4.8 Article

The Magnaporthe oryzae effector AVR1CO39 is translocated into rice cells independently of a fungal-derived machinery

期刊

PLANT JOURNAL
卷 74, 期 1, 页码 1-12

出版社

WILEY-BLACKWELL
DOI: 10.1111/tpj.12099

关键词

effector; AVR protein; pathogenic fungi; Magnaporthe oryzae; rice; Oryza sativa; disease resistance

资金

  1. Genoplante Programme (Project 'Interaction Rice Magnaporthe')
  2. Agropolis Foundation [0802-023]

向作者/读者索取更多资源

Effector proteins are key elements in plantfungal interactions. The rice blast fungus Magnaporthe oryzae secretes numerous effectors that are suspected to be translocated inside plant cells. However, their cellular targets and the mechanisms of translocation are still unknown. Here, we have identified the open reading frame (ORF3) corresponding to the M.oryzae avirulence gene AVR1CO39 that interacts with the rice resistance gene PiCO39 and encodes a small secreted protein without homology to other proteins. We demonstrate that AVR1CO39 is specifically expressed and secreted at the plantfungal interface during the biotrophic phase of infection. Live-cell imaging with M.oryzae transformants expressing a translational fusion between AVR1CO39 and the monomeric red fluorescent protein (mRFP) indicated that AVR1CO39 is translocated into the cytoplasm of infected rice cells. Transient expression of an AVR1CO39 isoform without a signal peptide in rice protoplasts triggers a PiCO39-specific hypersensitive response, suggesting that recognition of AVR1CO39 by the PiCO39 gene product occurs in the cytoplasm of rice cells. The native AVR1CO39 protein enters the secretory pathway of rice protoplasts as demonstrated by the ER localization of AVR1CO39:mRFP:HDEL translational fusions, and is correctly processed as shown by Western blotting. However, this secreted AVR1CO39 isoform triggers a PiCO39-specific hypersensitive response and accumulates inside rice protoplasts as shown by Western blotting and localization of AVR1CO39:mRFP translational fusions. This indicates that AVR1CO39 is secreted by rice protoplasts and re-enters into the cytoplasm by unknown mechanisms, suggesting that translocation of AVR1CO39 into rice cells occurs independently of fungal factors.

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