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A Genome-Wide Analysis of Antibiotic Producing Genes in Streptomyces globisporus SP6C4
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  • A Genome-Wide Analysis of Antibiotic Producing Genes in Streptomyces globisporus SP6C4
저자명
Da-Ran Kim, Youn-Sig Kwak
간행물명
The Plant Pathology Journal KCI
권/호정보
2021년|37권 4호(통권170호)|pp.389-395 (7 pages)
발행정보
한국식물병리학회|한국
파일정보
정기간행물|ENG|
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영문초록

Soil is the major source of plant-associated microbes. Several fungal and bacterial species live within plant tissues. Actinomycetes are well known for producing a variety of antibiotics, and they contribute to improving plant health. In our previous report, Streptomyces glo- bisporus SP6C4 colonized plant tissues and was able to move to other tissues from the initially colonized ones. This strain has excellent antifungal and antibacterial activities and provides a suppressive effect upon various plant diseases. Here, we report the genome-wide analysis of antibiotic producing genes in S. globisporus SP6C4. A total of 15 secondary metabolite biosynthetic gene clusters were predicted using antiSMASH. We used the CRISPR/Cas9 mutagenesis system, and each biosynthetic gene was predicted via protein basic local alignment search tool (BLAST) and rapid annotation using subsystems technology (RAST) server. Three gene clusters were shown to exhibit antifungal or anti- bacterial activity, viz. cluster 16 (lasso peptide), cluster 17 (thiopeptide-lantipeptide), and cluster 20 (lanti- peptide). The results of the current study showed that SP6C4 has a variety of antimicrobial activities, and this strain is beneficial in agriculture.

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