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A global-temporal analysis on Phytophthora sojae resistance-gene efficacy
Austin G. McCoy
, Richard R. Belanger
, Carl A. Bradley
, Daniel G. Cerritos-Garcia
, Vinicius C. Garnica
, Loren J. Giesler
, Pablo E. Grijalba
, Eduardo Guillin
, Maria A. Henriquez
, Yong Min Kim
,
Dean K. Malvick
, Rashelle L. Matthiesen
, Santiago X. Mideros
, Zachary A. Noel
, Alison E. Robertson
, Mitchell G. Roth
, Clarice L. Schmidt
, Damon L. Smith
, Adam H. Sparks
, Darcy E.P. Telenko
Vanessa Tremblay, Owen Wally, Martin I. Chilvers
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Plant Pathology
Research output
:
Contribution to journal
›
Article
›
peer-review
22
Scopus citations
Overview
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Keyphrases
Temporal Analysis
100%
Phytophthora Sojae
100%
Resistance Genes
100%
Gene Efficacy
100%
Root Rot
66%
Stem Rot
66%
Phytophthora
66%
P. Sojae
50%
United States
33%
Disease Outbreaks
33%
Canada
33%
Argentina
33%
China
16%
Agriculture
16%
Disease Management
16%
Resistance Sources
16%
Food Security
16%
Temporal Change
16%
Soybean Resistance
16%
Commercial Cultivars
16%
Loss of Effectiveness
16%
RPS6
16%
Plant Resistance Genes
16%
Oomycete Pathogen
16%
Specific Resistance
16%
Agricultural and Biological Sciences
Phytophthora sojae
100%
Stem Rot
66%
Root Rot
66%
Phytophthora
66%
Pathotype
50%
Pathovar
50%
Systematic Review
33%
Cultivar
16%
Plant Disease Resistance
16%
Oomycetes
16%
Immunology and Microbiology
Phytophthora sojae
100%
Phytophthora
66%
Pathovar
50%
Infectious Agent
16%
Oomycetes
16%
Cultivar
16%