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[米根霉低乙醇脱氢酶活性突变体的筛选及Zn2+和Mg2+的调控]

[Screening of a low alcohol dehydrogenase activity mutant of rhizopus oryzae and the regulation of Zn2+ and Mg2+].

作者信息

Pan Li-jun, Fu Ping, Zheng Zhi, Luo Shui-zhong, Jiang Shao-tong

机构信息

School of Biotechnology and Food Engineering, Hefei University of Technology, Hefei 230009, China.

出版信息

Wei Sheng Wu Xue Bao. 2006 Aug;46(4):586-90.

Abstract

Ethanol is the main by-product in the fermentation broth of Rhizopus oryzae As3.3461 for the production of high-optical purity L-lactic acid. Alcohol Dehydrogenase (ADH) is the branch pathway enzyme that catalyzes the transformation of ethanol from pyruvate in Rhizopus oryzae, which decreases the conversion rate of glucose to L-lactic acid. Thus, screening the mutants with lower ADH activity may increase lactate production dramatically. In present study, Rhizopus oryzae As3.3461 was mutated with N-methyl-N'-nitro-N-nitrosoguanidine (NTG), and 21 mutants which showed lower ADH activity were isolated with selective medium of Yeast-Peptone-Dextrose (YPD) containing 0.6% allyl alcohol (V/V). Compared with other mutants, the 12th mutant strain (named as HBF-12) shows the highest conversion rate of L-lactic acid. By contrast with Rhizopus oryzae As3.3461, the parent strain, the ethanol production and the ADH activity of HBF-12 decrease 73.6% and 76%, respectively. Whereas, the L-lactic acid production and the LDH activity of HBF-12 increase 41.2% and 19.6% than those of the parent strain, respectively. The activities of ADH and LDH of HBF-12 were regulated by Zn2+ and Mg2+, but showed opposite effects. Added with Zn2+ to the concentration of 0.01% improves the ADH activity dramatically, but inhibits the activity of LDH. By contraries, added with Mg2+ improves the LDH activity markedly, but inhibits the ADH activity slightly. In fermentation experiment, the addition of Zn2+ and Mg2+ show different effects on the accumulation of ethanol, L-lactic acid and the biomass in mutant HBF-12. When improve the concentration of Zn2+, the accumulation of L-lactic acid and the biomass show the decreased trend, but the production of ethanol show positive effect. With the improvement of the concentration of Mg2+, the production of lactic acid and biomass increase markedly, but no effect on the production of ethanol. When ferment under the concentrations of Zn2+ 0.01% and Mg2+ 0.04% in fermentation medium, the lactate production of HBF-12 reached the highest level, 96.21 g/L.

摘要

乙醇是米根霉As3.3461发酵生产高光学纯度L-乳酸的主要副产物。乙醇脱氢酶(ADH)是米根霉中催化丙酮酸转化为乙醇的分支途径酶,它降低了葡萄糖向L-乳酸的转化率。因此,筛选ADH活性较低的突变体可能会显著提高乳酸产量。在本研究中,用N-甲基-N'-硝基-N-亚硝基胍(NTG)对米根霉As3.3461进行诱变,并在含有0.6%烯丙醇(V/V)的酵母蛋白胨葡萄糖(YPD)选择培养基上分离出21株ADH活性较低的突变体。与其他突变体相比,第12号突变菌株(命名为HBF-12)的L-乳酸转化率最高。与亲本菌株米根霉As3.3461相比,HBF-12的乙醇产量和ADH活性分别降低了73.6%和76%。而HBF-12的L-乳酸产量和LDH活性分别比亲本菌株提高了41.2%和19.6%。HBF-12的ADH和LDH活性受Zn2+和Mg2+调节,但表现出相反的作用。添加浓度为0.01%的Zn2+可显著提高ADH活性,但抑制LDH活性。相反,添加Mg2+可显著提高LDH活性,但对ADH活性有轻微抑制作用。在发酵实验中,添加Zn2+和Mg2+对突变体HBF-12中乙醇、L-乳酸和生物量的积累有不同影响。提高Zn2+浓度时,L-乳酸和生物量的积累呈下降趋势,但乙醇产量呈上升趋势。随着Mg2+浓度的提高,乳酸和生物量的产量显著增加,但对乙醇产量无影响。当在发酵培养基中Zn2+浓度为0.01%、Mg2+浓度为0.04%的条件下发酵时,HBF-12的乳酸产量达到最高水平,为96.21 g/L。

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