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

Ризосфера: игровое поле и поле битвы для почвенных патогенов и полезных микроорганизмов
Timothy C. Paulitz, Yvan Moënne‐Loccoz, Christian Steinberg, Jos M. Raaijmakers, Claude Alabouvette
2008-02-22

beneficial microorganismsplant growth-promoting microorganismsrhizospheresoilborne pathogenstripartite interactions
The rhizosphere is a hot spot of microbial interactions as exudates released by plant roots are a main food source for microorganisms and a driving force of their population density and activities. The rhizosphere harbors many organisms that have a neutral effect on the plant, but also attracts organisms that exert deleterious or beneficial effects on the plant. Microorganisms that adversely affect plant growth and health are the pathogenic fungi, oomycetes, bacteria and nematodes. Most of the soilborne pathogens are adapted to grow and survive in the bulk soil, but the rhizosphere is the playground and infection court where the pathogen establishes a parasitic relationship with the plant. The rhizosphere is also a battlefield where the complex rhizosphere community, both microflora and microfauna, interact with pathogens and influence the outcome of pathogen infection. A wide range of microorganisms are beneficial to the plant and include nitrogen-fixing bacteria, endo- and ectomycorrhizal fungi, and plant growth-promoting bacteria and fungi. This review focuses on the population dynamics and activity of soilborne pathogens and beneficial microorganisms. Specific attention is given to mechanisms involved in the tripartite interactions between beneficial microorganisms, pathogens and the plant. We also discuss how agricultural practices affect pathogen and antagonist populations and how these practices can be adopted to promote plant growth and health.
1
Agricultural practices influence pathogen and beneficial microorganism populations and can be adapted to promote plant health and suppress disease.
2
Beneficial rhizosphere microorganisms—including nitrogen-fixing bacteria, mycorrhizal fungi, and plant growth-promoting bacteria and fungi—can support plant growth and health.
3
Rhizosphere microbial communities act as a battlefield that can alter pathogen infection outcomes through interactions involving microflora, microfauna, pathogens, and plants.
4
Root exudates make the rhizosphere a microbial hotspot by supplying food that drives microorganism population density and activity.
5
The rhizosphere serves as the primary infection court where soilborne pathogens establish parasitic relationships with plants, despite surviving in bulk soil.

The rhizosphere (root–soil interface) as habitat for soilborne pathogens and beneficial microorganisms

Population dynamics, activities, and tripartite interaction mechanisms of soilborne pathogens and beneficial microorganisms, including their responses to agricultural practices and effects on plant growth and health

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2008-02-22
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Authors
Timothy C. Paulitz
Yvan Moënne‐Loccoz
Christian Steinberg
Jos M. Raaijmakers
Claude Alabouvette
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