Gene targeting is presented as a CRISPR-Cas-enabled route for programmable DNA integration in plants.
First-pass extracted concept
gene targeting
Candidate: concept label1 source documents3 linked claims
Live refresh every 5sNext refresh in 5s
Aliases
GT
Extracted Explainers
Evidence Snippets
Supporting Sources
Linked Claims
Precise DNA insertion tools in plants support applications including in-locus protein tagging, regulatory element engineering, and multi-gene stacking.
Quoted textsource-backed
These tools are transitioned from theoretical concepts to practical applications, supporting applications like in-locus protein tagging, regulatory element engineering, and multi-gene stacking.
CRISPR-Cas systems have enabled programmable DNA integration in plants using gene targeting, prime editing, and recombinase- or transposase-based platforms.
Quoted textsource-backed
CRISPR-Cas systems have enabled programmable DNA integration using tools such as gene targeting (GT), prime editing (PE), and recombinase- or transposase-based platforms.
Current precise DNA insertion approaches in plants face challenges including inefficient large-fragment insertion, delivery barriers, and regulatory hurdles.
Quoted textsource-backed
Key challenges persist, such as inefficient large-fragment insertion, delivery barriers, and regulatory hurdles.