article Open AccessTop 1% cited
Rhizosphere bacteria help plants tolerate abiotic stress
Trends in Plant Science · 2008 · Vol. 14(1) · pp. 1–4
Yang Jung-Wook✉(Korea Research Institute of Bioscience and Biotechnology)Joseph W. Kloepper(Auburn University)Choong‐Min Ryu(Korea University of Science and Technology)
Abstract
Plant-growth-promoting rhizobacteria (PGPR) are associated with plant roots and augment plant productivity and immunity; however, recent work by several groups shows that PGPR also elicit so-called 'induced systemic tolerance' to salt and drought. As we discuss here, PGPR might also increase nutrient uptake from soils, thus reducing the need for fertilizers and preventing the accumulation of nitrates and phosphates in agricultural soils. A reduction in fertilizer use would lessen the effects of water contamination from fertilizer run-off and lead to savings for farmers.
Plant-Microbe Interactions and ImmunityLegume Nitrogen Fixing SymbiosisNematode management and characterization studiesRhizobacteriaRhizosphereFertilizerBiologyAgronomyNutrientSoil waterAbiotic stressAgricultureAbiotic component
MeSH terms
PlantsRhizobiaceaeSodium ChlorideSoil MicrobiologyStress, PhysiologicalSymbiosisPlant RootsPlant Development
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References
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Bacterial Volatiles Induce Systemic Resistance in Arabidopsis
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Water Relations of Plants and Soils
Soil Science · 1996 · 1,189 citations
Role of soil microorganisms in improving P nutrition of plants
Plant and Soil · 2002 · 778 citations
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