A sprayable plant treatment that increases drought resilience without affecting productivity by modulating lignin composition via reversible CAD enzyme inhibitors. Validated approach enabling on-demand application across plant species.
This project develops an on-demand sprayable treatment that increases plant resilience to drought without compromising growth or productivity. The approach works by modulating lignin composition—specifically increasing lignin aldehyde content—through reversible inhibitors of CINNAMYL ALCOHOL DEHYDROGENASE (CAD) enzymes. Unlike genetic modification, this universal chemical strategy can be applied across plant species without altering their natural habitat, offering a flexible and non-toxic solution for agriculture and forestry.
The technology addresses a critical challenge in agriculture: improving drought tolerance while maintaining yield. By targeting lignin biosynthesis at the enzymatic level, the treatment provides a practical, externally applied alternative to breeding or transgenic approaches.
Core mechanism:
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The project is built on a strong foundation of prior validation. Previous work has demonstrated that increasing lignin aldehydes in the model plant Arabidopsis does not reduce growth or productivity while enabling better drought sustainment and recovery. The research team has established the necessary biological model systems, imaging tools, and recombinant CAD proteins required for chemical screening and validation. The current stage involves identifying and validating specific CAD inhibitors through both repurposing existing compounds and discovering new candidates from compound libraries, with subsequent testing in cell cultures and whole plants to confirm drought resilience benefits.
Stockholm University is a large, comprehensive public research university in Stockholm, Sweden, with more than 30,000 full-time-equivalent students, about 1,200 doctoral students, and 5,400 employees. Its industry engagement combines company-linked research with contract education, professional development, and business participation in teaching and course design. Corporate R&D teams can connect with student talent through internships, thesis projects, career events, and recruitment channels, while collaboration is often organized at department level. Research is supported by competitive national and international funding, including the Swedish Research Council, Formas, the European Research Council, and the Wallenberg Foundations. The Innovation Office, SU Ventures, and Drivhuset Stockholm provide routes toward IP protection, licensing, partnerships, and venture creation.