The Rhizosphere: Biochemistry and Organic Substances at the Soil-Plant Interface, Second EditionRoberto Pinton, Zeno Varanini, Paolo Nannipieri In the rhizosphere, exudates from plants and microorganisms as well as stable soil organic matter influence processes that can control plant growth, microbial infections, and nutrient uptake. As the chemistry and biochemistry of these substances becomes more and more clear, their study promises to shed light on the complex interactions between plan |
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... iron at the rhizosphere; a wealth of literature is already available on this subject, and many studies on the production of siderophores by microbes are being carried out. Their potential use by plants and the relationship with other ...
... iron at the rhizosphere; a wealth of literature is already available on this subject, and many studies on the production of siderophores by microbes are being carried out. Their potential use by plants and the relationship with other ...
Page 4
... iron chlorosis is a common symptom of heavy metal toxicity. The rhizosphere forms around each root as it grows because each root changes the chemical, physical, and biological properties of the soil in its immediate vicinity. The ...
... iron chlorosis is a common symptom of heavy metal toxicity. The rhizosphere forms around each root as it grows because each root changes the chemical, physical, and biological properties of the soil in its immediate vicinity. The ...
Page 8
... iron-stressed barley plants with multinuclear or multidimensional nuclear magnetic resource (NMR) and silylation gas chromatography/mars spectrometry (GC-MS), not only bypassing tedious traditional methods but also detecting unknown and ...
... iron-stressed barley plants with multinuclear or multidimensional nuclear magnetic resource (NMR) and silylation gas chromatography/mars spectrometry (GC-MS), not only bypassing tedious traditional methods but also detecting unknown and ...
Page 15
... iron deficiency response system with riboflavin secretion in some dicotyledonous plants, in Plant Nutrition for Sustainable Food Production and Environment, Ando, T., Fujita, K., Mae, T., Matsumoto, H., Mori, S., and Sekiya, J., Eds ...
... iron deficiency response system with riboflavin secretion in some dicotyledonous plants, in Plant Nutrition for Sustainable Food Production and Environment, Ando, T., Fujita, K., Mae, T., Matsumoto, H., Mori, S., and Sekiya, J., Eds ...
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... iron dissolution in the rhizosphere and its potential role in root iron uptake, Plant Soil, 180, 57, 1996. 25. Uren, N.C. and Reisenauer, H.M., The role of root exudates in nutrient acquisition, Adv. Plant Nutr., 3, 79, 1988. 26. Bowen ...
... iron dissolution in the rhizosphere and its potential role in root iron uptake, Plant Soil, 180, 57, 1996. 25. Uren, N.C. and Reisenauer, H.M., The role of root exudates in nutrient acquisition, Adv. Plant Nutr., 3, 79, 1988. 26. Bowen ...
Contents
1 | |
23 | |
Chapter 3 Rhizodeposition and Microbial Populations | 73 |
Chapter 4 Nutrient Transformations in the Rhizosphere | 111 |
Chapter 5 Nutrients as Regulators of Root Morphology and Architecture | 135 |
Chapter 6 Root Membrane Activities Relevant to Nutrient Acquisition at the PlantSoil Interface | 151 |
Chapter 7 Function of Siderophores in the Plant Rhizosphere | 173 |
A Fungal Community at the Interface between Soil and Roots | 201 |
Principles Promises and Pitfalls | 267 |
RootRoot and RootMicrobe Communication | 297 |
Chapter 12 Modeling the Rhizosphere | 331 |
Chapter 13 Methodological Approaches to the Study of Carbon Flow and the Associated Microbial Population Dynamics in the Rhizosphere | 371 |
Chapter 14 Gene Flow in the Rhizosphere | 401 |
Index | 427 |
Back cover | 449 |
Chapter 9 Molecular Biology and Ecology of the RhizobiaLegume Symbiosis | 237 |
Other editions - View all
The Rhizosphere: Biochemistry and Organic Substance at the Soil-Plant ... Sidney Willig,Zeno Varanini,Paolo Nannipieri No preview available - 2000 |
Common terms and phrases
acid acquisition activity amino acids analysis Appl Arabidopsis associated availability bacteria bacteriophages barley Biochem biocontrol carbon carboxylates cells changes Chapter chemical citrate colonization competition complex compounds concentrations culture cytoplasm deficiency dependent detected determined effects Environ enzymes et al example expression factors Figure fluorescens function fungal fungi gene genetic growth host important increased induced infection influence interactions involved iron levels limited maize mechanisms membrane metal method microbial Microbiol microorganisms mineral molecular mutants mycorrhizal natural nitrogen nodulation nutrient nutrition occur organic pathogens phosphate plant growth Plant Physiol plant roots Plant Soil populations potential presence processes production proteins proteoid roots Pseudomonas recently regulation release resistance response rhizosphere role root exudates secretion shown siderophores signals Soil Biol solution species strain stress structure studies suggested surface symbiosis transfer transport uptake
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