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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Genetic analysis of D-xylose metabolism pathways in Gluconobacter oxydans 621H
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Genetic analysis of D-xylose metabolism pathways in Gluconobacter oxydans 621H

机译:氧化葡糖杆菌621H中D-木糖代谢途径的遗传分析

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D-xylose is one of the most abundant carbohydrates in nature. This work focuses on xylose metabolism of Gluconobacter oxydans as revealed by a few studies conducted to understand xylose utilization by this strain. Interestingly, the G. oxydans 621H Delta mgdh strain (deficient in membrane-bound glucose dehydrogenase) was greatly inhibited when grown on xylose and no xylonate accumulation was observed in the medium. These experimental observations suggested that the mgdh gene was responsible for the conversion of xylose to xylonate in G. oxydans, which was also verified by whole-cell biotransformation. Since 621H Delta mgdh could still grow on xylose in a very small way, two seemingly important genes in the oxo-reductive pathway for xylose metabolism, a xylitol dehydrogenase-encoding gox0865 (xdh) gene and a putative xylulose kinase-encoding gox2214 (xk) gene, were knocked out to investigate the effects of both genes on xylose metabolism. The results showed that the gox2214 gene was not involved in xylose metabolism, and there might be other genes encoding xylulose kinase. Though the gox0865 gene played a less important role in xylose metabolism compared to the mgdh gene, it was significant in xylitol utilization in G. oxydans, which meant that gox0865 was a necessary gene for the oxo-reductive pathway of xylose in vivo. To sum up, when xylose was used as the carbon source, the majority of xylose was directly oxidized to xylonate for further metabolism in G. oxydans, whereas only a minor part of xylose was metabolized by the oxo-reductive pathway.
机译:D-木糖是自然界中最丰富的碳水化合物之一。这项工作专注于氧化葡糖杆菌的木糖代谢,正如一些了解该菌株对木糖利用的研究所揭示的那样。有趣的是,当在木糖上生长时,氧化木霉G.oxydans 621H Delta mgdh菌株(缺乏膜结合的葡萄糖脱氢酶)被大大抑制,并且在培养基中未观察到木糖酸盐的积累。这些实验观察结果表明,mgdh基因负责氧化羟色胺中木糖到木糖酸盐的转化,这也通过全细胞生物转化得到证实。由于621H Delta mgdh仍然可以以很小的方式在木糖上生长,因此在木糖代谢的氧化还原途径中两个看似重要的基因,木糖醇脱氢酶编码的gox0865(xdh)基因和推定的木糖醛糖激酶编码的gox2214(xk)基因,被敲除以研究两个基因对木糖代谢的影响。结果表明,gox2214基因不参与木糖代谢,可能还存在其他编码木酮糖激酶的基因。尽管与mgdh基因相比,gox0865基因在木糖代谢中的作用不那么重要,但它在氧化木霉中对木糖醇的利用却很重要,这意味着gox0865是体内木糖氧化还原途径的必需基因。综上所述,当木糖用作碳源时,大部分木糖被直接氧化成木糖酸盐,以在氧化单歧菌中进一步代谢,而只有一小部分木糖通过氧还原途径代谢。

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