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◆ Frontiers in Plant Science2026-08-25· Genome editing

CRISPR–Cas technologies for precision genome editing in plants: advances, applications, and future perspectives

Syed Riaz Ahmed, Jahangir Khan, Iram Ijaz, Zeba Ali, Ijaz Rasul, Muhammad Aslam, Naeem Ud-Din, Yongming Liu, Muhammad Sayyam Tariq, Milan Skalický, Daniel K. Y. Tan

原始摘要(英文原文)· Original abstract
Developing climate-smart crops with enhanced crop productivity, nutritional quality, resistance to biological and environmental stressors is vital for global food security. While hybrid breeding forms the cornerstone of modern crop improvement, conventional breeding approaches are limited by genetic barriers and prolonged breeding cycles. CRISPR–Cas based genome editing has revolutionized plant biology by allowing precise, efficient, and multiplex genetic modifications. This review provides a comprehensive synthesis of a recent advances in CRISPR–Cas technologies and their strategic applications in crop genetics and hybrid breeding. We summarize major genome-editing strategies, including gene knock-out, base editing (BE), knock-in, gene replacement, epigenome editing, and transcriptional regulation. Furthermore, we contrast stable, transient, and DNA-free delivery systems, highlighting ribonucleoprotein (RNP)-mediated delivery for minimizing off-target effects and avoiding transgene integration. We showcase how these technologies accelerate hybrid breeding by engineering male sterility systems, fixing heterosis, and generating high-throughput mutant libraries for trait discovery. Finally, we synthesize major bottlenecks in tissue culture-independent transformation and delivery systems, while outlining how emerging paradigms like de novo domestication and synthetic biology will shape the future of climate-resilient agriculture.
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CRISPR–Cas technologies for precision genome editing in plants: advances, applications, and future perspectives — 科研速览 Science Skim