Synthetic biology platform using engineered Bacillus subtilis to produce novel antifungal and anti-oomycete natural products. Enables sustainable biocontrol agents for crop protection against pathogens like Fusarium, Rhizoctonia, and Pythium.
Fungal and oomycete pathogens cause billions of dollars in agricultural losses worldwide. This synthetic biology platform addresses this challenge by enabling the capture and inducible heterologous expression of biosynthetic gene clusters (BGCs) that produce novel antifungal and anti-oomycete natural products in Bacillus subtilis. The approach simplifies manufacturing metabolites with broad-spectrum protection against multiple pathogens while supporting more sustainable farming practices. The platform targets seed rot and other diseases caused by pathogens such as Fusarium oxysporum, Rhizoctonia solani, and Pythium ultimum, offering biorational biocontrol agents as alternatives to traditional chemical treatments.
The platform has reached proof-of-concept stage. The team has successfully cloned and expressed the Bacillusin A pathway in Bacillus subtilis, confirming the synthetic biology approach works. Dozens of potent Bacillus strains have been identified, sequenced, and analyzed for protective pathways, positioning them for downstream metabolite isolation. Next-stage work will focus on cloning additional anti-fungal and anti-oomycete BGCs, expressing bioactive metabolites at scale in the engineered B. subtilis host, and validating efficacy against the Fusarium, Rhizoctonia, and Pythium pathosystem. The platform is ready for partnership to advance toward large-scale production and field validation.
Varigen Biosciences Corporation (operating as Varizymes) is a biotechnology company focused on developing rapid, field-based molecular diagnostic solutions for the aquaculture industry. The company specializes in isothermal amplification technologies to provide point-of-care testing for aquatic pathogens, aiming to improve disease management and operational efficiency for fish farmers.