出品公司: | ATCC |
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菌种名称: | ATCC48180 ATCC 48180 |
菌种又名: | 2201 |
菌株类型: | 博伊丁假丝酵母Candida boidinii |
存储人: | T Egli |
产品目录号: | 48180 |
培养基: | ATCC介质1069:YPAD介质 |
生长条件: | 25 ℃ |
生物安全等级: | 1 |
模式菌株: | 否 |
应用: |
科研,生产,主要用于降解葡萄糖D-葡萄糖
产生D-木酮糖
产生三磷酸腺苷ATP
产生甲醛转酮酶二羟丙酮合酶
产生碘醇L-碘醇
生产山梨醇
生产木糖醇
产生木糖异构酶葡萄糖异构酶
甲醇代谢
利用C1化合物产生ATP
从D-葡萄糖生产D-山梨醇
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菌株特点: |
ATCC48180 博伊丁假丝酵母Candida boidinii |
参考文献: |
Vongsuvanlert V, Tani Y. Xylitol production by a methanol yeast, Candida boidinii (Kloeckera sp.) No. 2201. J. Ferment. Bioeng. 67: 35-39, 1989.
Tani Y, et al. ATP production by sorbitol-treated cells of a methanol yeast, Candida boidinii (Kloeckera sp.) No. 2201. J. Biotechnol. 1: 119-127, 1984.
Egli T, et al. Methanol metabolism in yeasts: Regulation of the synthesis of catabolic enzymes. Arch. Microbiol. 124: 115-121, 1980.
Brenner DJ, et al. High-level ATP production by a genetically-engineered Candida yeast from the order Rickettsiales. Bio-Technology 12: 291-293, 1994. PubMed: 7764491
Egli T, et al. Regulatory flexibility of methylotrophic yeasts in chemostat culture: Simultaneous assimilation of glucose and methanol at a fixed dilution rate. Arch. Microbiol. 131: 1-7, 1982.
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