Biological Fixation of Nitrogen for Ecology and Sustainable Agriculture

Передня обкладинка
Andrzej B. Legocki, Hermann Bothe, A. Pühler
Springer Science & Business Media, 1997 - 328 стор.
1. Structural Chemistry and Biochemistry of Nitrogenase.- Nitrogenase: Two Decades of Biochemical Genetics.- Molybdenum-Nitrogenase: Structure and Function.- 2. Signal Perception, Transduction and Cell Cycle Genes in Nodulation.- Rhizobium Nodulation Factors in Perspective.- The Host-Specific Role of Chemical Modifications at the Reducing Terminus of Lipo-Chitin Oligosaccharides.- The Complex Interaction Between Bradyrhizobiumjaponicum and its Symbiotic Host Plants.- Studies on MsENOD40 gene Expression in Alfalfa (Medicago sativa L.) and White Sweetclover (Melilotus alba Desr.).- Nod-Factor Attachment, Calcium-Fluxes, and Lipid-Transfer Proteins in Symbiotic Signal Transduction.- Degradation of Modulation Signals from Rhizobium meliloti by its Host Plants.- Induction of Root Cortical Cell Divisions by Heterologous Nodulation Factors.- ENOD40 Expression Precedes Cell Division and Affects Phytohormone Perception at the Onset of Nodulation.- ENOD40 Expression and Phytohormonal Imbalances in Nodule Organogenesis.- N-Acyl Galactosamine Inhibition of Lipo-Chitooligosaccharide Action.- Cell Cycle Reregulation During Nodule Development.- 3. Plant Genes Involved in Nodulation.- The Saga of the Nodulin Genes.- Identification of New Medicago truncatula Nodulin Genes: Comparison of two Molecular Approaches.- Plant Gene Expression During Stem Nodule Development on Sesbania rostrata.- Identification of Trans-Acting Factors Regulating Nodulin Gene Expression.- Analysis of Genes Expressed in Root Nodules of Broad Bean (Vicia faba L.).- Regulation of Bradyrhizobium japonicum hemB, a Heme Biosynthesis Gene.- 4. Bacterium - Plant Surface Interaction.- Rhizobial Capsular and Lipopolysaccharides: Evidence for Their Importance in Rhizobium-Legume Symbiosis.- Changes in Rhizobium Lipopolysaccharide Structure Induced by Host Compounds.- Symbiotic Suppression of the Medicago sativa Plant Defence System by Rhizobium meliloti Oligosaccharides.- Biochemical and Molecular Analyses of Rhizobial Responses to Legume Flavonoids.- Flavonoid-Inducible Regions in the Symbiotic Plasmid of Rhizobium etli.- Azospirillum Genes Involved in Chemotaxis and Adhesion to Plant Roots.- 5. Molecular Microbial Ecology.- Molecular Microbial Ecology.- Plant Regulation of Root Colonization by Rhizobium meliloti.- Host-Controlled Restriction of Nodulation by Bradyrhizobium japonicum strain USDA 110 and Characterization of a Gene Regulating Nodulation.- Enhancing the Potential of Microbial Inoculants Through Molecular Microbial Ecology.- 6. Nitrogen Fixing Systems.- Nitrogen Fixation in Rhodospirillum rubrum: Regulation of Activity and Generation of Reductant.- Molecular Studies of the Electron Transport Pathway to Nitrogenase in Rhodobacter capsulatus.- Regulation of Alternative Nitrogenase Systems by Environmental Factors in the Cyanobacterium Anabaena variabilis.- Heterocyst Differentiation and Nitrogen Fixation in Cyanobacteria.- Trichodesmium Has Cells Specialized for Nitrogen Fixation but Lacks Heterocysts.- 7. Nitrogen Fixation in Sustainable Agriculture.- Biological Nitrogen Fixation for Sustainable Agriculture.- Enhanced Agricultural Sustainability Through Biological Nitrogen Fixation.- Towards the Application of Nitrogen Fixation Research to Forestry and Agriculture.- Genetic Potential of Plants for Improving the Beneficial Microbe Interactions.- DNA-Probing as a Tool to Monitor the Distribution of N2-Fixing, Denitrifying and Nitrifying Bacteria in Soils.- 8. Carbon-Nitrogen Metabolism in Symbiotic Systems.- Carbon-Nitrogen Metabolism in Symbiotic Systems: Integration and Overall Regulation.- Assimilation of Reduced Nitrogen in Tropical Legume Nodules: Regulation of de novo Purine Biosynthesis and Peroxisome Proliferation.- Contrasting C Supply, N Assimilation and N Transport Across a Range of Symbiotic Plants.- Robinia pseudoacacia, a Model Tree Legume.- Unsolved Mysteries in Carbon Metabolism in Legume Nodules.- Phosphorous Deficiency Increases the Respiratory Cost...
 

Зміст

Two Decades or Biochemical Genetics
1
Structure and Function
7
Signal Perception Transduction and Cell Cycle Genes in Nodulation
11
Rhizobium Nodulation Factors in Perspective
13
The HostSpecific Roles of Chemical Modification at the Reducing Terminus of LipoChitin Oligosaccharides
23
The Complex Interaction between Bradyrhizobium japonicum and its Symbiotic Host Plants
27
Studies on MsENOD40 gene expression in alfalfa Medicago saliva L and white sweetclover Melilotus alba Desr
31
Nodfactor Attachment Calciumfluxes and Lipid transfer Proteins in Symbiotic Signal Transduction
35
Trichodesmium Has Cells Specialized for Nitrogen Fixation but Lacks Heterocysts
163
Nitrogen Fixation in Sustainable Agriculture
171
Biological Nitrogen Fixation for Sustainable Agriculture
173
Enhanced Agricultural Sustainability Through Biological Nitrogen Fixation
175
Towards the Application of Nitrogen Fixation Reasearch to Forestry and Agriculture
183
Genetic Potential of Plants for Improving the Beneficial Microbe Interactions
187
DNAProbing as a Tool to Monitor the Distribution of Nfixing Denitrifying and Nitrifying Bacteria in Soils
191
CarbonNitrogen Metabolism in Symbiotic Systems
195

Degradation of Nodulation Signals from Rhizobium meliloti by its Host Plants
41
Induction of Root Cortical Cell Divisions by Heterologous Nodulation Factors
45
ENOD40 Expression Precedes Cell Division and Affects Phytohormone Perception at the Onset of Nodulation
49
Enod40 Expression and Phytohormonal Imbalances in Nodule Organogenesis
53
NAcyl Galactosamine Inhibition of Lipo Chitooligosaccharide Action
57
Cell Cycle Regulation during Nodule Development
61
Plant Genes Involved in Nodulation
63
The Saga of the Nodulin Genes
65
Comparison of Two Molecular Approaches
73
Plant Gene Expression During Stem Nodule Development on Sesbania rostrata
79
Identification of TransActing Factors Regulating Nodulin Gene expression
83
Analysis of Genes Expressed in Root Nodules of Broad Bean Vicia faba L
87
Regulation of Bradvrhizobium japonicum hemB a Heme Biosynthesis Gene
91
BacteriumPlant Surface Interaction
95
Evidence for Their Importance in RhizobiumLegume Symbiosis
97
Changes in Rhizobium Lipopolysaccharide Structure Induced by Host Compounds
103
Symbiotic Suppression of the Medicago sativa plant defence system by Rhizobium meliloti oligosaccharides
107
Biochemical and Molecular Analyses of Rhizobial Responses to Legume Flavonoids
111
FlavonoidInducible Regions in the Symbiotic Plasmid of Rhizobium etli
115
Azospirillum Genes Involved in Chemotaxix and Adhesion to Plant Roots
119
Molecular Microbial Ecology
125
Molecular Microbial Ecology
127
Plant Regulation of Root Colonization by Rhizobium meliloti
129
HostControlled Restriction of Nodulation by Bradyrhizobium Japonicum strain USDA 11 and Characterization of a Gene Regulating Nodulation
133
Enhancing the Potential of Microbial Inoculants Through Molecular Microbial Ecology
139
Nitrogen Fixing Systems
145
Regulation of Activity and Generation of Reductant
147
Molecular Studies of the Electron Transport Pathway to Nitrogenase in Rhodobacter capsulatus
151
Regulation of Alternative Nitrogenase Systems by Environmental Factors in the Cyanobacterium Anabaena variabilis
155
Heterocyst Differentiation and Nitrogen Fixation in Cyanobacteria
159
Integration and Overall Regulation
197
Regulation of de novo Purine Biosynthesis and Peroxisome Proliferation
201
Contrasting C Supply N Assimilation and N Transport Across a Range of Symbiotic Plants
207
Robinia pseudoacacia a Model Tree Legume
211
Unsolved Mysteries in Carbon Metabolism in Legume Nodules
215
Phosphorous Deficiency Increases the Respiratory Cost of Symbiotic N2 Fixation
219
Carbon and Nitrogen Metabolism in PlantDerived Ineffective Nodules of Pea Pisum sativum L
223
Oxygen Regulation in Nitrogen Fixation
227
Genetic Regulation and Bioenergetics of Symbiotic Nitrogen Fixation in Bradyrhizobium japonicum
229
Dynamic Control of Oxygen Diffusion Resistance in Nodules
233
Is the Variable Oxygen Permeability in Nodules a Physical or a Physiological Phenomenon?
237
Regulation of Nitrogen Fixation Genes by the NIFA and NIFL Regulatory Proteins
241
Model Plants for Nitrogen Fixation and Legume Genetics
247
Genetic and Molecular Tools for Analysing the Infection and Infestation of Clovers
249
Recent Advances in the Molecular Genetics of The Model Legume Lotus japonicus
251
Molecular Genetics of a ModelPlant Medicago Truncatula
255
Advances in Molecular Characterization of the Yellow Lupin Bradvrhizobium sp Lupinus Symbiotic Model
259
Actinorhizal nodules
263
Molecular and Genetic Insights into Shoot Control of Nodulation in Soybean
267
Effect of Nitrogen Nutrition Pathways on the Quality of Nitrogen Storage Compounds in Legumes
271
Genetic Linkage Map of Alfalfa Medicago sativa and its Use to Map Seed Protein Genes as well as Genes Involved in Leaf Morphogenesis and Symb...
275
Genetic Transformation and Regeneration of Legumes
279
Coevolution of Symbiotic Systems
301
Phylogenetic Perspectives on the Origins and Evolution of Nodulation in the Legumes and Allies
303
is it Essential for Either Partner?
309
Interactions between Diazotrophs and Grasses
313
Have Common Plant Systems Coevolved in Fungal and Bacterial Root Symbioses?
317
Nitrogen Fixing Systems and Evolution of Plant Hemoglobins
321
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