Double-stranded RNA (dsRNA) technologies, acting through RNA interference, provide a sequence-specific and non-transgenic strategy to suppress viral replication and have emerged as promising non-transgenic solutions for crop protection.
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Double-stranded RNA technologies
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dsRNA technologies
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Recent advances in industry-scale dsRNA production and nanomaterial-based formulations have improved dsRNA stability, uptake, and persistence in planta, supporting field application feasibility.
Quoted textsource-backed
Recent advances in industry-scale dsRNA production and nanomaterial-based formulations have improved dsRNA stability, uptake, and persistence in planta, supporting the feasibility of field application.
SIGS and related dsRNA-based plant virus control approaches remain limited by rapid environmental degradation, restricted systemic mobility, high production costs, and unresolved biosafety and regulatory issues.
Quoted textsource-backed
However, major challenges persist, such as rapid environmental degradation, restricted systemic mobility, high production costs, and unresolved biosafety and regulatory issues.
Double-stranded RNA technologies acting through RNA interference provide a sequence-specific and non-transgenic strategy to suppress plant viral replication.
Quoted textsource-backed
Double-stranded RNA (dsRNA) technologies, acting through RNA interference, provide a sequence-specific and non-transgenic strategy to suppress viral replication