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利用核小体型酵母突变体生产乙醇。

Ethanol production using nuclear petite yeast mutants.

作者信息

Hutter A, Oliver S G

机构信息

Department of Biomolecular Sciences, UMIST, Manchester, UK.

出版信息

Appl Microbiol Biotechnol. 1998 May;49(5):511-6. doi: 10.1007/s002530051206.

Abstract

Two respiratory-deficient nuclear petites, FY23 delta pet191 and FY23 delta cox5a, of the yeast Saccharomyces cerevisiae were generated using polymerase-chain-reaction-mediated gene disruption, and their respective ethanol tolerance and productivity assessed and compared to those of the parental grande, FY23WT, and a mitochondrial petite, FY23 rho(0). Batch culture studies demonstrated that the parental strain was the most tolerant to exogenously added ethanol with an inhibition constant, Ki, of 2.3% (w/v) and a specific rate of ethanol production, qp, of 0.90 g ethanol g dry cells-1 h-1. FY23 rho(0) was the most sensitive to ethanol, exhibiting a Ki of 1.71% (w/v) and qp of 0.87 ethanol g dry cells-1 h-1. Analyses of the ethanol tolerance of the nuclear petites demonstrate that functional mitochondria are essential for maintaining tolerance to the toxin with the 100% respiratory-deficient nuclear petite, FY23 delta pet191, having a Ki of 2.14% (w/v) and the 85% respiratory-deficient FY23 delta cox5a, having a Ki of 1.94% (w/v). The retention of ethanol tolerance in the nuclear petites as compared to that of FY23 rho(0) is mirrored by the ethanol productivities of these nuclear mutants, being respectively 43% and 30% higher than that of the respiratory-sufficient parent strain. This demonstrates that, because of their respiratory deficiency, the nuclear petites are not subject to the Pasteur effect and so exhibit higher rates of fermentation.

摘要

利用聚合酶链反应介导的基因破坏技术构建了酿酒酵母的两个呼吸缺陷型核小菌落,即FY23 delta pet191和FY23 delta cox5a,并评估了它们各自的乙醇耐受性和生产力,并与亲本大菌落FY23WT以及线粒体小菌落FY23 rho(0)进行了比较。分批培养研究表明,亲本菌株对外源添加乙醇的耐受性最强,抑制常数Ki为2.3%(w/v),乙醇比生产速率qp为0.90 g乙醇·g干细胞-1·h-1。FY23 rho(0)对乙醇最敏感,Ki为1.71%(w/v),qp为0.87乙醇·g干细胞-1·h-1。对核小菌落乙醇耐受性的分析表明,功能性线粒体对于维持对毒素的耐受性至关重要,100%呼吸缺陷型核小菌落FY23 delta pet191的Ki为2.14%(w/v),85%呼吸缺陷型的FY23 delta cox5a的Ki为1.94%(w/v)。与FY23 rho(0)相比,核小菌落中乙醇耐受性的保留情况与这些核突变体的乙醇生产力情况一致,它们分别比呼吸充足的亲本菌株高43%和30%。这表明,由于其呼吸缺陷,核小菌落不受巴斯德效应的影响,因此表现出更高的发酵速率。

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