ISR1, A TRANSPOSABLE DNA-SEQUENCE RESIDENT IN RHIZOBIUM CLASS-IV STRAINS, SHOWS STRUCTURAL CHARACTERISTICS OF CLASSICAL INSERTION ELEMENTS

PRIEFER UB, Kalinowski J, RUGER B, HEUMANN W, Pühler A (1989)
PLASMID 21(2): 120-128.

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Zeitschriftenaufsatz | Veröffentlicht | Englisch
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Zeitschriftentitel
PLASMID
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21
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2
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120-128
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PRIEFER UB, Kalinowski J, RUGER B, HEUMANN W, Pühler A. ISR1, A TRANSPOSABLE DNA-SEQUENCE RESIDENT IN RHIZOBIUM CLASS-IV STRAINS, SHOWS STRUCTURAL CHARACTERISTICS OF CLASSICAL INSERTION ELEMENTS. PLASMID. 1989;21(2):120-128.
PRIEFER, U. B., Kalinowski, J., RUGER, B., HEUMANN, W., & Pühler, A. (1989). ISR1, A TRANSPOSABLE DNA-SEQUENCE RESIDENT IN RHIZOBIUM CLASS-IV STRAINS, SHOWS STRUCTURAL CHARACTERISTICS OF CLASSICAL INSERTION ELEMENTS. PLASMID, 21(2), 120-128. doi:10.1016/0147-619X(89)90055-3
PRIEFER, U. B., Kalinowski, J., RUGER, B., HEUMANN, W., and Pühler, A. (1989). ISR1, A TRANSPOSABLE DNA-SEQUENCE RESIDENT IN RHIZOBIUM CLASS-IV STRAINS, SHOWS STRUCTURAL CHARACTERISTICS OF CLASSICAL INSERTION ELEMENTS. PLASMID 21, 120-128.
PRIEFER, U.B., et al., 1989. ISR1, A TRANSPOSABLE DNA-SEQUENCE RESIDENT IN RHIZOBIUM CLASS-IV STRAINS, SHOWS STRUCTURAL CHARACTERISTICS OF CLASSICAL INSERTION ELEMENTS. PLASMID, 21(2), p 120-128.
U.B. PRIEFER, et al., “ISR1, A TRANSPOSABLE DNA-SEQUENCE RESIDENT IN RHIZOBIUM CLASS-IV STRAINS, SHOWS STRUCTURAL CHARACTERISTICS OF CLASSICAL INSERTION ELEMENTS”, PLASMID, vol. 21, 1989, pp. 120-128.
PRIEFER, U.B., Kalinowski, J., RUGER, B., HEUMANN, W., Pühler, A.: ISR1, A TRANSPOSABLE DNA-SEQUENCE RESIDENT IN RHIZOBIUM CLASS-IV STRAINS, SHOWS STRUCTURAL CHARACTERISTICS OF CLASSICAL INSERTION ELEMENTS. PLASMID. 21, 120-128 (1989).
PRIEFER, UB, Kalinowski, Jörn, RUGER, B, HEUMANN, W, and Pühler, Alfred. “ISR1, A TRANSPOSABLE DNA-SEQUENCE RESIDENT IN RHIZOBIUM CLASS-IV STRAINS, SHOWS STRUCTURAL CHARACTERISTICS OF CLASSICAL INSERTION ELEMENTS”. PLASMID 21.2 (1989): 120-128.

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Transposon mutagenesis identified chromosomal and plasmid genes essential for adaptation of the marine bacterium Dinoroseobacter shibae to anaerobic conditions.
Ebert M, Laaß S, Burghartz M, Petersen J, Koßmehl S, Wöhlbrand L, Rabus R, Wittmann C, Tielen P, Jahn D., J Bacteriol 195(20), 2013
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Characterization of rhizobia homologues of Sinorhizobium meliloti insertion sequences ISRm3 and ISRm4
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Negative regulation of IS2 transposition by the cyclic AMP (cAMP)-cAMP receptor protein complex.
Hu ST, Wang HC, Lei GS, Wang SH., J Bacteriol 180(10), 1998
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Transcription start sites for syrM and nodD3 flank an insertion sequence relic in Rhizobium meliloti.
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The nodD locus from Azorhizobium caulinodans is flanked by two repetitive elements.
Geelen D, Goethals K, Van Montagu M, Holsters M., Gene 164(1), 1995
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High-level ribosomal frameshifting directs the synthesis of IS150 gene products.
Vögele K, Schwartz E, Welz C, Schiltz E, Rak B., Nucleic Acids Res 19(16), 1991
PMID: 1653413
New nucleotide sequence data on the EMBL File Server.
, Nucleic Acids Res 18(13), 1990
PMID: 2374742
Functional similarities between retroviruses and the IS3 family of bacterial insertion sequences?
Fayet O, Ramond P, Polard P, Prère MF, Chandler M., Mol Microbiol 4(10), 1990
PMID: 1963920

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