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OmniEdit: A unified CRISPR/Cas9 platform for precise genome engineering and strain optimization of the Cordyceps militaris cell factory

作者:Liu M, Chen S, Wang J, Meng G, Dong C · 发表于:Synthetic and systems biotechnology · 年份:2026 · DOI:10.1016/j.synbio.2026.04.015 · 研究领域:Fluorescent protein tagging、Large fragment deletion、One-step dual-gene knockout、Point mutation、uORF editing

Cordyceps militaris serves as a critical microbial cell factory for high-value bioactive compounds; however, the scarcity of versatile and sophisticated genome-editing toolsets significantly restricts its systematic metabolic engineering. This study aimed to develop OmniEdit, a unified and highly efficient CRISPR/Cas9-based platform, to streamline diverse and complex genetic modifications for strain engineering. We integrated multiple editing modalities into a standardized workflow utilizing an AMA1-based CRISPR/Cas9 system combined with customized homologous donor templates. The platform's robustness was systematically validated through five distinct engineering tasks delivered via PEG-mediated transformation, including precise point mutation, in situ fluorescent protein tagging, large biosynthetic gene cluster (BGC) deletion, regulatory upstream open reading frame (uORF) disruption, and one-step multiplexed gene knockout. OmniEdit achieved the first CRISPR-based precise point mutation (∼4-5% efficiency) in this fungus. It enabled the surgical excision of an entire ∼26 kb BGC (∼10% efficiency) and efficient one-step dual-gene knockout (∼30% efficiency). Furthermore, targeted uORF editing was implemented to modulate translational efficiency, alongside flexible protein tagging for subcellular analysis. By overcoming technical bottlenecks, OmniEdit provides a standardized, powerful toolkit for functional genomics and the systematic enhancement of C. militaris as a high-performa...