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Characterization of Streptomyces MITKK-103, a newly isolated actinomycin X2-producer

机译:新分离的放线菌素X2 -生产者链霉菌MITKK-103的表征

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A new actinomycete strain designated MITKK-103 was isolated from the soil of a flowerpot using a humic acid agar medium. The newly isolated strain was able to produce a large amount of actinomycin X2 even under nonoptimized growing conditions and serves as a promising source of this antibiotic. Actinomycin X2 has higher cytotoxicity toward cultured human leukemia (HL-60) cells than does actinomycin D, and it induces cell death via apoptosis. A nearly complete 16S ribosomal DNA (rDNA) sequence from the isolate was determined and found to have high identity (98.5–100%) with Streptomyces galbus, Streptomyces griseofuscus, and Streptomyces padanus, indicating that MITKK-103 belongs to the genus Streptomyces. The isolate clustered with species belonging to the S. padanus clade in a 16S-rDNA-based phylogenetic tree and showed 75% overall homology to S. padanus ATCC 25646 in DNA–DNA relatedness analysis. Although the growth of the isolate was somewhat different from the three species mentioned, the strain MITKK-103 most closely resembles S. padanus on the basis of the morphological and phenotypic characteristics, phylogenetic analysis, and genotypic data. As such, this is the first report of a strain of S. padanus capable of producing actinomycins.
机译:使用腐殖酸琼脂培养基从花盆的土壤中分离出一种新的放线菌菌株MITKK-103。新分离出的菌株即使在未优化的生长条件下也能够产生大量的放线菌素X2 ,并且是这种抗生素的有希望的来源。放线菌素X2 对放疗的人白血病(HL-60)细胞具有比放线菌素D高的细胞毒性,并通过凋亡诱导细胞死亡。确定了分离株的近乎完整的16S核糖体DNA(rDNA)序列,发现它们与链霉菌,链霉菌和红链霉菌具有高度同一性(98.5–100%),表明MITKK-103属于链霉菌属。该分离株在基于16S-rDNA的系统发育树中聚集了属于沙门氏菌进化枝的物种,在DNA-DNA相关性分析中显示与沙门氏菌ATCC 25646的总体同源性为75%。尽管该菌株的生长与上述三个物种有所不同,但根据形态和表型特征,系统发育分析和基因型数据,菌株MITKK-103最类似于S. padanus。因此,这是能够产生放线菌素的S.padanus菌株的首次报道。

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  • 来源
    《Applied Microbiology and Biotechnology》 |2006年第1期|145-154|共10页
  • 作者单位

    Department of Biology Building 68-370 Massachusetts Institute of Technology;

    Department of Biology Building 68-370 Massachusetts Institute of Technology;

    Department of Biology Building 68-370 Massachusetts Institute of Technology;

    Department of Biology Building 68-370 Massachusetts Institute of Technology;

    Department of Biology Building 68-370 Massachusetts Institute of Technology;

    Department of Chemistry University of Florida;

    Biomaterials Science and Engineering Laboratory Massachusetts Institute of Technology;

    Biomaterials Science and Engineering Laboratory Massachusetts Institute of Technology;

    Department of Biology Building 68-370 Massachusetts Institute of TechnologyDepartment of Health Sciences and Technology Massachusetts Institute of Technology;

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