Indexed keywords
ADAPTATION;
BACTERIUM CULTURE;
CHLAMYDIA;
GENOME;
GENOME ANALYSIS;
MICROBIAL DIVERSITY;
NONHUMAN;
PARACHLAMYDIA;
PRIORITY JOURNAL;
SHORT SURVEY;
SYMBIONT;
THERMUS THERMOPHILUS;
ACANTHAMOEBA;
ANIMALS;
CHLAMYDIALES;
DNA REPAIR;
ENERGY METABOLISM;
GENOME, BACTERIAL;
GENOMICS;
SEQUENCE ANALYSIS, DNA;
SOS RESPONSE (GENETICS);
SYMBIOSIS;
THERMUS THERMOPHILUS;
BACTERIA (MICROORGANISMS);
CHLAMYDIA;
PARACHLAMYDIA;
THERMUS;
THERMUS THERMOPHILUS;
1
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Description of a wider diversity within the order Chlamydiales than currently classified
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Ossewaarde, J.M.2
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Comparative genomes of Chlamydia pneumoniae and C. trachomatis
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Genome sequence of Chlamydophila caviae (Chlamydia psittaci GPIC): Examining the role of niche-specific genes in the evolution of the Chlamydiaceae
Read T., et al. Genome sequence of Chlamydophila caviae (Chlamydia psittaci GPIC): Examining the role of niche-specific genes in the evolution of the Chlamydiaceae. Nucleic Acids Res. 31:2003;2134-2147
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Microbial minimalism: Genome reduction in bacterial pathogens
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Moran, N.A.1
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The genome sequence of the extreme thermophile Thermus thermophilus
Henne A., et al. The genome sequence of the extreme thermophile Thermus thermophilus. Nat. Biotechnol. 22:2004;547-553
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Henne, A.1
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Liebl W. Genomics taken to the extreme. Nat. Biotechnol. 22:2004;524-525
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Liebl, W.1