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L(+)-Lactic Acid Production production from glucose and Xylose with Rhizopus Oryzae Mutant RQ4015 Breeding by Low-Energy Ion Implantation

机译:低能量离子注入法将米根霉突变体RQ4015选育为葡萄糖和木糖生产L(+)-乳酸

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To obtain an industrial strain using glucose and xylose as carbohydrate feedstock to produce high yields of L(+)-lactic acid, a wild type strain, Rhizopus oryzae PW352, was irradiated by nitrogen ion beams. The energy of ion beams was 36 h shake-flask cultivation, the yield of L(+)-lactic acid reached 130g/l when the glucose at a concentration of 150 g/l was added as the sole carbon source in the medium..In contrast, the yield of L(+)-lactic acid from xylose at concentration of 100 g/l reached 74 g/l after 72h fermentation. In case of mixed substrates, available xylose (25g/l) and glucose (75g/l) present in Bubble column with PH4.5, the concentration of L(+)-lactic acid reached 83g. Diauxic growth was observed where consumption of glucose and xylose occurred subsequently. Sugar consumption rate and lactic acid production rate were significantly higher during glucose consumption phase compared to xylose consumption phase..
机译:为了获得使用葡萄糖和木糖作为碳水化合物原料以产生高产率的L(+)-乳酸的工业菌株,用氮离子束照射野生型菌株米根霉PW352。离子束的能量为36 h摇瓶培养,当以150 g / l的浓度添加葡萄糖作为唯一碳源时,L(+)-乳酸的产量达到130g / l。相反,发酵72小时后,以100g / l的浓度从木糖得到的L(+)-乳酸产量达到74g / l。对于混合底物,Bubble色谱柱中pH为4.5的木糖(25g / l)和葡萄糖(75g / l),L(+)-乳酸的浓度达到83g。在随后发生葡萄糖和木糖消耗的地方观察到双生生长。与木糖消耗阶段相比,葡萄糖消耗阶段中的糖消耗速率和乳酸产生速率显着更高。

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