PubMed · 42736077
From feasibility to predictability: prime editing redefines precision breeding in plants.
Abstract
Originally developed in mammalian systems as a genome editing strategy without double-strand breaks, prime editing (PE) has been adapted for precise genome modifications. However, its deployment revealed key limitations, including reduced efficiency, strong locus dependency, low germline transmission, and somatic chimerism. Consequently, diverse PE variants have emerged, resulting in fragmented landscape of architectures with context-dependent and inconsistent performance. This review consolidates these advances and outlines emerging design principles behind plant PE systems. It evaluates optimization strategies at multiple levels, discusses their applications in monocots and eudicots, and highlights persistent bottlenecks and future directions, including AI-guided protein engineering and improved delivery strategies. These advances position PE as a rapidly evolving platform toward enabling precision breeding in plants.
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Muhammad Jawad Akbar Awan, Sameer H Qari, Zujun Yin, Niaz Ahmad, Shahid Mansoor. 2026-09-14. From feasibility to predictability: prime editing redefines precision breeding in plants.. https://doi.org/10.1016/j.tplants.2026.08.008
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