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Increase in Bioethanol Production by Random UV Mutagenesis of S.cerevisiae and by Addition of Zinc Ions in the Alcohol Production Media

机译:通过随机紫外线诱变进行生物乙醇产生的增加,并通过加入酒精生产介质中的锌离子

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Bioethanol is regarded as one of most demanding fuel as an alternative to fossil fuel as it is renewable and environment friendly. In industry, bioehanol is produced usually by using molasses as the carbon source with the help of S.cerevisiae. But due to steep hike in the prices of molasses, the production cost of biotehanol is on constant rise. Therefore, there is urgent need to evolve alternative strategy which can lower down the production cost of bioehanol.This study is directed towards finding out some rationale approaches which can increase the production rate of biotehanol, thereby decreasing the production cost.We have applied random mutagenesis approach by UV exposure for strain improvement of existing strain which is not alcohol tolerant. 25 minutes UV exposure to existing strain produced a mutant strain which produced 12% (v/v) alcohol in fermentor whereas WT S. cerevisiae produced only 8% (v/v).We have also attempted to register increase in alcohol production by adding of Zinc ion in alcohol producing media. It was standardized that 20mM Zinc sulphate addition to YEPD broth resulted in maximum increase in alcohol production in shake flask.When 20mM Zinc sulphate was added to fermentation broth in 2 litre laboratory based fermentor, it resulted in 13.2% (v/v) alcohol production as compared to 8% (v/v) alcohol production by WT strain. There was also 3.2 fold increases in alcohol dehydrogenase activity when it was measured in presence of 20 mM zinc sulphate as compared to control (ADH activity measured using same cell lysate in the absence of zinc sulphate).
机译:生物乙醇被认为是最苛刻的燃料之一,作为化石燃料的替代品,因为它是可再生和环保的。在工业中,通常通过S.Cerevisiae使用糖蜜作为碳源生产生物藻。但由于糖浆价格陡峭,生物肝的生产成本是持续升高。因此,迫切需要演化的替代策略,可以降低生物藻醇的生产成本。本研究旨在找出一些可以提高生物藻醇的生产率的一些理由方法,从而降低了生产成本。我们施加了随机诱变紫外线暴露对不含醇耐受的现有菌株的应变改善的方法。紫外线暴露于现有菌株的25分钟产生突变菌株在发酵罐中产生12%(v / v)醇,而WT S.酿酒酵母仅生产8%(v / v)。我们还试图通过加入注册酒精生产增加锌离子在醇生产培养基中。它标准化了20mm硫酸锌加入Yepd汤中的溶液生产中的最大增加导致摇瓶中的醇生产增加。在2升实验室发酵罐中加入20mm硫酸锌在发酵液中,导致13.2%(v / v)酒精生产与WT菌株的8%(v / v)醇产生相比。当与对照相比,在存在20mM硫酸锌的存在时,醇脱氢酶活性也存在3.2倍的增加(使用相同的细胞裂解物在不存在硫酸锌的情况下测量的ADH活性)。

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