eNO1(P)基准,并且在模拟CBP条件下,两个启动子表现出更好的表达。 rps25a内含子的添加显着改善了大多数启动子的表达,显示出增加的转录水平,蛋白质浓度和淀粉酶活性。利用淀粉利用菌株通过选定的α-淀粉酶盒和葡糖淀粉酶基因的共同表达构建。淀粉溶解菌株在生玉米淀粉和破碎的水稻上显示出改善的发酵活力,达到理论乙醇产量的97%,并将100%的可用碳转化为120小时内的产物,在碎稻上的小规模CBP发酵。该研究表明,通过交钥匙启动子选择和/或工程,可以实现用于转化生淀粉对乙醇的增强的淀粉溶解菌株。

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