The effector protein Avr2 of the xylem-colonizing fungus Fusarium oxysporum activates the tomato resistance protein I-2 intracellularly

Petra M. Houterman, Lisong Ma, Gerben Van Ooijen, Marianne J. De Vroomen, Ben J.C. Cornelissen, Frank L.W. Takken, Martijn Rep

Research output: Contribution to journalArticlepeer-review

Abstract

To promote host colonization, many plant pathogens secrete effector proteins that either suppress or counteract host defences. However, when these effectors are recognized by the host's innate immune system, they trigger resistance rather than promoting virulence. Effectors are therefore key molecules in determining disease susceptibility or resistance. We show here that Avr2, secreted by the vascular wilt fungus Fusarium oxysporum f. sp. lycopersici (Fol), shows both activities: it is required for full virulence in a susceptible host and also triggers resistance in tomato plants carrying the resistance gene I-2. Point mutations in AVR2, causing single amino acid changes, are associated with I-2-breakingFol strains. These point mutations prevent recognition by I-2, both in tomato and when both genes are co-expressed in leaves of Nicotiana benthamiana. Fol strains carrying the Avr2 variants are equally virulent, showing that virulence and avirulence functions can be uncoupled. Although Avr2 is secreted into the xylem sap when Fol colonizes tomato, the Avr2 protein can be recognized intracellularly by I-2, implying uptake by host cells.
Original languageEnglish
Pages (from-to)970-978
Number of pages9
JournalThe Plant Journal
Volume58
Issue number6
Early online date23 Mar 2009
DOIs
Publication statusPublished - 30 Jun 2009

Keywords

  • disease resistance
  • gene-for-gene
  • xylem
  • effector
  • tomato

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