The influence of the Ustilago maydis REC1 gene on plasmid-chromosome recombination
The REC1 gene of U. maydis has an important but ill-defined role in DNA recombination and repair. We have examined its role in plasmid-chromosome recombination. Plasmid DNA was linearized at various locations with respect to the cloned U. maydis PYR3 gene and introduced into cells by transformation....
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Published in | Current genetics Vol. 22; no. 6; p. 483 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
United States
01.12.1992
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Abstract | The REC1 gene of U. maydis has an important but ill-defined role in DNA recombination and repair. We have examined its role in plasmid-chromosome recombination. Plasmid DNA was linearized at various locations with respect to the cloned U. maydis PYR3 gene and introduced into cells by transformation. Chromosomal integration and repair by an homologous cross-over with plasmid containing a double-strand break or gap in the PYR3 gene was markedly reduced in the absence of the REC1 gene product. Homologous replacement of the chromosomal pyr3-1 allele by a single copy of wild-type sequences from plasmid cut outside PYR3 was not found in the absence of the REC1 product. Instead, novel transformants generated in its absence suggests that ligation plays a role in their generation. |
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AbstractList | The REC1 gene of U. maydis has an important but ill-defined role in DNA recombination and repair. We have examined its role in plasmid-chromosome recombination. Plasmid DNA was linearized at various locations with respect to the cloned U. maydis PYR3 gene and introduced into cells by transformation. Chromosomal integration and repair by an homologous cross-over with plasmid containing a double-strand break or gap in the PYR3 gene was markedly reduced in the absence of the REC1 gene product. Homologous replacement of the chromosomal pyr3-1 allele by a single copy of wild-type sequences from plasmid cut outside PYR3 was not found in the absence of the REC1 product. Instead, novel transformants generated in its absence suggests that ligation plays a role in their generation. |
Author | Kanuga, N Banks, G.R. (National Institute for Medical Research, London (United Kingdom). Genetics Div.) Spanos, A Ealing, J Holden, D.W |
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BackLink | https://www.ncbi.nlm.nih.gov/pubmed/1473180$$D View this record in MEDLINE/PubMed |
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Snippet | The REC1 gene of U. maydis has an important but ill-defined role in DNA recombination and repair. We have examined its role in plasmid-chromosome... |
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SubjectTerms | CHROMOSOME CHROMOSOMES Chromosomes, Fungal CROMOSOMAS DNA Exodeoxyribonuclease V Fungal Proteins - genetics GENE GENES Genes, Fungal Nucleic Acid Hybridization Plasmid-chromosome recombination PLASMIDE PLASMIDIOS PLASMIDS REC1 RECOMBINACION RECOMBINAISON RECOMBINATION Recombination, Genetic Restriction Mapping Transformation, Genetic USTILAGO Ustilago - genetics |
Title | The influence of the Ustilago maydis REC1 gene on plasmid-chromosome recombination |
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