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Vesicular and non-vesicular extracellular small RNAs direct gene silencing in a plant-interacting bacterium

Nature Communications. 2025-04; 
Antinéa Ravet, Jérôme Zervudacki, Meenu Singla-Rastogi, Magali Charvin, Odon Thiebeauld, Alvaro L. Perez-Quintero, Lucas Courgeon, Adrien Candat, Liam Lebeau, Antonio Emidio Fortunato, Venugopal Mendu & Lionel Navarro Université PSL
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Gene Synthesis The IR-CFA6/HRPL and IR-CYP51 constructs containing EcoRI and SalI sites at both extremities were synthesized by GenScript®, To generate the WT hrpL and the mut hrpL plasmids, the wild type (WT) hrpL sequence was amplified from the genomic DNA isolated from Pto DC3000, while the mutant hrpL sequence was amplified from a mutated sequence synthesized by GenScript®. Get A Quote

摘要

Extracellular plant small RNAs (sRNAs) and/or double-stranded RNA (dsRNA) precursors act as triggers of RNAi in interacting filamentous pathogens. However, whether any of these extracellular RNA species direct gene silencing in plant-interacting bacteria remains unknown. Here, we show that Arabidopsis transgenic plants expressing sRNAs directed against virulence factors of a Pseudomonas syringae strain, reduce its pathogenesis. This Antibacterial Gene Silencing (AGS) phenomenon is directed by Dicer-Like (DCL)-dependent antibacterial sRNAs, but not cognate dsRNA precursors. Three populations of active extracellular sRNAs were recovered in the apoplast of these transgenic plants. The first one is mainly non-vesic... More

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