Breeding rice for yield improvement through CRISPR/Cas9 genome editing method: current technologies and examples
Date
2024
Journal Title
Journal ISSN
Volume Title
Publisher
Springer Nature Publishing AG
Abstract
The impending climate change is threatening the rice productivity of the Asian subcontinent as instances of crop failures
due to adverse abiotic and biotic stress factors are becoming common occurrences. CRISPR-Cas9 mediated genome editing ofers a potential solution for improving rice yield as well as its stress adaptation. This technology allows modifcation
of plant’s genetic elements and is not dependent on foreign DNA/gene insertion for incorporating a particular trait. In this
review, we have discussed various CRISPR-Cas9 mediated genome editing tools for gene knockout, gene knock-in, simultaneously disrupting multiple genes by multiplexing, base editing and prime editing the genes. The review here also presents
how these genome editing technologies have been employed to improve rice productivity by directly targeting the yield
related genes or by indirectly manipulating various abiotic and biotic stress responsive genes. Lately, many countries treat
genome-edited crops as non-GMOs because of the absence of foreign DNA in the fnal product. Thus, genome edited rice
plants with improved yield attributes and stress resilience are expected to be accepted by the public and solve food crisis of
a major portion of the globe.
Description
Accepted date: 27 February 2024
Keywords
CRISPR-Cas9, Double stranded break, gRNA, Homology directed repair, Non-homologous end joining, Site-directed-nucleases, Rice yield
Citation
Physiology and Molecular Biology of Plants, 30(2): 185-198
