Vivian Zhong, Michaela A Jones, Avaniek Cabales, Alice Gevorgyan, René Inckemann, Anna A Johnson, Sumudu S Karunadasa, Amanda M Forti, Shou-Ling Xu, Aditya M Kunjapur, Jennifer A N Brophy
Programmable control of microbial gene expression by plant hosts could enable a new generation of precision agricultural biotechnology. Here, using O -methyl-L-tyrosine (OMY) as a model compound, we establish non-canonical amino acids (ncAAs) as a tool for plant-based control of associated microbial activity. We use genetic code expansion to engineer OMY-dependent control of protein synthesis in the soil bacterium Bacillus subtilis. Then, we engineer agronomically diverse plants, including Arabidopsis, tomato and poplar, to biosynthesize OMY. We show that plant-derived OMY can stimulate gene expression in both model and wild soil bacteria while also demonstrating that inducible and tissue-specific expression of a single biosynthetic enzyme by the plant enables on-demand control over microbial activity. This work establishes ncAAs as a tool for programming plant-microbe partnerships.