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A fungal member of the Arabidopsis thaliana phyllosphere antagonizes Albugo laibachii via a GH25 lysozyme.


ABSTRACT: Plants are not only challenged by pathogenic organisms but also colonized by commensal microbes. The network of interactions these microbes establish with their host and among each other is suggested to contribute to the immune responses of plants against pathogens. In wild Arabidopsis thaliana populations, the oomycete pathogen Albugo laibachii plays an influential role in structuring the leaf phyllosphere. We show that the epiphytic yeast Moesziomyces bullatus ex Albugo on Arabidopsis, a close relative of pathogenic smut fungi, is an antagonistic member of the A. thaliana phyllosphere, which reduces infection of A. thaliana by A. laibachii. Combination of transcriptomics, reverse genetics, and protein characterization identified a GH25 hydrolase with lysozyme activity as a major effector of this microbial antagonism. Our findings broaden the understanding of microbial interactions within the phyllosphere, provide insights into the evolution of epiphytic basidiomycete yeasts, and pave the way for novel biocontrol strategies.

SUBMITTER: Eitzen K 

PROVIDER: S-EPMC7870139 | biostudies-literature | 2021 Jan

REPOSITORIES: biostudies-literature

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A fungal member of the <i>Arabidopsis thaliana</i> phyllosphere antagonizes <i>Albugo laibachii</i> via a GH25 lysozyme.

Eitzen Katharina K   Sengupta Priyamedha P   Kroll Samuel S   Kemen Eric E   Doehlemann Gunther G  

eLife 20210111


Plants are not only challenged by pathogenic organisms but also colonized by commensal microbes. The network of interactions these microbes establish with their host and among each other is suggested to contribute to the immune responses of plants against pathogens. In wild <i>Arabidopsis thaliana</i> populations, the oomycete pathogen <i>Albugo laibachii</i> plays an influential role in structuring the leaf phyllosphere. We show that the epiphytic yeast <i>Moesziomyces bullatus</i> ex <i>Albugo  ...[more]

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