CRISPR-Cas systems provide bacteria and archaea with adaptive, heritable immunity against their viruses (bacteriophages and phages) and other parasitic genetic elements. CRISPR-Cas systems are highly diverse, and we are only beginning to understand their relative importance in phage defense. In this review, we will discuss when and why CRISPR-Cas immunity against phages evolves, and how this, in turn, selects for the evolution of immune evasion by phages. Finally, we will discuss our current understanding of if, and when, we observe coevolution between CRISPR-Cas systems and phages, and how this may be influenced by the mechanism of CRISPR-Cas immunity
Bacteria and phages co‐evolve in their environments through an arm‐race with bacteria developing str...
Bacteria have evolved diverse defense mechanisms that allow them to fight viral attacks. One such me...
ABSTRACT Many bacteria rely on CRISPR-Cas systems to provide adaptive immunity against phages, preda...
This is the author accepted manuscript. The final version is available from Cell Press via the DOI i...
In bacteria and archaea, clustered regularly interspaced short palindromic repeats (CRISPR) and CRIS...
Some phages encode anti-CRISPR (acr) genes, which antagonize bacterial CRISPR-Cas immune systems by ...
Bacteria and archaea have evolved an adaptive, heritable immune system that recognizes and protects ...
Some phages encode anti-CRISPR (acr) genes, which antagonize bacterial CRISPR-Cas immune systems by ...
UnlabelledMany bacteria rely on CRISPR-Cas systems to provide adaptive immunity against phages, pred...
Bacteria have adaptive immunity against viruses (phages) in the form of CRISPR-Cas immune systems. C...
UnlabelledMany bacteria rely on CRISPR-Cas systems to provide adaptive immunity against phages, pred...
CRISPR-Cas adaptive immune systems are found in bacteria and archaea and provide defence against pha...
Bacteria and phages co‐evolve in their environments through an arm‐race with bacteria developing str...
Bacteria and phages co‐evolve in their environments through an arm‐race with bacteria developing str...
Bacteria are under the constant threat of viral predation and have therefore developed several defen...
Bacteria and phages co‐evolve in their environments through an arm‐race with bacteria developing str...
Bacteria have evolved diverse defense mechanisms that allow them to fight viral attacks. One such me...
ABSTRACT Many bacteria rely on CRISPR-Cas systems to provide adaptive immunity against phages, preda...
This is the author accepted manuscript. The final version is available from Cell Press via the DOI i...
In bacteria and archaea, clustered regularly interspaced short palindromic repeats (CRISPR) and CRIS...
Some phages encode anti-CRISPR (acr) genes, which antagonize bacterial CRISPR-Cas immune systems by ...
Bacteria and archaea have evolved an adaptive, heritable immune system that recognizes and protects ...
Some phages encode anti-CRISPR (acr) genes, which antagonize bacterial CRISPR-Cas immune systems by ...
UnlabelledMany bacteria rely on CRISPR-Cas systems to provide adaptive immunity against phages, pred...
Bacteria have adaptive immunity against viruses (phages) in the form of CRISPR-Cas immune systems. C...
UnlabelledMany bacteria rely on CRISPR-Cas systems to provide adaptive immunity against phages, pred...
CRISPR-Cas adaptive immune systems are found in bacteria and archaea and provide defence against pha...
Bacteria and phages co‐evolve in their environments through an arm‐race with bacteria developing str...
Bacteria and phages co‐evolve in their environments through an arm‐race with bacteria developing str...
Bacteria are under the constant threat of viral predation and have therefore developed several defen...
Bacteria and phages co‐evolve in their environments through an arm‐race with bacteria developing str...
Bacteria have evolved diverse defense mechanisms that allow them to fight viral attacks. One such me...
ABSTRACT Many bacteria rely on CRISPR-Cas systems to provide adaptive immunity against phages, preda...