tuberculosis Mycobacterium Comparing Genomes within the Species
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[1] T. Gingeras,et al. Detection of deleted genomic DNA using a semiautomated computational analysis of GeneChip data. , 2000, Genome research.
[2] B. Robertson,et al. Comparison of Mycobacterium Tuberculosis Genomes Reveals Frequent Deletions in a 20 kb Variable Region in Clinical Isolates , 2000, Yeast.
[3] C. Buchrieser,et al. Comparative Genomics Uncovers Large Tandem Chromosomal Duplications in Mycobacterium Bovis BCG Pasteur , 2000, Yeast.
[4] J. Musser,et al. Negligible genetic diversity of mycobacterium tuberculosis host immune system protein targets: evidence of limited selective pressure. , 2000, Genetics.
[5] P. Small,et al. How molecular epidemiology has changed what we know about tuberculosis. , 2000, The Western journal of medicine.
[6] R M Warren,et al. Disruption of coding regions by IS6110 insertion in Mycobacterium tuberculosis. , 1999, Tubercle and lung disease : the official journal of the International Union against Tuberculosis and Lung Disease.
[7] T. Dick,et al. Upregulation of stress response genes and ABC transporters in anaerobic stationary-phase Mycobacterium smegmatis , 1999, Molecular and General Genetics MGG.
[8] E. Winzeler,et al. Whole genome genetic-typing in yeast using high-density oligonucleotide arrays , 1999, Parasitology.
[9] M. Behr,et al. A Molecular Epidemiologic Analysis of Tuberculosis Trends in San Francisco, 19911997 , 1999, Annals of Internal Medicine.
[10] S T Cole,et al. Learning from the genome sequence of Mycobacterium tuberculosis H37Rv , 1999, FEBS letters.
[11] F. Kramer,et al. Molecular Epidemiologic Evaluation of Transmissibility and Virulence of Mycobacterium tuberculosis , 1999, Journal of Clinical Microbiology.
[12] G. Schoolnik,et al. Comparative genomics of BCG vaccines by whole-genome DNA microarray. , 1999, Science.
[13] D. Chatterjee,et al. Mycolactone: a polyketide toxin from Mycobacterium ulcerans required for virulence. , 1999, Science.
[14] Benjamin L. King,et al. Genomic-sequence comparison of two unrelated isolates of the human gastric pathogen Helicobacter pylori , 1999, Nature.
[15] B. Barrell,et al. Deciphering the biology of Mycobacterium tuberculosis from the complete genome sequence , 1998, Nature.
[16] P. Small,et al. Stability of Mycobacterium tuberculosis DNA genotypes. , 1998, The Journal of infectious diseases.
[17] I. Onorato,et al. An outbreak involving extensive transmission of a virulent strain of Mycobacterium tuberculosis. , 1998, The New England journal of medicine.
[18] T. Whittam,et al. Restricted structural gene polymorphism in the Mycobacterium tuberculosis complex indicates evolutionarily recent global dissemination. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[19] Thomas L. Madden,et al. Gapped BLAST and PSI-BLAST: a new generation of protein database search programs. , 1997, Nucleic acids research.
[20] D. Portnoy,et al. The two distinct phospholipases C of Listeria monocytogenes have overlapping roles in escape from a vacuole and cell-to-cell spread , 1995, Infection and immunity.
[21] H. Ochman,et al. Heterogeneity of genome sizes among natural isolates of Escherichia coli , 1995, Journal of bacteriology.
[22] S. Kline,et al. Outbreak of tuberculosis among regular patrons of a neighborhood bar. , 1995, The New England journal of medicine.
[23] G. Schoolnik,et al. The epidemiology of tuberculosis in San Francisco. A population-based study using conventional and molecular methods. , 1994, The New England journal of medicine.
[24] D. Soll,et al. Occurrence and stability of insertion sequences in Mycobacterium tuberculosis complex strains: evaluation of an insertion sequence-dependent DNA polymorphism as a tool in the epidemiology of tuberculosis , 1991, Journal of clinical microbiology.
[25] M. Pabst,et al. Monocyte responses to sulfatide from Mycobacterium tuberculosis: inhibition of priming for enhanced release of superoxide, associated with increased secretion of interleukin-1 and tumor necrosis factor alpha, and altered protein phosphorylation , 1991, Infection and immunity.
[26] W. Schaefer,et al. Lipids of Putative Relevance to Virulence in Mycobacterium tuberculosis: Correlation of Virulence with Elaboration of Sulfatides and Strongly Acidic Lipids , 1974, Infection and immunity.
[27] R. H.J.MULLE. THE RELATION OF RECOMBINATION TO MUTATIONAL ADVANCE , 2002 .
[28] W Arber,et al. Genetic variation: molecular mechanisms and impact on microbial evolution. , 2000, FEMS microbiology reviews.
[29] J. Musser. Molecular population genetic analysis of emerged bacterial pathogens: selected insights. , 1996, Emerging infectious diseases.
[30] B. Healy. From the National Institutes of Health. , 1992, JAMA.
[31] I. Orskov,et al. From the national institutes of health. Summary of a workshop on the clone concept in the epidemiology, taxonomy, and evolution of the enterobacteriaceae and other bacteria. , 1983, The Journal of infectious diseases.