CRISPRcompar: a website to compare clustered regularly interspaced short palindromic repeats
暂无分享,去创建一个
[1] R. Barrangou,et al. CRISPR Provides Acquired Resistance Against Viruses in Prokaryotes , 2007, Science.
[2] Andrey P. Anisimov,et al. Analysis of the three Yersinia pestis CRISPR loci provides new tools for phylogenetic studies and possibly for the investigation of ancient DNA. , 2007, Advances in experimental medicine and biology.
[3] Igor Mokrousov,et al. Corynebacterium diphtheriae spoligotyping based on combined use of two CRISPR loci , 2007, Biotechnology journal.
[4] L. Schouls,et al. Identification of genes that are associated with DNA repeats in prokaryotes , 2002, Molecular microbiology.
[5] Igor Mokrousov,et al. Efficient Discrimination within a Corynebacterium diphtheriae Epidemic Clonal Group by a Novel Macroarray-Based Method (print version) , 2005, Journal of Clinical Microbiology.
[6] J. Banfield,et al. Rapidly evolving CRISPRs implicated in acquired resistance of microorganisms to viruses. , 2007, Environmental microbiology.
[7] N. Grishin,et al. A putative RNA-interference-based immune system in prokaryotes: computational analysis of the predicted enzymatic machinery, functional analogies with eukaryotic RNAi, and hypothetical mechanisms of action , 2006, Biology Direct.
[8] Rob J. L. Willems,et al. Comparative Genotyping of Campylobacter jejuni by Amplified Fragment Length Polymorphism, Multilocus Sequence Typing, and Short Repeat Sequencing: Strain Diversity, Host Range, and Recombination , 2003, Journal of Clinical Microbiology.
[9] Ruud Jansen,et al. Genetic Variation and Evolutionary Origin of the Direct Repeat Locus of Mycobacterium tuberculosis Complex Bacteria , 2000, Journal of bacteriology.
[10] Ibtissem Grissa,et al. The CRISPRdb database and tools to display CRISPRs and to generate dictionaries of spacers and repeats , 2007, BMC Bioinformatics.
[11] R. Garrett,et al. A putative viral defence mechanism in archaeal cells. , 2006, Archaea.
[12] R. Sokal,et al. A METHOD FOR DEDUCING BRANCHING SEQUENCES IN PHYLOGENY , 1965 .
[13] G. Vergnaud,et al. CRISPR elements in Yersinia pestis acquire new repeats by preferential uptake of bacteriophage DNA, and provide additional tools for evolutionary studies. , 2005, Microbiology.
[14] V. Kunin,et al. CRISPR — a widespread system that provides acquired resistance against phages in bacteria and archaea , 2008, Nature Reviews Microbiology.
[15] Philippe Horvath,et al. Phage Response to CRISPR-Encoded Resistance in Streptococcus thermophilus , 2007, Journal of bacteriology.
[16] Karen E. Nelson,et al. Chromosome Evolution in the Thermotogales: Large-Scale Inversions and Strain Diversification of CRISPR Sequences , 2006, Journal of bacteriology.
[17] P. Groenen,et al. Nature of DNA polymorphism in the direct repeat cluster of Mycobacterium tuberculosis; application for strain differentiation by a novel typing method , 1993, Molecular microbiology.
[18] J. Musser,et al. Rapid molecular genetic subtyping of serotype M1 group A Streptococcus strains. , 1999, Emerging infectious diseases.
[19] Ibtissem Grissa,et al. CRISPRFinder: a web tool to identify clustered regularly interspaced short palindromic repeats , 2007, Nucleic Acids Res..