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Timothy C. Paulitz

Researcher at Washington State University

Publications -  209
Citations -  10046

Timothy C. Paulitz is an academic researcher from Washington State University. The author has contributed to research in topics: Root rot & Rhizoctonia solani. The author has an hindex of 47, co-authored 202 publications receiving 8567 citations. Previous affiliations of Timothy C. Paulitz include Oregon State University & United States Department of Agriculture.

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The rhizosphere: a playground and battlefield for soilborne pathogens and beneficial microorganisms

TL;DR: This review focuses on the population dynamics and activity of soilborne pathogens and beneficial microorganisms, and mechanisms involved in the tripartite interactions between beneficialmicroorganisms, pathogens and the plant.
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Biological control in greenhouse systems

TL;DR: The development of Pseudomonas for the control of Pythium diseases in hydroponics and Pseudozyma flocculosa for theControl of powdery mildew by two Canadian research programs is presented.
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Defense enzymes induced in cucumber roots by treatment with plant growth-promoting rhizobacteria (PGPR) and Pythium aphanidermatum.

TL;DR: The results suggest that the plant defense enzymes could be stimulated in cucumber roots which have been colonized by non-pathogenic rhizobacteria or in a compatible interaction between cucumber and P. aphanidermatum.
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Disease Suppressive Soils: New Insights from the Soil Microbiome.

TL;DR: A number of hypotheses about the nature and ecology of microbial populations and communities of suppressive soils are proposed and the potential and limitations of new molecular techniques that can provide novel ways of testing these hypotheses are outlined.
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Increased resistance toFusarium oxysporumf. sp.radicis-lycopersiciin tomato plants treated with the endophytic bacteriumPseudomonas fluorescensstrain 63-28

TL;DR: Observations confirm that P. fluorescens strain 63-28 may function as an inducer of plant disease resistance and provide indirect evidence for the production of plant chitinases.