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首页> 外文期刊>Applied and Environmental Microbiology >High-Temperature Ethanol Fermentation and Transformation with Linear DNA in the Thermotolerant Yeast Kluyveromyces marxianus DMKU3-1042
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High-Temperature Ethanol Fermentation and Transformation with Linear DNA in the Thermotolerant Yeast Kluyveromyces marxianus DMKU3-1042

机译:耐热酵母马克斯克鲁维酵母DMKU3-1042中的高温乙醇发酵和线性DNA转化。

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摘要

We demonstrate herein the ability of Kluyveromyces marxianus to be an efficient ethanol producer and host for expressing heterologous proteins as an alternative to Saccharomyces cerevisiae. Growth and ethanol production by strains of K. marxianus and S. cerevisiae were compared under the same conditions. K. marxianus DMKU3-1042 was found to be the most suitable strain for high-temperature growth and ethanol production at 45°C. This strain, but not S. cerevisiae, utilized cellobiose, xylose, xylitol, arabinose, glycerol, and lactose. To develop a K. marxianus DMKU3-1042 derivative strain suitable for genetic engineering, a uracil auxotroph was isolated and transformed with a linear DNA of the S. cerevisiae ScURA3 gene. Surprisingly, Ura+ transformants were easily obtained. By Southern blot hybridization, the linear ScURA3 DNA was found to have inserted randomly into the K. marxianus genome. Sequencing of one Lys? transformant confirmed the disruption of the KmLYS1 gene by the ScURA3 insertion. A PCR-amplified linear DNA lacking K. marxianus sequences but containing an Aspergillus α-amylase gene under the control of the ScTDH3 promoter together with an ScURA3 marker was subsequently used to transform K. marxianus DMKU3-1042 in order to obtain transformants expressing Aspergillus α-amylase. Our results demonstrate that K. marxianus DMKU3-1042 can be an alternative cost-effective bioethanol producer and a host for transformation with linear DNA by use of S. cerevisiae-based molecular genetic tools.
机译:我们在本文中证明了马克斯克鲁维酵母是一种有效的乙醇生产者和表达异源蛋白质作为酿酒酵母的替代物的宿主的能力。在相同条件下比较了马克斯克鲁维酵母和酿酒酵母菌株的生长和乙醇生产。发现马克斯克鲁维酵母DMKU3-1042是在45℃下高温生长和乙醇生产的最合适菌株。该菌株而不是酿酒酵母使用纤维二糖,木糖,木糖醇,阿拉伯糖,甘油和乳糖。为了开发适用于基因工程的马克斯克鲁维酵母DMKU3-1042衍生物菌株,分离尿嘧啶营养缺陷型并用酿酒酵母ScURA3基因的线性DNA转化。令人惊讶的是,Ura +转化子很容易获得。通过Southern印迹杂交,发现线性ScURA3 DNA随机插入到马克斯克鲁维酵母基因组中。一个赖氨酸的测序?转化子证实了ScURA3插入对KmLYS1基因的破坏。为了获得表达表达曲霉α的转化子,随后使用了PCR扩增的线性DNA,该线性DNA缺乏马克斯克鲁维酵母序列,但包含在ScTDH3启动子控制下的曲霉α-淀粉酶基因和ScURA3标记。 -淀粉酶。我们的结果表明,K。marxianus DMKU3-1042可以是一种替代的具有成本效益的生物乙醇生产商,并且可以通过使用基于酿酒酵母的分子遗传工具来进行线性DNA转化。

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