4.8 Article

The Potato MAP3K StVIK Is Required for the Phytophthora infestans RXLR Effector Pi17316 to Promote Disease

Journal

PLANT PHYSIOLOGY
Volume 177, Issue 1, Pages 398-410

Publisher

AMER SOC PLANT BIOLOGISTS
DOI: 10.1104/pp.18.00028

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Funding

  1. Biotechnology and Biological Sciences Research Council (BBSRC) [BB/G015244/1, BB/K018183/1, BB/L026880/1]
  2. BBSRC doctoral training program EASTBIO funding
  3. Scottish Government Rural and Environment Science and Analytical Services Division
  4. Fundamental Research Funds of the Central Universities [2662017PY069]
  5. BBSRC [BB/K018183/1, BB/G015244/1, BB/N009967/1, BB/L026880/1] Funding Source: UKRI

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Plant pathogens deliver effectors to manipulate processes in their hosts, creating a suitable environment for invasion and proliferation. Yet, little is known about the host proteins that are targeted by effectors from filamentous pathogens. Here, we show that stable transgenic expression in potato (Solanum tuberosum) and transient expression in Nicotiana benthamiana of the arginine-any amino acidleucine- arginine effector Pi17316 enhances leaf colonization by the late blight pathogen Phytophthora infestans. Expression of Pi17316 also attenuates cell death triggered by the pathogen-associated molecular pattern Infestin1 (INF1), indicating that the effector suppresses pattern-triggered immunity. However, this effector does not attenuate cell death triggered by a range of resistance proteins, showing that it specifically suppresses INF1-triggered cell death (ICD). In yeast two-hybrid assays, Pi17316 interacts directly with the potato ortholog of VASCULAR HIGHWAY1-interacting kinase (StVIK), encoding a predicted MEK kinase (MAP3K). Interaction in planta was confirmed by coimmunoprecipitation and occurs at the plant plasma membrane. Virus-induced gene silencing of VIK in N. benthamiana attenuated P. infestans colonization, whereas transient overexpression of StVIK enhanced colonization, indicating that this host protein acts as a susceptibility factor. Moreover, VIK overexpression specifically attenuated ICD, indicating that it is a negative regulator of immunity. The abilities of Pi17316 to enhance P. infestans colonization or suppress ICD were compromised significantly in NbVIK-silenced plants, demonstrating that the effector activity of Pi17316 is mediated by this MAP3K. Thus, StVIK is exploited by P. infestans as a susceptibility factor to promote late blight disease.

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