THE MINIMAL REPLICON OF THE STREPTOMYCES-GHANAENSIS PLASMID PSG5 IDENTIFIED BY SUBCLONING AND TN5 MUTAGENESIS

MUTH G, WOHLLEBEN W, Pühler A (1988)
MOLECULAR & GENERAL GENETICS 211(3): 424-429.

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MUTH G, WOHLLEBEN W, Pühler A. THE MINIMAL REPLICON OF THE STREPTOMYCES-GHANAENSIS PLASMID PSG5 IDENTIFIED BY SUBCLONING AND TN5 MUTAGENESIS. MOLECULAR & GENERAL GENETICS. 1988;211(3):424-429.
MUTH, G., WOHLLEBEN, W., & Pühler, A. (1988). THE MINIMAL REPLICON OF THE STREPTOMYCES-GHANAENSIS PLASMID PSG5 IDENTIFIED BY SUBCLONING AND TN5 MUTAGENESIS. MOLECULAR & GENERAL GENETICS, 211(3), 424-429. doi:10.1007/BF00425695
MUTH, G., WOHLLEBEN, W., and Pühler, A. (1988). THE MINIMAL REPLICON OF THE STREPTOMYCES-GHANAENSIS PLASMID PSG5 IDENTIFIED BY SUBCLONING AND TN5 MUTAGENESIS. MOLECULAR & GENERAL GENETICS 211, 424-429.
MUTH, G., WOHLLEBEN, W., & Pühler, A., 1988. THE MINIMAL REPLICON OF THE STREPTOMYCES-GHANAENSIS PLASMID PSG5 IDENTIFIED BY SUBCLONING AND TN5 MUTAGENESIS. MOLECULAR & GENERAL GENETICS, 211(3), p 424-429.
G. MUTH, W. WOHLLEBEN, and A. Pühler, “THE MINIMAL REPLICON OF THE STREPTOMYCES-GHANAENSIS PLASMID PSG5 IDENTIFIED BY SUBCLONING AND TN5 MUTAGENESIS”, MOLECULAR & GENERAL GENETICS, vol. 211, 1988, pp. 424-429.
MUTH, G., WOHLLEBEN, W., Pühler, A.: THE MINIMAL REPLICON OF THE STREPTOMYCES-GHANAENSIS PLASMID PSG5 IDENTIFIED BY SUBCLONING AND TN5 MUTAGENESIS. MOLECULAR & GENERAL GENETICS. 211, 424-429 (1988).
MUTH, G, WOHLLEBEN, W, and Pühler, Alfred. “THE MINIMAL REPLICON OF THE STREPTOMYCES-GHANAENSIS PLASMID PSG5 IDENTIFIED BY SUBCLONING AND TN5 MUTAGENESIS”. MOLECULAR & GENERAL GENETICS 211.3 (1988): 424-429.
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18 Citations in Europe PMC

Data provided by Europe PubMed Central.

Diversity oriented biosynthesis via accelerated evolution of modular gene clusters.
Wlodek A, Kendrew SG, Coates NJ, Hold A, Pogwizd J, Rudder S, Sheehan LS, Higginbotham SJ, Stanley-Smith AE, Warneck T, Nur-E-Alam M, Radzom M, Martin CJ, Overvoorde L, Samborskyy M, Alt S, Heine D, Carter GT, Graziani EI, Koehn FE, McDonald L, Alanine A, Rodriguez Sarmiento RM, Chao SK, Ratni H, Steward L, Norville IH, Sarkar-Tyson M, Moss SJ, Leadlay PF, Wilkinson B, Gregory MA., Nat Commun 8(1), 2017
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Conjugative DNA-transfer in Streptomyces, a mycelial organism.
Thoma L, Muth G., Plasmid 87-88(), 2016
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An Efficient Method To Generate Gene Deletion Mutants of the Rapamycin-Producing Bacterium Streptomyces iranensis HM 35.
Netzker T, Schroeckh V, Gregory MA, Flak M, Krespach MK, Leadlay PF, Brakhage AA., Appl. Environ. Microbiol. 82(12), 2016
PMID: 27037115
Molecular analysis of the kirromycin biosynthetic gene cluster revealed beta-alanine as precursor of the pyridone moiety.
Weber T, Laiple KJ, Pross EK, Textor A, Grond S, Welzel K, Pelzer S, Vente A, Wohlleben W., Chem. Biol. 15(2), 2008
PMID: 18291322
Soil to genomics: the Streptomyces chromosome.
Hopwood DA., Annu. Rev. Genet. 40(), 2006
PMID: 16761950
Modular architecture of the conjugative plasmid pSVH1 from Streptomyces venezuelae.
Reuther J, Wohlleben W, Muth G., Plasmid 55(3), 2006
PMID: 16439019
A glutamate mutase is involved in the biosynthesis of the lipopeptide antibiotic friulimicin in Actinoplanes friuliensis.
Heinzelmann E, Berger S, Puk O, Reichenstein B, Wohlleben W, Schwartz D., Antimicrob. Agents Chemother. 47(2), 2003
PMID: 12543643
Conjugative plasmid transfer in gram-positive bacteria.
Grohmann E, Muth G, Espinosa M., Microbiol. Mol. Biol. Rev. 67(2), 2003
PMID: 12794193
Cloning and characterization of the replicon of the Nocardia italica plasmid, pNI100.
Liu YT, Su CM, Lee CH, Sui MJ, Chang YH, Lin WP, Wu WT, Chen CY., Plasmid 43(3), 2000
PMID: 10783301
Repeated polyketide synthase modules involved in the biosynthesis of a heptaene macrolide by Streptomyces sp. FR-008.
Hu Z, Bao K, Zhou X, Zhou Q, Hopwood DA, Kieser T, Deng Z., Mol. Microbiol. 14(1), 1994
PMID: 7830554
The Streptomyces aureofaciens plasmid pIMB R8 and its use for shuttle vector construction.
Godany A, Lacova B, Zelinka J., J. Basic Microbiol. 30(10), 1990
PMID: 2128639

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