Papiliotrema terrestris PT22AV VOCs contribute to soil suppressiveness against soil-borne fungal pathogens

Read the full article

Listed in

This article is not in any list yet, why not save it to one of your lists.
Log in to save this article

Abstract

Soil-borne fungal diseases are difficult to manage in intensive horticulture, and the microbial processes underlying disease-suppressive soils remain incompletely understood. Here, we investigate the ability of the yeast Papiliotrema terrestris PT22AV to control Fusarium oxysporum, Rhizoctonia solani , and Sclerotinia minor , as well as its mechanisms of action. PT22AV persisted in bulk soil, colonized the rhizosphere, and induced long-lasting, soil-dependent restructuring of resident microbial communities. Its antifungal activity was mediated primarily by volatile compounds whose production was linked to branched-chain amino acid catabolism through the Ehrlich pathway. Consistently, a gap1 Δ mutant impaired in amino acid transport showed reduced volatile-mediated inhibition in the presence of L-leucine and L-valine. These findings provide a first step towards defining the contribution of soil-associated yeasts to disease suppressiveness and establish PT22AV as a model for investigating metabolically regulated, volatile-driven biocontrol at the soil–root interface.

Article activity feed