Genome analysis of the esca-associated Basidiomycetes Fomitiporia mediterranea, Fomitiporia polymorpha, Inonotus vitis, and Tropicoporus texanus reveals virulence factor repertoires characteristic of white-rot fungi

Author:

Garcia Jadran F1ORCID,Figueroa-Balderas Rosa1ORCID,Comont Gwenaëlle2ORCID,Delmas Chloé E L2ORCID,Baumgartner Kendra3ORCID,Cantu Dario14ORCID

Affiliation:

1. Department of Viticulture and Enology, University of California, Davis , Davis, CA 95616 , USA

2. INRAE, Bordeaux Sciences Agro, ISVV, SAVE , 33140 Villenave d’Ornon , France

3. Crops Pathology and Genetics Research Unit, United States Department of Agriculture—Agricultural Research Service , Davis, CA 95616 , USA

4. Genome Center, University of California, Davis , Davis, CA 95616 , USA

Abstract

Abstract Some Basidiomycete fungi are important plant pathogens, and certain species have been associated with the grapevine trunk disease esca. We present the genomes of 4 species associated with esca: Fomitiporia mediterranea, Fomitiporia polymorpha, Tropicoporus texanus, and Inonotus vitis. We generated high-quality phased genome assemblies using long-read sequencing. The genomic and functional comparisons identified potential virulence factors, suggesting their roles in disease development. Similar to other white-rot fungi known for their ability to degrade lignocellulosic substrates, these 4 genomes encoded a variety of lignin peroxidases and carbohydrate-active enzymes (CAZymes) such as CBM1, AA9, and AA2. The analysis of gene family expansion and contraction revealed dynamic evolutionary patterns, particularly in genes related to secondary metabolite production, plant cell wall decomposition, and xenobiotic degradation. The availability of these genomes will serve as a reference for further studies of diversity and evolution of virulence factors and their roles in esca symptoms and host resistance.

Funder

USDA National Institute of Food and Agriculture Specialty Crop Research Initiative

Publisher

Oxford University Press (OUP)

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