A plant biotechnology platform using asymptomatic subgenomic viral vectors to deliver gene silencing for crop protection. The technology includes a kill-switch mechanism that suppresses viral vector expression and enables both biotic and nanoparticle-based delivery, offering a flexible approach to antiviral defense and real-time gene modulation in crops.
This technology leverages asymptomatic subgenomic viral vectors to deliver targeted gene silencing in plants, providing a versatile crop protection platform. By enabling both the suppression of endogenous genes and the introduction of heterologous genes, the system allows farmers and growers to respond to environmental stresses and optimize crop productivity in real time. A key innovation is an integrated kill-switch silencing vector capable of shutting down viral vector activity, functioning as a general antiviral defense mechanism. The platform supports both bio-contained biotic delivery (via Agrobacterium) and non-biotic nanoparticle-based delivery, giving operators flexibility in how the technology is applied in laboratory, greenhouse, or field settings.
Core mechanism:
Delivery options:
Broader program integration:
The technology is at an early-to-mid stage of development. Preliminary validation has demonstrated proof-of-concept for the kill-switch silencing mechanism using a partial tandem repeat of the virus's A-component with nano-luciferase as a reporter. Future validation efforts will incorporate the B-component of the bi-partite virus to demonstrate attenuation of systemic viral spread within host plants, and will directly compare nanoparticle and Agrobacterium delivery methods to evaluate efficiency and feasibility for field application. The platform is positioned for further development and partnership as part of a larger gene expression and crop protection program.