Cas13 is listed as one of the CRISPR technologies covered by the review in the context of cereal crop improvement.
First-pass extracted concept
Cas13
Candidate: concept label2 source documents3 linked claims
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Evidence Snippets
we provide a comparative overview of Cas9, Cas12, and Cas13 systems
Recent advances in CRISPR technologies, including Cas9, Cas12, Cas13, base editing, and prime editing, have enabled targeted modification of genes and regulatory elements controlling yield, stress tolerance, and grain nutritional quality in major cereals such as rice, wheat, maize, and barley.
Supporting Sources
Linked Claims
Alternative CRISPR effectors may be leveraged to improve genome and transcriptome editing precision.
Cas9, Cas12, Cas13, base editing, and prime editing have enabled targeted modification of genes and regulatory elements controlling yield, stress tolerance, and grain nutritional quality in rice, wheat, maize, and barley.
Quoted textsource-backed
Recent advances in CRISPR technologies, including Cas9, Cas12, Cas13, base editing, and prime editing, have enabled targeted modification of genes and regulatory elements controlling yield, stress tolerance, and grain nutritional quality in major cereals such as rice, wheat, maize, and barley.
Cas9, Cas12, and Cas13 have distinct target specificities, mechanisms of action, and off-target profiles.