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首页> 外文期刊>Applied Microbiology >An Efficient Method To Generate Gene Deletion Mutants of the Rapamycin-Producing Bacterium Streptomyces iranensis HM 35
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An Efficient Method To Generate Gene Deletion Mutants of the Rapamycin-Producing Bacterium Streptomyces iranensis HM 35

机译:产生雷帕霉素的细菌链霉菌HM 35的基因缺失突变体的有效方法。

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Streptomyces iranensis HM 35 is an alternative rapamycin producer to Streptomyces rapamycinicus . Targeted genetic modification of rapamycin-producing actinomycetes is a powerful tool for the directed production of rapamycin derivatives, and it has also revealed some key features of the molecular biology of rapamycin formation in S. rapamycinicus. The approach depends upon efficient conjugational plasmid transfer from Escherichia coli to Streptomyces , and the failure of this step has frustrated its application to Streptomyces iranensis HM 35. Here, by systematically optimizing the process of conjugational plasmid transfer, including screening of various media, and by defining optimal temperatures and concentrations of antibiotics and Ca~(2+) ions in the conjugation media, we have achieved exconjugant formation for each of a series of gene deletions in S. iranensis HM 35. Among them were rapK , which generates the starter unit for rapamycin biosynthesis, and hutF , encoding a histidine catabolizing enzyme. The protocol that we have developed may allow efficient generation of targeted gene knockout mutants of Streptomyces species that are genetically difficult to manipulate.IMPORTANCE The developed protocol of conjugational plasmid transfer from Escherichia coli to Streptomyces iranensis may allow efficient generation of targeted gene knockout mutants of other genetically difficult to manipulate, but valuable, Streptomyces species.
机译:伊朗链霉菌HM 35是雷帕霉素链霉菌的替代生产者。产生雷帕霉素的放线菌的靶向遗传修饰是雷帕霉素衍生物的直接生产的有力工具,它还揭示了雷帕霉素链球菌中雷帕霉素形成的分子生物学的一些关键特征。该方法依赖于从大肠杆菌到链霉菌的有效结合质粒转移,而此步骤的失败使它无法应用于伊朗链霉菌HM35。在此,通过系统地优化结合质粒转移的过程,包括筛选各种培养基,以及定义最佳温度和结合培养基中抗生素和Ca〜(2+)离子的最佳浓度,我们已经针对伊朗链球菌HM 35中的一系列基因缺失中的每一个实现了超缀合物形成。其中有rapK,它产生了启动子单元。用于雷帕霉素的生物合成和hutF,编码组氨酸分解代谢酶。我们开发的方案可能允许有效地产生遗传上难于操作的链霉菌种的靶向基因敲除突变体。重要研发的结合质粒从大肠杆菌转移到伊朗链霉菌的协议可能可以有效产生其他靶基因的敲除突变体基因上难于操作,但有价值的链霉菌种。

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