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Comparative genomics evidence that only protein toxins are tagging bad bugs
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scholarly article
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title
Comparative genomics evidence that only protein toxins are tagging bad bugs
(English)
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main subject
comparative genomics
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based on heuristic
inferred from title
author
Didier Raoult
series ordinal
2
object named as
Didier Raoult
author given names
Didier
author last names
Raoult
1 reference
stated in
PubMed
PubMed ID
22919573
retrieved
16 August 2022
author name string
Kalliopi Georgiades
series ordinal
1
author given names
Kalliopi
author last names
Georgiades
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stated in
PubMed
PubMed ID
22919573
retrieved
16 August 2022
language of work or name
English
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publication date
2011
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published in
Frontiers in Cellular and Infection Microbiology
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stated in
Crossref
volume
1
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page(s)
7
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cites work
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Abundance of type I toxin-antitoxin systems in bacteria: searches for new candidates and discovery of novel families
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Analysis of the Rickettsia africae genome reveals that virulence acquisition in Rickettsia species may be explained by genome reduction
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Resurgent Vector-Borne Diseases as a Global Health Problem
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Genome degradation is an ongoing process in Rickettsia
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Massive comparative genomic analysis reveals convergent evolution of specialized bacteria
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Genomes of the most dangerous epidemic bacteria have a virulence repertoire characterized by fewer genes but more toxin-antitoxin modules
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Rickettsial evolution in the light of comparative genomics
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Prokaryotic homologs of Argonaute proteins are predicted to function as key components of a novel system of defense against mobile genetic elements
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12 September 2017
Intracellular pathogens go extreme: genome evolution in the Rickettsiales
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Genome analysis of Minibacterium massiliensis highlights the convergent evolution of water-living bacteria
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Reductive genome evolution from the mother of Rickettsia
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12 September 2017
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Bacteriophages and pathogenicity: more than just providing a toxin?
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Antimicrobial-resistant bacteria in the community setting
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Frontal and stealth attack strategies in microbial pathogenesis
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Microbial minimalism: genome reduction in bacterial pathogens
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Induction of lysogenic bacteriophage and phage-associated toxin from group a streptococci during coculture with human pharyngeal cells
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Bacterial toxin-antitoxin gene system as containment control in yeast cells
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Bacterial protein toxins. An overview
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12 September 2017
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"Black holes" and bacterial pathogenicity: a large genomic deletion that enhances the virulence of Shigella spp. and enteroinvasive Escherichia coli
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27 September 2017
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Chromosomal toxin-antitoxin loci can diminish large-scale genome reductions in the absence of selection.
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The spirochetal chpK-chromosomal toxin-antitoxin locus induces growth inhibition of yeast and mycobacteria.
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29 November 2018
Mutagenic effects of restriction enzymes in Chinese hamster cells: evidence for high mutagenicity of Sau3AI at the hprt locus
1 reference
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reference URL
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retrieved
12 December 2020
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Identifiers
DOI
10.3389/FCIMB.2011.00007
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PMCID
3417374
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PubMed ID
22919573
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ResearchGate publication ID
230736084
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