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Zymomonas mobilis Mutants with an Increased Rate of Alcohol Production

机译:运动发酵单胞菌突变体,其酒精产量增加

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Two new derivatives of Zymomonas mobilis CP4 were isolated from enrichment cultures after 18 months of serial transfers. These new strains were selected for the ability to grow and produce ethanol rapidly on transfer into fresh broth containing ethanol and allyl alcohol. Ethanol production by these strains was examined in batch fermentations under three sets of conditions. Both new derivatives were found to be superior to the parent strain CP4 with respect to the speed and completeness of glucose conversion to ethanol. The best of these, strain YO2, produced 9.5% ethanol (by weight; 11.9% by volume) after 17.4 h compared with 31.8 h for the parent strain CP4. The addition of 1 mM magnesium sulfate improved ethanol production in all three strains. Two factors contributed to the decrease in fermentation time required by the mutants: more rapid growth with minimal lag on subculturing and the retention of higher rates of ethanol production as fermentation proceeded. Alcohol dehydrogenase isozymes were altered in both new strains and no longer catalyzed the oxidation of allyl alcohol into the toxic product acrolein. This loss of allyl alcohol-oxidizing capacity is proposed as a primary factor contributing to increased allyl alcohol resistance, although it is likely that other mutations affecting glycolysis also contribute to the improvement in ethanol production.
机译:在连续转移18个月后,从富集培养物中分离出运动发酵单胞菌CP4的两种新衍生物。选择这些新菌株以具有在转移到含有乙醇和烯丙醇的新鲜肉汤中时快速生长和产生乙醇的能力。在三组条件下的分批发酵中检查了这些菌株产生的乙醇。发现两种新衍生物在葡萄糖转化为乙醇的速度和完整性方面均优于亲本菌株CP4。其中最好的是YO2菌株,在17.4小时后产生了9.5%的乙醇(重量; 11.9%的体积),而亲本菌株CP4则为31.8小时。添加1 mM硫酸镁可提高所有三个菌株的乙醇产量。有两个因素导致突变体所需的发酵时间减少:更快的生长和最小的继代培养延迟,以及随着发酵的进行保持较高的乙醇生产速率。两种新菌株中的酒精脱氢酶同工酶均发生了改变,不再催化烯丙醇氧化为有毒产物丙烯醛。烯丙醇氧化能力的这种损失被认为是引起烯丙醇抗性增加的主要因素,尽管影响糖酵解的其他突变也可能有助于乙醇生产的提高。

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