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  • Search Condition : Filter (MeSH = Genomic Instability*)
Species Resource
C.elegans tm939 URI-1 is required for DNA stability in C. elegans.
C.elegans tm1866 RTEL1 maintains genomic stability by suppressing homologous recombination.
Drosophila Organ identity specification factor WGE localizes to the histone locus body and regulates histone expression to ensure genomic stability in Drosophila.
Yeast FY11206 , FY11183 , FY8495 An acetylated form of histone H2A.Z regulates chromosome architecture in Schizosaccharomyces pombe.
Drosophila DGRC#109605 Drosophila damaged DNA binding protein 1 contributes to genome stability in somatic cells.
Medaka MT416 (039-25) , Cab Identification of radiation-sensitive mutants in the Medaka, Oryzias latipes.
C.elegans slx-1(tm2644) , brc-2(tm1086) , him-18(tm2181) SLX-1 is required for maintaining genomic integrity and promoting meiotic noncrossovers in the Caenorhabditis elegans germline.
C.elegans tm1297 The conserved Wobble uridine tRNA thiolase Ctu1-Ctu2 is required to maintain genome integrity.
Yeast S. pombe strains. Sde2: a novel nuclear protein essential for telomeric silencing and genomic stability in Schizosaccharomyces pombe.
C.elegans tm2868 Structural maintenance of chromosomes (SMC) proteins promote homolog-independent recombination repair in meiosis crucial for germ cell genomic stability.
Drosophila 31617R-2 , 31617R-3 Drosophila melanogaster linker histone dH1 is required for transposon silencing and to preserve genome integrity.
C.elegans tm1145 , tm2026 , tm2842 , tm2940 A Role for the Nonsense-Mediated mRNA Decay Pathway in Maintaining Genome Stability in Caenorhabditis elegans.
C.elegans tm1489 The C. elegans SET-2/SET1 histone H3 Lys4 (H3K4) methyltransferase preserves genome stability in the germline.
Drosophila 31617R-3 Linker histone H1 prevents R-loop accumulation and genome instability in heterochromatin.
C.elegans tm5027 The atm-1 gene is required for genome stability in Caenorhabditis elegans.
Prokaryotes E. coli Correlation between genome reduction and bacterial growth.