Bacterial defences: mechanisms, evolution and antimicrobial resistance
Throughout their evolutionary history, bacteria have faced diverse threats from other microorganisms, including competing bacteria, bacteriophages and predators. In response to these threats, they have evolved sophisticated defence mechanisms that today also protect bacteria against antibiotics and...
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Published in | Nature reviews. Microbiology Vol. 21; no. 8; pp. 519 - 534 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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Nature Publishing Group UK
01.08.2023
Nature Publishing Group |
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Abstract | Throughout their evolutionary history, bacteria have faced diverse threats from other microorganisms, including competing bacteria, bacteriophages and predators. In response to these threats, they have evolved sophisticated defence mechanisms that today also protect bacteria against antibiotics and other therapies. In this Review, we explore the protective strategies of bacteria, including the mechanisms, evolution and clinical implications of these ancient defences. We also review the countermeasures that attackers have evolved to overcome bacterial defences. We argue that understanding how bacteria defend themselves in nature is important for the development of new therapies and for minimizing resistance evolution.
In this Review, Smith, Foster and colleagues explore the protective strategies of bacteria, including the mechanisms, evolution and clinical implications of these ancient defences. They discuss new therapies for treating disease and how to minimize resistance evolution. |
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AbstractList | Throughout their evolutionary history, bacteria have faced diverse threats from other microorganisms, including competing bacteria, bacteriophages and predators. In response to these threats, they have evolved sophisticated defence mechanisms that today also protect bacteria against antibiotics and other therapies. In this Review, we explore the protective strategies of bacteria, including the mechanisms, evolution and clinical implications of these ancient defences. We also review the countermeasures that attackers have evolved to overcome bacterial defences. We argue that understanding how bacteria defend themselves in nature is important for the development of new therapies and for minimizing resistance evolution.
In this Review, Smith, Foster and colleagues explore the protective strategies of bacteria, including the mechanisms, evolution and clinical implications of these ancient defences. They discuss new therapies for treating disease and how to minimize resistance evolution. Throughout their evolutionary history, bacteria have faced diverse threats from other microorganisms, including competing bacteria, bacteriophages and predators. In response to these threats, they have evolved sophisticated defence mechanisms that today also protect bacteria against antibiotics and other therapies. In this Review, we explore the protective strategies of bacteria, including the mechanisms, evolution and clinical implications of these ancient defences. We also review the countermeasures that attackers have evolved to overcome bacterial defences. We argue that understanding how bacteria defend themselves in nature is important for the development of new therapies and for minimizing resistance evolution.In this Review, Smith, Foster and colleagues explore the protective strategies of bacteria, including the mechanisms, evolution and clinical implications of these ancient defences. They discuss new therapies for treating disease and how to minimize resistance evolution. Throughout their evolutionary history, bacteria have faced diverse threats from other microorganisms, including competing bacteria, bacteriophages and predators. In response to these threats, they have evolved sophisticated defence mechanisms that today also protect bacteria against antibiotics and other therapies. In this Review, we explore the protective strategies of bacteria, including the mechanisms, evolution and clinical implications of these ancient defences. We also review the countermeasures that attackers have evolved to overcome bacterial defences. We argue that understanding how bacteria defend themselves in nature is important for the development of new therapies and for minimizing resistance evolution. |
Author | Foster, Kevin R. Smith, William P. J. Nadell, Carey D. Wucher, Benjamin R. |
Author_xml | – sequence: 1 givenname: William P. J. orcidid: 0000-0002-9270-7614 surname: Smith fullname: Smith, William P. J. email: william.smith-4@manchester.ac.uk organization: Division of Genomics, Infection and Evolution, University of Manchester, Department of Biology, University of Oxford, Department of Biochemistry, University of Oxford – sequence: 2 givenname: Benjamin R. orcidid: 0000-0002-2410-212X surname: Wucher fullname: Wucher, Benjamin R. organization: Department of Biological sciences, Dartmouth College – sequence: 3 givenname: Carey D. orcidid: 0000-0003-1751-4895 surname: Nadell fullname: Nadell, Carey D. organization: Department of Biological sciences, Dartmouth College – sequence: 4 givenname: Kevin R. orcidid: 0000-0003-4687-6633 surname: Foster fullname: Foster, Kevin R. email: kevin.foster@biology.ox.ac.uk organization: Department of Biology, University of Oxford, Department of Biochemistry, University of Oxford |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/37095190$$D View this record in MEDLINE/PubMed |
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Title | Bacterial defences: mechanisms, evolution and antimicrobial resistance |
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