阿维链霉菌
阿维菌素
麦芽糖
ATP结合盒运输机
发酵
麦芽糖结合蛋白
生物化学
淀粉
突变体
链霉菌
生物
运输机
微生物学
化学
重组DNA
基因
细菌
遗传学
酶
解剖
融合蛋白
作者
Meng Li,Zhi Chen,Xuan Zhang,Sheng Yuan,Ying Wen,Jilun Li
标识
DOI:10.1016/j.biortech.2010.06.132
摘要
We investigated the function of maltose ABC transporter system encoded by malEFG-a and the effect of its overexpression on antibiotic production in Streptomyces avermitilis. A malEFG-a deletion mutant was unable to grow in a minimal medium with maltose as sole carbon source and produce avermectin. Maltose utilization and avermectin production were restored by introduction of a single copy of malEFG-a. RT-PCR analysis showed that the expression of malE-a was induced by maltose, and was strongly repressed by glucose. When multi-copy, integrative malEFG-a gene expression vectors were introduced into wild-type strain ATCC31267 and ivermectin-producer OI-31, antibiotic production increased by 2.6- to 3.3-fold and the time required for fermentation decreased by about 10%. The overexpression of malEFG-a improved the utilization rate of starch, and thereby enhanced avermectin production. Such an approach would be useful for the improvement of commercial antibiotic production using starch as the main carbon source in the fermentation process.
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