The role of AtMSH2 in homologous recombination in Arabidopsis thaliana
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Summary
It is reported that AtMSH2 has a broad range of anti‐recombination effects: it suppresses recombination between divergent direct repeats in somatic cells or between homologues from different ecotypes during meiosis.
- Type
- article
- Published
- 2006-01-01
- Cited by
- 88
- References
- 39
- Access
- Open access
- OpenAlex
- https://openalex.org/W2047016832
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:22785502
Keywords
Heteroduplex, Homologous recombination, Non-allelic homologous recombination, Ectopic recombination, Recombination
References
- Dissimilar mispair-recognition spectra of Arabidopsis DNA-mismatch-repair proteins MSH2*MSH6 (MutSalpha) and MSH2*MSH7 (MutSgamma).
- Controlled Introgression of Chromosomes of SOLANUM PENNELLII into LYCOPERSICON ESCULENTUM: Segregation and Recombination.
- Mitotic recombination in Saccharomyces cerevisiae
- The mismatch repair system contributes to meiotic sterility in an interspecific yeast hybrid.
- A novel reporter for intrachromosomal homoeologous recombination in Arabidopsis thaliana.
- Reduction of Stability of Arabidopsis Genomic and Transgenic DNA-Repeat Sequences (Microsatellites) by Inactivation of AtMSH2 Mismatch-Repair Function1
- A DNA mismatch repair gene links to the Ph2 locus in wheat.
- How plants make ends meet: DNA double-strand break repair.
- Mismatch repair and DNA damage signalling.
- Four mismatch repair paralogues coexist in Arabidopsis thaliana: AtMSH2, AtMSH3, AtMSH6-1 and AtMSH6-2
- Evidence for the lack of mismatch-repair directed antirecombination during mouse meiosis.
- The barrier to recombination between Escherichia coli and Salmonella typhimurium is disrupted in mismatch-repair mutants
- A new transgene assay to study microsatellite instability in wild-type and mismatch-repair defective plant progenies
- Functional analysis of the Arabidopsis thaliana mismatch repair gene MSH2.
- Sequencing and comparison of yeast species to identify genes and regulatory elements
- Arabidopsis MutS Homologs—AtMSH2, AtMSH3, AtMSH6, and a Novel AtMSH7—Form Three Distinct Protein Heterodimers with Different Specificities for Mismatched DNA
- DNA Mismatch Repair in Plants (An Arabidopsis thaliana Gene That Predicts a Protein Belonging to the MSH2 Subfamily of Eukaryotic MutS Homologs)
- Heteroduplex rejection during single-strand annealing requires Sgs1 helicase and mismatch repair proteins Msh2 and Msh6 but not Pms1.
- Rapid accumulation of mutations during seed-to-seed propagation of mismatch-repair-defective Arabidopsis.
- A new seed-based assay for meiotic recombination in Arabidopsis thaliana.
Cited by
- Gene Targeting by Homologous Recombination as a Biotechnological Tool for Rice Functional Genomics1[W][OA]
- Crossing-Over in a Hypervariable Species Preferentially Occurs in Regions of High Local Similarity
- Homologous recombination in plants: an antireview.
- Etude du contrôle des éléments transposables par la méthylation de l’ADN chez Arabidopsis thaliana
- Gene expression profiling of Arabidopsis meiocytes.
- Repairing breaks in the plant genome: the importance of keeping it together.
- High-Level Production of MSH2 from Arabidopsis thaliana: A DNA Mismatch Repair System Key Subunit
- Towards artificial metallonucleases for gene therapy: recent advances and new perspectives.
- Deficiency in DNA methylation increases meiotic crossover rates in euchromatic but not in heterochromatic regions in Arabidopsis
- Inventory and phylogenomic distribution of meiotic genes in Nasonia vitripennis and among diverse arthropods
- Transgenic manipulation of plant embryo sacs tracked through cell-type-specific fluorescent markers: cell labeling, cell ablation, and adventitious embryos
- Impact of the loss of AtMSH2 on double-strand break-induced recombination between highly diverged homeologous sequences in Arabidopsis thaliana germinal tissues
- The Arabidopsis DNA mismatch repair gene PMS1 restricts somatic recombination between homeologous sequences
- Computational Identification of Potential Molecular Interactions in Arabidopsis1[C][W]
- Research on Plants for the Understanding of Diseases of Nuclear and Mitochondrial Origin
- Effects of suppressing the DNA mismatch repair system on homeologous recombination in tomato
- The Arabidopsis MutS homolog AtMSH5 is required for normal meiosis
- From bacteria to plants: a compendium of mismatch repair assays.
- Genomic stability in Nicotiana plants upon silencing of the mismatch repair gene MSH2
- Tinkering with meiosis
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