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Title: | Development of an intergeneric conjugal transfer system for rimocidin-producing Streptomyces rimosus |
Authors: | Phornphisutthimas S. Sudtachat N. Bunyoo C. Chotewutmontri P. Panijpan B. Thamchaipenet A. |
Keywords: | Antibiotics Chromosomes Escherichia coli Fungi Molecular biology Colony forming units Conjugation system E. coli Gene clusters Genetic manipulations Green fluorescent protein High efficiency High stability Molecular genetics Optimal results Southern hybridization Streptomyces rimosus Streptomycetes Transconjugants Transfer systems Gene expression green fluorescent protein rimocidin polyene rimocidin antibiotics bacterium gene expression hybridization molecular analysis plasmid analytic method article bacterium conjugation bacterium culture colony forming unit controlled study DNA sequence gene expression genetic manipulation intergeneric conjugal transfer system mycelium nonhuman nucleotide sequence protein expression sequence analysis Southern blotting spore germination Streptomyces streptomyces rimosus Escherichia coli evaluation study gene transfer genetics metabolism Streptomyces Actinobacteria (class) Streptomyces rimosus Streptomycineae Conjugation, Genetic Escherichia coli Gene Transfer Techniques Polyenes Streptomyces |
Issue Date: | 2010 |
Abstract: | Aims: To develop an intergeneric conjugation system for rimocidin-producing Streptomyces rimosus. Methods and Results: High efficiencies of conjugation [10-2-10-3 transconjugants/recipient colony forming units (CFU)] were obtained when spores of S. rimosus were heat treated at 40°C for 10 min prior to mixing with E. coli ET12567(pUZ8002/pIJ8600) as donor. Mycelium from liquid grown cultures of S. rimosus could also be used as recipient instead of spores, with 24-h cultures giving optimal results. TSA (Oxoid) medium containing 10 m mol l-1 MgCl2 was the preferred medium for conjugation. Southern hybridization was used to confirm that transconjugants of S. rimosus contained a single copy of pIJ8600 integrated at a unique chromosomal attachment site (attB). The transconjugants exhibited a high stability of plasmid integration and showed strong expression of green fluorescent protein when using pIJ8655 as the conjugative vector. Conclusion: Intergeneric conjugation between E. coli and S. rimosus was achieved at high efficiency using both spores and mycelium. Significance and Impact of the Study: The conjugation system developed provides a convenient gene expression system for S. rimosus R7 and will enable the genetic manipulation of the rimocidin gene cluster. © 2010 The Authors. Journal compilation © 2010 The Society for Applied Microbiology. |
URI: | https://ir.swu.ac.th/jspui/handle/123456789/14775 https://www.scopus.com/inward/record.uri?eid=2-s2.0-77950463542&doi=10.1111%2fj.1472-765X.2010.02835.x&partnerID=40&md5=334aeb65d07a90432c28eef9031b8e32 |
ISSN: | 2668254 |
Appears in Collections: | Scopus 1983-2021 |
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