A Domain-Centric Analysis of Oomycete Plant Pathogen Genomes Reveals Unique Protein Organization

  • Michael F. Seidl
    Theoretical Biology and Bioinformatics (M.F.S., B.S.) and Plant-Microbe Interactions (G.V.d.A.), Department of Biology, Utrecht University, 3584 CH Utrecht, The Netherlands; Centre for BioSystems Genomics, 6700 AB Wageningen, The Netherlands (M.F.S., G.V.d.A., F.G., B.S.); Graduate School Experimental Plant Sciences, 6708 PB Wageningen, The Netherlands (M.F.S.); Laboratory of Phytopathology, Plan
  • Guido Van den Ackerveken
    Theoretical Biology and Bioinformatics (M.F.S., B.S.) and Plant-Microbe Interactions (G.V.d.A.), Department of Biology, Utrecht University, 3584 CH Utrecht, The Netherlands; Centre for BioSystems Genomics, 6700 AB Wageningen, The Netherlands (M.F.S., G.V.d.A., F.G., B.S.); Graduate School Experimental Plant Sciences, 6708 PB Wageningen, The Netherlands (M.F.S.); Laboratory of Phytopathology, Plan
  • Francine Govers
    Theoretical Biology and Bioinformatics (M.F.S., B.S.) and Plant-Microbe Interactions (G.V.d.A.), Department of Biology, Utrecht University, 3584 CH Utrecht, The Netherlands; Centre for BioSystems Genomics, 6700 AB Wageningen, The Netherlands (M.F.S., G.V.d.A., F.G., B.S.); Graduate School Experimental Plant Sciences, 6708 PB Wageningen, The Netherlands (M.F.S.); Laboratory of Phytopathology, Plan
  • Berend Snel
    Theoretical Biology and Bioinformatics (M.F.S., B.S.) and Plant-Microbe Interactions (G.V.d.A.), Department of Biology, Utrecht University, 3584 CH Utrecht, The Netherlands; Centre for BioSystems Genomics, 6700 AB Wageningen, The Netherlands (M.F.S., G.V.d.A., F.G., B.S.); Graduate School Experimental Plant Sciences, 6708 PB Wageningen, The Netherlands (M.F.S.); Laboratory of Phytopathology, Plan

Abstract

<jats:title>Abstract</jats:title> <jats:p>Oomycetes comprise a diverse group of organisms that morphologically resemble fungi but belong to the stramenopile lineage within the supergroup of chromalveolates. Recent studies have shown that plant pathogenic oomycetes have expanded gene families that are possibly linked to their pathogenic lifestyle. We analyzed the protein domain organization of 67 eukaryotic species including four oomycete and five fungal plant pathogens. We detected 246 expanded domains in fungal and oomycete plant pathogens. The analysis of genes differentially expressed during infection revealed a significant enrichment of genes encoding expanded domains as well as signal peptides linking a substantial part of these genes to pathogenicity. Overrepresentation and clustering of domain abundance profiles revealed domains that might have important roles in host-pathogen interactions but, as yet, have not been linked to pathogenicity. The number of distinct domain combinations (bigrams) in oomycetes was significantly higher than in fungi. We identified 773 oomycete-specific bigrams, with the majority composed of domains common to eukaryotes. The analyses enabled us to link domain content to biological processes such as host-pathogen interaction, nutrient uptake, or suppression and elicitation of plant immune responses. Taken together, this study represents a comprehensive overview of the domain repertoire of fungal and oomycete plant pathogens and points to novel features like domain expansion and species-specific bigram types that could, at least partially, explain why oomycetes are such remarkable plant pathogens.</jats:p>

Journal

  • Plant Physiology

    Plant Physiology 155 (2), 628-644, 2010-11-30

    Oxford University Press (OUP)

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