Antibiotrophs: The complexity of antibiotic-subsisting and antibiotic-resistant microorganisms.
Identifieur interne : 000146 ( Main/Exploration ); précédent : 000145; suivant : 000147Antibiotrophs: The complexity of antibiotic-subsisting and antibiotic-resistant microorganisms.
Auteurs : Yvon Woappi ; Prashant Gabani ; Arya Singh [États-Unis] ; Om V. SinghSource :
- Critical reviews in microbiology [ 1549-7828 ] ; 2016.
Descripteurs français
- KwdFr :
- Anti-infectieux (métabolisme), Anti-infectieux (pharmacologie), Bactéries (), Bactéries (génétique), Bactéries (métabolisme), Biologie informatique (), Champignons (), Champignons (génétique), Champignons (métabolisme), Gènes MDR, Humains, Mutation, Navigateur, Résistance microbienne aux médicaments, Transfert horizontal de gène.
- MESH :
- génétique : Bactéries, Champignons.
- métabolisme : Anti-infectieux, Bactéries, Champignons.
- pharmacologie : Anti-infectieux.
- Bactéries, Biologie informatique, Champignons, Gènes MDR, Humains, Mutation, Navigateur, Résistance microbienne aux médicaments, Transfert horizontal de gène.
English descriptors
- KwdEn :
- Anti-Infective Agents (metabolism), Anti-Infective Agents (pharmacology), Bacteria (drug effects), Bacteria (genetics), Bacteria (metabolism), Computational Biology (methods), Drug Resistance, Microbial, Fungi (drug effects), Fungi (genetics), Fungi (metabolism), Gene Transfer, Horizontal, Genes, MDR, Humans, Mutation, Web Browser.
- MESH :
- chemical , metabolism : Anti-Infective Agents.
- chemical , pharmacology : Anti-Infective Agents.
- drug effects : Bacteria, Fungi.
- genetics : Bacteria, Fungi.
- metabolism : Bacteria, Fungi.
- methods : Computational Biology.
- Drug Resistance, Microbial, Gene Transfer, Horizontal, Genes, MDR, Humans, Mutation, Web Browser.
Abstract
Widespread overuse of antibiotics has led to the emergence of numerous antibiotic-resistant bacteria; among these are antibiotic-subsisting strains capable of surviving in environments with antibiotics as the sole carbon source. This unparalleled expansion of antibiotic resistance reveals the potent and diversified resistance abilities of certain bacterial strains. Moreover, these strains often possess hypermutator phenotypes and virulence transmissibility competent for genomic and proteomic propagation and pathogenicity. Pragmatic and prospicient approaches will be necessary to develop efficient therapeutic methods against such bacteria and to understand the extent of their genomic adaptability. This review aims to reveal the niches of these antibiotic-catabolizing microbes and assesses the underlying factors linking natural microbial antibiotic production, multidrug resistance, and antibiotic-subsistence.
DOI: 10.3109/1040841X.2013.875982
PubMed: 24495094
Affiliations:
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Le document en format XML
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<front><div type="abstract" xml:lang="en">Widespread overuse of antibiotics has led to the emergence of numerous antibiotic-resistant bacteria; among these are antibiotic-subsisting strains capable of surviving in environments with antibiotics as the sole carbon source. This unparalleled expansion of antibiotic resistance reveals the potent and diversified resistance abilities of certain bacterial strains. Moreover, these strains often possess hypermutator phenotypes and virulence transmissibility competent for genomic and proteomic propagation and pathogenicity. Pragmatic and prospicient approaches will be necessary to develop efficient therapeutic methods against such bacteria and to understand the extent of their genomic adaptability. This review aims to reveal the niches of these antibiotic-catabolizing microbes and assesses the underlying factors linking natural microbial antibiotic production, multidrug resistance, and antibiotic-subsistence.</div>
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