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Isolation and characterization of Candida membranifaciens subsp. flavinogenie W14-3, a novel riboflavin-producing marine yeast

机译:假丝酵母念珠菌亚种的分离和鉴定。 flavinogenie W14-3,一种生产核黄素的新型海洋酵母

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We found that the marine yeast strain W14-3 isolated from seawater of China Eastern Sea could produce riboflavin. It is interesting to observe that the marine yeast strain produced a large amount of riboflavin in the medium containing xylose, sucrose, galactose and maltose under the conditions of vigorous shaking. The yeast strain was found to belong to Candida membranifaciens subsp. flavinogenie based on the results of routine and molecular identification. The protein sequences deduced from the partial genes encoding GTP cyclohydrolase II and 3,4-dihydroxy-2-butanone-4-phosphate synthase in the yeast exhibited high identity with those of the corresponding enzymes for riboflavin biosynthesis in other yeasts. Fe super(3) super(+) available in the medium repressed riboflavin production and expression of the genes responsible for riboflavin biosynthesis in the yeast. The results have evidenced that a riboflavin synthesis pathway indeed existed in the yeast. This is the first study to report that C. membranifaciens subsp. flavinogenie W14-3 from the marine environment could produce riboflavin.
机译:我们发现从东海海水中分离出的海洋酵母菌株W14-3可以产生核黄素。有趣的是,在剧烈摇动的条件下,海洋酵母菌株在含有木糖,蔗糖,半乳糖和麦芽糖的培养基中产生了大量核黄素。发现该酵母菌株属于假丝酵母念珠菌亚种。黄素生成基于常规结果和分子鉴定。由酵母中编码GTP环水解酶II和3,4-二羟基-2-丁酮-4-磷酸合酶的部分基因推导的蛋白质序列与其他酵母中核黄素生物合成的相应酶具有高度同一性。在培养基中可用的Fe super(3)super(+)抑制了核黄素的产生和酵母中核黄素生物合成的基因表达。结果证明酵母中确实存在核黄素合成途径。这是第一个报告C. membranifaciens亚种的研究。海洋环境中的黄素生成W14-3可能产生核黄素。

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