scholarly article | Q13442814 |
P356 | DOI | 10.1007/BF00267437 |
P953 | full work available at URL | http://link.springer.com/article/10.1007/BF00267437/fulltext.html |
http://link.springer.com/content/pdf/10.1007/BF00267437.pdf | ||
http://link.springer.com/content/pdf/10.1007/BF00267437 | ||
P698 | PubMed publication ID | 6245339 |
P2093 | author name string | S. Iida | |
W. Arber | |||
P2860 | cites work | Molecular model for the transposition and replication of bacteriophage Mu and other transposable elements | Q24597239 |
Detection of specific sequences among DNA fragments separated by gel electrophoresis | Q25939003 | ||
Labeling deoxyribonucleic acid to high specific activity in vitro by nick translation with DNA polymerase I | Q27860885 | ||
Electron microscope heteroduplex studies of sequence relations among bacterial plasmids: identification and mapping of the insertion sequences IS1 and IS2 in F and R plasmids | Q30894257 | ||
Uniform nomenclature for bacterial plasmids: a proposal | Q34071270 | ||
Analysis of sequences transposed by complementation of two classes of transposition-deficient mutants of Tn3 | Q36344190 | ||
EcoRI restriction endonuclease map of the composite R plasmid NR1. | Q36581516 | ||
Suppression of an Escherichia coli dnaA mutation by the integrated R factor R100.1: generation of small plasmids after integration | Q36600211 | ||
Acquisition of a determinant for chloramphenicol resistance by coliphage lambda | Q37465877 | ||
Mapping of the resistance genes of the R plasmid NR1 | Q39845187 | ||
DRUG RESISTANCE OF ENTERIC BACTERIA. IV. ACTIVE TRANSDUCING BACTERIOPHAGE P1 CM PRODUCED BY THE COMBINATION OF R FACTOR WITH BACTERIOPHAGE P1 | Q40249957 | ||
Amplification of chloramphenicol resistance transposons carried by phage P1Cm in Escherichia coli | Q40286793 | ||
Multiple physical differences in the genome structure of functionally related bacteriophages P1 and P7 | Q40611219 | ||
Involvement of IS1 in the dissociation of the r-determinant and RTF components of the plasmid R100.1 | Q40802150 | ||
Mapping of the drug resistance genes carried by the r-determinant of the R100.1 plasmid | Q40850578 | ||
Transduction of R plasmids by bacteriophages P1 and P22: distinction between generalized and specialized transduction | Q40850616 | ||
The insertion element IS1 is a natural constituent of coliphage P1 DNA | Q41025524 | ||
Transposition of DNA inserted into deletions of the Tn5 kanamycin resistance element | Q41038958 | ||
Rearrangements of Genetic Material in Escherichia coli As Observed on the Bacteriophage P1 Plasmid | Q41105665 | ||
Dissection of the transposition process: A transposon-encoded site-specific recombination system | Q41148030 | ||
Physical mapping of BglII, BamHI, EcoRI, HindIII and PstI restriction fragments of bacteriophage P1 DNA | Q44020890 | ||
A cointegrate of the bacteriophage P1 genome and the conjugative R plasmid R100 | Q44776771 | ||
Plaque forming specialized transducing phage P1: isolation of P1CmSmSu, a precursor of P1Cm | Q44795387 | ||
Plasmid-determined Fusidic Acid Resistance in the Enterobacteriaceae | Q54636366 | ||
IS1 is involved in deletion formation in the gal region of E. coli K12 | Q66900379 | ||
Plaque-forming transducing bacteriophage P1 derivatives and their behaviour in lysogenic conditions | Q66905766 | ||
Phage P1 carrying kanamycin resistance gene of R factor | Q67478062 | ||
Bacteriophage Mu-1: a tool to transpose and to localize bacterial genes | Q67486276 | ||
A physical map of the DNA regions flanking the rabbit beta-globin gene | Q67693308 | ||
Genetic studies on bacteriophage P1 | Q69859896 | ||
Prophage P1, an Extrachromosomal Replication Unit | Q69878239 | ||
Host specificity of DNA produced by Escherichia coli: Bacterial mutations affecting the restriction and modification of DNA | Q71189435 | ||
P433 | issue | 2 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | transposable element | Q121438 |
bacteriophage | Q165028 | ||
genetic recombination | Q211675 | ||
genetics | Q7162 | ||
P304 | page(s) | 261-270 | |
P577 | publication date | 1980-01-01 | |
P1433 | published in | Molecular Genetics and Genomics | Q15753424 |
P1476 | title | On the role of IS1 in the formation of hybrids between the bacteriophage P1 and the R plasmid NR1 | |
P478 | volume | 177 |
Q44776771 | A cointegrate of the bacteriophage P1 genome and the conjugative R plasmid R100 |
Q24630905 | A composite transposon 3' to the cow fetal globin gene binds a sequence specific factor |
Q54522315 | A single gene coding for resistance to both fusidic acid and chloramphenicol. |
Q33928269 | A site-specific, conservative recombination system carried by bacteriophage P1. Mapping the recombinase gene cin and the cross-over sites cix for the inversion of the C segment. |
Q34428752 | Addiction protein Phd of plasmid prophage P1 is a substrate of the ClpXP serine protease of Escherichia coli |
Q36232773 | Amplification of drug resistance genes flanked by inversely repeated IS1 elements: involvement of IS1-promoted DNA rearrangements before amplification |
Q38354380 | Autoregulation of the plasmid addiction operon of bacteriophage P1. |
Q37658550 | Bacteriophage P1 cloning system for the isolation, amplification, and recovery of DNA fragments as large as 100 kilobase pairs |
Q72906910 | Characterization of P1argF derivatives from Escherichia coli K12 transduction. I. IS1 elements flank the argF gene segment |
Q40147707 | Chloramphenicol Acetyltransferase: Enzymology and Molecular Biology |
Q36389117 | Cointegrate formation between homologous plasmids in Escherichia coli. |
Q72923937 | Cointegrates between bacteriophage P1 DNA and plasmid pBR322 derivatives suggest molecular mechanisms for P1-mediated transduction of small plasmids |
Q36331344 | Coliphage P1-mediated transduction of cloned DNA from Escherichia coli to Myxococcus xanthus: use for complementation and recombinational analyses |
Q54772543 | DNA inversion mediated by the r-determinant of plasmid NR1: evidence for the intramolecular replicative transposition of a 23 kb IS1-flanked transposon? |
Q67286988 | DNA restriction--modification genes of phage P1 and plasmid p15B. Structure and in vitro transcription |
Q44153436 | Denaturation map of bacteriophage P1 DNA |
Q59084931 | Distribution of the insertion sequence IS1 in Gram-negative bacteria |
Q72856825 | Does the insertion element IS1 transpose preferentially into A+T-rich DNA segments? |
Q33863122 | Frameshifting is required for production of the transposase encoded by insertion sequence 1. |
Q54485738 | Functional characterization of the prokaryotic mobile genetic element IS26 |
Q72853996 | Genetic evidence for absence of transposition functions from the internal part of Tn981 a relative of Tn9 |
Q72394554 | IS30, a new insertion sequence of Escherichia coli K12 |
Q39548437 | Identification and characterization of the single-stranded DNA-binding protein of bacteriophage P1. |
Q42600772 | Identification of the site of translational frameshifting required for production of the transposase encoded by insertion sequence IS 1 |
Q44760071 | Incompatibility group Y member relationships: pIP231 and plasmid prophages P1 and P7 |
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Q36595822 | Mapping of IS1 elements flanking the argF gene region on the Escherichia coli K-12 chromosome |
Q33996882 | Nested deletions of the SRL pathogenicity island of Shigella flexneri 2a. |
Q36309577 | Occurrence and properties of composite transposon Tn2672: evolution of multiple drug resistance transposons. |
Q35457970 | On the molecular mechanisms of transposition |
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Q54513129 | The kanamycin resistance transposon Tn2680 derived from the R plasmid Rts1 and carried by phage P1Km has flanking 0.8-kb-long direct repeats |
Q48408440 | The plasmid cloning vector pBR325 contains a 482 base-pair-long inverted duplication |
Q48412952 | The yeast transposon Ty1 generates duplications of target DNA on insertion |
Q50217922 | Translocation of sequences encoding antibiotic resistance from the chromosome to a receptor plasmid in Salmonella ordonez |
Q72915933 | Variant insertion element IS1 generates 8-base pair duplications of the target sequence |
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