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Subjects of Investigation
John Bamberg
Paul Bethke
Johanne Brunet
Dennis Halterman
Michael Havey
Shelley Jansky
Philipp Simon
David Spooner
Yiqun Weng
David Willis
IFAFS
 

Research Project: POTATO GENETICS, CYTOGENETICS, DISEASE RESISTANCE, AND PRE-BREEDING UTILIZING WILD AND CULTIVATED SPECIES

Location: Vegetable Crops Research Unit

Title: Competitive Interaction Between Phytophthora Infestans Effectors Leads to Increased Aggressiveness on Plants Containing Broad-spectrum Late Blight Resistance

Authors
item Halterman, Dennis
item Chen, Yu -
item Liu, Zhenyu -
item Sopee, Jiraphan -
item Berduo, Julio -
item Sanchez-Perez, Amilcar -

Submitted to: Meeting Abstract
Publication Type: Abstract Only
Publication Acceptance Date: March 19, 2010
Publication Date: August 7, 2010
Citation: Halterman, D.A., Chen, Y., Liu, Z., Sopee, J., Berduo, J., Sanchez-Perez, A. 2010. Competitive Interaction Between Phytophthora Infestans Effectors Leads to Increased Aggressiveness on Plants Containing Broad-spectrum Late Blight Resistance [abstract]. 2010 American Phytopathological Society Annual Meeting.

Technical Abstract: The resistance (R) gene RB confers broad-spectrum resistance to potato late blight and belongs. The RB protein recognizes the presence of members of the Phytophthora infestans effector family IPI-O to elicit resistance. Most isolates of the pathogen contain IPI-O variants that are recognized by RB, explaining the broad-spectrum resistance phenotype of this gene. However, some isolates contain an IPI-O variant (IPI-O4) that is not recognized by RB. Isolates containing IPI-O4 are able to overcome resistance in RB-containing potato leaves to cause significantly more disease than isolates that do not contain IPI-O4, even when other IPI-O proteins are present. We have found that the presence of IPI-O4 blocks the ability of RB to recognize the presence of other IPI-O variants through direct interaction with the resistance protein, thereby preventing programmed cell death related to the resistance response. Molecular determinants of this interaction are being elucidated and we hope that this information will lead to the engineering or identification of improved late blight resistance genes.

   

 
Project Team
Jansky, Shelley
Havey, Michael
Bethke, Paul
Simon, Philipp
Halterman, Dennis
 
Publications
   Publications
 
Related National Programs
  Plant Genetic Resources, Genomics and Genetic Improvement (301)
  Plant Diseases (303)
 
Related Projects
   IDENTIFICATION AND CHARACTERIZATION OF NEW SOURCES OF RESISTANCE TO PVY
   IDENTIFYING AND CHARACTERIZING RESISTANCE FROM DIVERSE POTATO GERMPLASM SOURCES TO HIGHLY AGGRESSIVE STRAINS OF LATE BLIGHT (MSU - DOUCHES)
   IDENTIFYING AND CHARACTERIZING RESISTANCE FROM DIVERSE POTATO GERMPLASM SOURCES TO HIGHLY AGGRESIVE STRAINS OF LATE BLIGHT (MSU - KIRK)
   NEW BREEDING STRATEGIES FOR VERTICILLIUM WILT RESISTANCE (NORTH DAKOTA)
   NEW BREEDING STRATEGIES FOR VERTICILLIUM WILT RESISTANCE (WISCONSIN)
   IDENTIFYING AND CHARACTERIZING RESISTANCE FROM DIVERSE POTATO GERMPLASM SOURCES TO HIGHLY AGGRESSIVE STRAINS OF LATE BLIGHT
   MANIPULATION OF PREHARVEST CONDITIONS AND STORAGE VENTILATION SYSTEMS TO MINIMIZE PRESSURE BRUISE IN POTATO - UW-MADISON
   TOWARD COMPLETE CONTROL OF ACRYLAMIDE FORMATION IN POTATO CHIPS AND FRENCH FRIES
   MANAGING INSECTICIDE RESISTANCE IN THE COLORADO POTATO BEETLE AND DEVELOPING MANAGEMENT OPTIONS FOR RESISTANT BEETLES
   MANAGING INSECTICIDE RESISTANCE IN THE COLORADO POTATO BEETLE AND DEVELOPING MANAGEMENT OPTIONS FOR RESISTANT BEETLES
   MANAGING INSECTICIDE RESISTANCE IN THE COLORADO POTATO BEETLE AND DEVELOPING MANAGEMENT OPTIONS FOR RESISTANT BEETLES
   ACRYLAMIDE MITIGATION IN PROCESSED POTATO
 
 
Last Modified: 05/20/2013
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