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Codon-optimized glucoamylase sGAI of Aspergillus awamori improves starch utilization in an industrial yeast

机译:泡盛曲霉的密码子优化葡糖淀粉酶sGAI可提高工业酵母中的淀粉利用率

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The development of a yeast that converts raw starch to ethanol in one step (called consolidated bioprocessing) could yield large cost reductions in the bioethanol industry. The aim of this study was to develop an efficient amylolytic Saccharomyces cerevisiae strain suitable for industrial bioethanol production. A native and codon-optimized variant of the Aspergillus awamori glucoamylase gene were expressed in the S. cerevisiae Y294 laboratory strain. Codon optimization resulted to be effective and the synthetic sequence sGAI was then δ-integrated into a S. cerevisiae strain with promising industrial fermentative traits. The mitotically stable recombinant strains showed high enzymatic capabilities both on soluble and raw starch (2425 and 1140 nkat/g dry cell weight, respectively). On raw corn starch, the engineered yeasts exhibited improved fermentative performance with an ethanol yield of 0.42 (g/g), corresponding to 75 % of the theoretical maximum yield.
机译:一步一步将生淀粉转化为乙醇的酵母(称为合并生物处理)的开发可以大大降低生物乙醇行业的成本。这项研究的目的是开发一种适用于工业生物乙醇生产的高效淀粉分解啤酒酵母菌株。在酿酒酵母Y294实验室菌株中表达了泡盛曲霉葡糖淀粉酶基因的天然和密码子优化变体。密码子优化结果是有效的,然后将合成序列sGAIδ整合到具有有前途的工业发酵性状的酿酒酵母菌株中。有丝分裂稳定的重组菌株对可溶性淀粉和粗淀粉均显示出高酶促能力(分别为2425和1140 nkat / g干细胞重量)。在未加工的玉米淀粉上,工程酵母表现出改善的发酵性能,乙醇收率为0.42(g / g),相当于理论最大收率的75%。

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