Aug 2026· Planta· Vol 264· 0 citations· 56 references
Medicine
TL;DR
An in vitro CRISPR/Cas9–RNP system efficiently cleaves CcYUC1 in Coffea canephora, establishing a foundation for DNA-free genome editing in coffee and providing a basis for future functional studies of auxin biosynthesis during somatic embryogenesis.
Cpf1-based genome editing tools were developed for N. punctiforme, and a single-step cloning strategy was devised, allowing for rapid assembly of editing plasmids, and improved conjugation protocols for genetic transfer from E. coli to N. punctiforme were implemented.
J. Ryder, Soohan Woo, Ailea A. Blahm et al.· bioRxiv· 0 citations
This study overcomes a key bottleneck in CRISPR/Cas delivery to small insect embryos, opening new avenues for rapid, high-throughput, and cost-effective RNP delivery methods in insect embryos.
Suluguri Ramesh, Neeraj Kumar, Amalendu Ghosh· World Journal of Microbiolog...· 0 citations
A substantial decrease in menthofuran content in the essential oil of the edited line #10 compared to the wild-type control is revealed, thereby demonstrating a viable strategy for improving mint essential oil quality through genome-editing.
The first successful application of CRISPR/Cas9 genome editing in G. boninense is reported, establishing a robust platform for functional genetic analysis and dissecting pathogenicity in G. boninense, ultimately advancing strategies to mitigate basal stem rot disease in oil palm.
Anis Farhan Fatimi Ab Wahab, Mohd Azinuddin Ahmad Mokhtar, S. Vetaryan et al.· Journal of Fungi· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.