Transgenic research

The growing role of CRISPR and gene editing in improving crops worldwide

Updated

Abstract

CRISPR technology may enhance crop production by enabling precise genetic modifications.

  • CRISPR-Cas systems, initially discovered in bacteria, are now used for targeted genome editing in plants.
  • The CRISPR-Cas9 system can introduce specific double-strand breaks in DNA, allowing for accurate genetic changes.
  • Recent advancements include base editing, prime editing, and epigenome editing, broadening the scope of crop improvement.
  • Potential benefits of CRISPR-edited crops include improved yield, stress tolerance, disease resistance, and nutritional content.
  • Challenges such as off-target effects, regulatory issues, and public acceptance may impact the adoption of CRISPR in agriculture.
  • Combining CRISPR with technologies like synthetic biology and artificial intelligence could accelerate crop development further.

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Funding

Competing interests

Declarations. Conflict of interest: The authors declare no conflict of interest.
PubMed

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