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Biological Fixation of Nitrogen for Ecology and Sustainable Agriculture

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Cover of 'Biological Fixation of Nitrogen for Ecology and Sustainable Agriculture'

Table of Contents

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    Book Overview
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    Chapter 1 Nitrogenase: Two Decades of Biochemical Genetics
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    Chapter 2 Molybdenum-Nitrogenase: Structure and Function
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    Chapter 3 Rhizobium Nodulation Factors in Perspective
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    Chapter 4 The Host-Specific Role of Chemical Modifications at the Reducing Terminus of Lipo-Chitin Oligosaccharides
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    Chapter 5 The Complex Interaction between Bradyrhizobium japonicum and its Symbiotic Host Plants
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    Chapter 6 Studies on MsENOD40 gene expression in alfalfa ( Medicago sativa L.) and white sweetclover ( Melilotus alba Desr.)
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    Chapter 7 Nod-factor Attachment, Calcium-fluxes, and Lipidtransfer Proteins in Symbiotic Signal Transduction
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    Chapter 8 Degradation of Nodulation Signals from Rhizobium meliloti by its Host Plants
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    Chapter 9 Induction of root cortical cell divisions by heterologous nodulation factors
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    Chapter 10 ENOD40 expression precedes cell division and affects phytohormone perception at the onset of nodulation
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    Chapter 11 Enod40 expression and phytohormonal imbalances in nodule organogenesis
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    Chapter 12 N -Acyl Galactosamine Inhibition of Lipo- Chitooligosaccharide Action
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    Chapter 13 Cell Cycle Regulation during Nodule Development
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    Chapter 14 The Saga of the Nodulin Genes
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    Chapter 15 Identification of New Medicago truncatula Nodulin Genes: Comparison of Two Molecular Approaches
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    Chapter 16 Plant Gene Expression during Stem Nodule development on Sesbania rostrata
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    Chapter 17 Identification of Trans -Acting Factors Regulating Nodulin Gene Expression
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    Chapter 18 Analysis of genes expressed in root nodules of broad bean ( Vicia faba L.)
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    Chapter 19 Regulation of Bradyrhizobium japonicum hemB , a Heme Biosynthesis Gene
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    Chapter 20 Rhizobial Capsular and Lipopolysaccharides: Evidence for their Importance in Rhizobium -Legume Symbiosis
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    Chapter 21 Changes in Rhizobium Lipopolysaccharide Structure Induced by Host Compounds
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    Chapter 22 Symbiotic suppression of the Medicago sativa plant defence system by Rhizobium meliloti oligosaccharides
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    Chapter 23 Biochemical and Molecular Analyses of Rhizobial Responses to Legume Flavonoids
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    Chapter 24 Flavonoid-inducible regions in the symbiotic plasmid of Rhizobium etli
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    Chapter 25 Azospirillum Genes Involved in Chemotaxis and Adhesion to Plant Roots
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    Chapter 26 Molecular Microbial Ecology
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    Chapter 27 Plant Regulation of Root Colonization by Rhizobium Meliloti
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    Chapter 28 Host-Controlled Restriction of Nodulation by Bradyrhizobium Japonicum Strain USDA 110 and Characterization of a Gene Regulating Nodulation
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    Chapter 29 Enhancing the potential of microbial inoculants through molecular microbial ecology
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    Chapter 30 Nitrogen Fixation in Rhodospirillum rubrum : Regulation of Activity and Generation of Reductant
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    Chapter 31 Molecular Studies of the Electron Transport Pathway to Nitrogenase in Rhodobacter Capsulatus
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    Chapter 32 Regulation of Alternative Nitrogenase Systems by Environmental Factors in the Cyanobacterium Anabaena variabilis
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    Chapter 33 Heterocyst Differentiation and Nitrogen Fixation in Cyanobacteria
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    Chapter 34 Trichodesmium Has Cells Specialized for Nitrogen Fixation but Lacks Heterocysts
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    Chapter 35 Biological Nitrogen Fixation for Sustainable Agriculture
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    Chapter 36 Enhanced Agricultural Sustainability Through Biological Nitrogen Fixation
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    Chapter 37 Towards the Application of Nitrogen Fixation Research to Forestry and Agriculture
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    Chapter 38 Genetic potential of plants for improving the beneficial microbe interactions
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    Chapter 39 DNA-probing as a tool to monitor the distribution of N 2 -fixing, denitrifying and nitrifying bacteria in soils
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    Chapter 40 Carbon-Nitrogen Metabolism in Symbiotic Systems: Integration and Overall Regulation
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    Chapter 41 Assimilation of Reduced Nitrogen in Tropical Legume Nodules: Regulation of De Novo Purine Biosynthesis and Peroxisome Proliferation
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    Chapter 42 Contrasting C Supply, N Assimilation and N Transport Across a Range of Symbiotic Plants
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    Chapter 43 Robinia pseudoacacia , a model tree legume
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    Chapter 44 Unsolved Mysteries in Carbon Metabolism in Legume Nodules
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    Chapter 45 Phosphorous Deficiency Increases the Respiratory Cost of Symbiotic N 2 Fixation
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    Chapter 46 Carbon and Nitrogen Metabolism in Plant-Derived Ineffective Nodules of Pea (Pisum sativum L.)
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    Chapter 47 Genetic Regulation and Bioenergetics of Symbiotic Nitrogen Fixation in Bradyrhizobium japonicum
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    Chapter 48 Dynamic Control of Oxygen Diffusion Resistance in Nodules
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    Chapter 49 Is the Variable Oxygen Permeability in Nodules a Physical or a Physiological Phenomenon?
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    Chapter 50 Regulation of Nitrogen Fixation Genes by the NIFA and NIFL Regulatory Proteins
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    Chapter 51 Model Plants for Nitrogen Fixation
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    Chapter 52 Recent Advances in the Molecular Genetics of The Model Legume Lotus japonicus
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    Chapter 53 Molecular Genetics of a Model-Plant: Medicago Truncatula
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    Chapter 54 Advances in Molecular Characterization of the Yellow Lupin - Bradyrhizobium sp. ( Lupinus ) Symbiotic Model
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    Chapter 55 Actinorhizal nodules
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    Chapter 56 Molecular and Genetic Insights into Shoot Control of Nodulation in Soybean
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    Chapter 57 Effect of nitrogen nutrition pathways on the quality of nitrogen storage compounds in legumes
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    Chapter 58 Genetic linkage map of alfalfa ( Medicago sativa ) and its use to map seed protein genes as well as genes involved in leaf morphogenesis and symbiotic nitrogen fixation
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    Chapter 59 Genetic Transformation and Regeneration of Legumes
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    Chapter 60 Phylogenetic Perspectives on the Origins and Evolution of Nodulation in the Legumes and Allies
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    Chapter 61 Co-Evolution of Legume—Rhizobial Symbioses: Is It Essential for Either Partner?
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    Chapter 62 Interactions Between Diazotrophs and Grasses
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    Chapter 63 Have Common Plant Systems Co-evolved in Fungal and Bacterial Root Symbioses ?
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    Chapter 64 Nitrogen Fixing Systems and Evolution of Plant Hemoglobins
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Title
Biological Fixation of Nitrogen for Ecology and Sustainable Agriculture
Published by
Springer Berlin Heidelberg, June 2013
DOI 10.1007/978-3-642-59112-9
ISBNs
978-3-64-263855-8, 978-3-64-259112-9
Editors

Legocki, Andrzej, Bothe, Hermann, Pühler, Alfred

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 8 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 1 13%
Unknown 7 88%

Demographic breakdown

Readers by professional status Count As %
Student > Bachelor 3 38%
Researcher 2 25%
Student > Ph. D. Student 2 25%
Professor 1 13%
Readers by discipline Count As %
Agricultural and Biological Sciences 4 50%
Biochemistry, Genetics and Molecular Biology 2 25%
Environmental Science 1 13%
Earth and Planetary Sciences 1 13%