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Highlights of Nitrogen Fixation Research

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Cover of 'Highlights of Nitrogen Fixation Research'

Table of Contents

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    Book Overview
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    Chapter 1 Nitrogen Fixation and the Biosphere
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    Chapter 2 Genetic and Metabolic Engineering of Rhizobium Etli to Modify (Enhance) Nitrogen Fixation in the Symbiosis with Phaseolus Vulgaris
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    Chapter 3 Modulation of Key Symbiotic Metabolic Pathways Through Reverse Genetics of Transgenic Legumes
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    Chapter 4 Constitutive and Nodule-Specific Overexpression of Cytosolic Glutamine Synthetase ( GS 1 ) Genes in Alfalfa
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    Chapter 5 Cloning and Developmental Expression of a Nodule-Enhanced Sucrose Synthase cDNA from Alfalfa
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    Chapter 6 Alanine and Ammonia Release by N 2 -Fixing Bradyrhizobium Japonicum Bacteroids
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    Chapter 7 Is Bacteroid α-Ketoglutarate Dehydrogenase Needed for Nitrogen Fixation?
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    Chapter 8 Hopanoid Lipid Content of Bradyrhizobium Bacteria is Dependent on Culture Conditions
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    Chapter 9 Phosphate Metabolism in Rhizobium
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    Chapter 10 Recent Advances in the Physiology of Drought Stress Effects on Symbiotic N 2 Fixation in Soybean
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    Chapter 11 Rhizobium Meliloti Lon Protease Plays an Essential Role in the Alfalfa Symbiosis
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    Chapter 12 Flavonoid Enhancement of Sorghum Root Development
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    Chapter 13 Analysis of Factors Affecting Competition for Nodulation of Legumes by Rhizobium Leguminosarum
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    Chapter 14 Characterization of Rhizobia Associated with Dalea Spp. in Natural Prairies and Revegetation Areas in Minnesota
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    Chapter 15 Distribution and Characteristics of Bradyrhizobium Spp. Nodulating African Soybeans
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    Chapter 16 What Does Strain Persistence Really Mean?
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    Chapter 17 Isolation and Characterization of a DNA Fragment Containing Genes for Mimosine Degradation from Rhizobium Sp. Strain TAL1145
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    Chapter 18 Sinorhizobium Meliloti Products Increase Carbon Metabolism in Alfalfa
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    Chapter 19 Ecology and Plant Growth-Promoting Activities of the Natural Association between Rhizobium Leguminosarum Bv. Trifolii and Rice Roots
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    Chapter 20 Bacteriocins of Rhizobium Leguminosarum
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    Chapter 21 Suppression of Plant Defence in the Medicago Sativa (Alfalfa)- Sinorhizobium meliloti Symbiosis
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    Chapter 22 Unique Aspects of Nod Gene Expression in Bradyrhizobium Japonicum
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    Chapter 23 Control of Root Nodule Initiation in Medicago
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    Chapter 24 Differential Expression of Symbiosis-Related Genes in Yellow Lupine
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    Chapter 25 An Isoflavone from Soybean Roots Induces Sinorhizobium Fredii Strain USDA257 to Produce Pilus-Like Surface Appendages
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    Chapter 26 Rhizobium Etli (RE) Lipopolysaccharide (LPS) Structure
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    Chapter 27 Two Different Signal Peptidases and Their Possible Roles in the Biphasic Life Cycle of Bradyrhizobium Japonicum
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    Chapter 28 Xylem Colonization of Sesbania Rostrata by Azorhizobium Caulinodans ORS571
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    Chapter 29 Extracellular Calcium Flux in Root Hairs Responding to Nodulation Factors
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    Chapter 30 Use of T Dna Tagging to Identify Plant Genes Involved in Symbiotic Nitrogen Fixation
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    Chapter 31 Physical and Gentic Organisation of pNGR234 a
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    Chapter 32 The Symbiotic Plasmid of Rhizobium Etli
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    Chapter 33 The Dynamic Genome of Rhizobium
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    Chapter 34 Functional Genomics of Legumes
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    Chapter 35 Cloning Defined Regions of the pExo Megaplasmid of Rhizobium (Sinorhizobium) Meliloti
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    Chapter 36 Cloning and Identification of Mobilizable DNA Regions in Rhizobium Meliloti
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    Chapter 37 Heterocyst Differentiation and Nitrogen Fixation in the Cyanobacterium Anabaena
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    Chapter 38 Integration of Regulatory Networks for Different Physiological Functions in Bradyrhizobium Japonicum
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    Chapter 39 Mode of Action of the FixT Repressor Protein of Sinorhizobium Meliloti
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    Chapter 40 The P II Protein of Herbaspirillum Seropedicae
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    Chapter 41 P II and GlnK Control Ammonia Assimilation and Nitrogen Fixation in Azorhizobium Caulinodans
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    Chapter 42 Symbiotic Terminal Oxidase CBB3 Production is Negatively Modulated by a Purine Related Metabolite in Sinorhizobium Meliloti
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    Chapter 43 Analysis of Nitrogen Fixation and Regulatory Genes in the Sugarcane Endophyte Acetobacter Diazotrophicus
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    Chapter 44 Agricultural and Environmental Applications of Nitrogen Fixing Organisms
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    Chapter 45 Antibiosis as a Means to Enhance Nodulation Competitiveness by Rhizobium Inoculum Strains under Agricultural Conditions
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    Chapter 46 Bioassays for Soil Contamination Using the Legume Root Nodule Symbiosis
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    Chapter 47 Novel Polysaccharide Produced by Bradyrhizobium Japonicum Enhances Competitiveness at High pH and Ca
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    Chapter 48 Effects of Drought Stress on Growth and Nitrogen Assimilation by Common Beans
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    Chapter 49 Influence of Soil Chemical Characteristics on Medic Rhizobia in the Alkaline Soils of South Eastern Australia
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    Chapter 50 Characterization of New Efficient and Competitive Strains for the Bean (Phaseolus Vulgaris L.) Crop in Brazil
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    Chapter 51 Field Inoculation of Common Bean (Phaseolus Vulgaris L.) with High Efficiency Rhizobium Strains
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    Chapter 52 Does Inoculant Formulation Affect the Population Dynamics of Rhizobium in the Rhizosphere of Pea?
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    Chapter 53 rRNA Based Phylogeny and Identification
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    Chapter 54 Some Issues of Relevance in the Taxonomy of Rhizobia
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    Chapter 55 Polyphasic Taxonomy of Nitrogen-Fixing Acetic Bacteria Isolated from the Rhizosphere of Coffee Plants
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    Chapter 56 Characterization of Bradyrhizobium SPP. Strains by Rflp analysis of Amplified 16s rDNA and rDNA Intergenic Spacer Regions
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    Chapter 57 Genotypic Characterization of Bradyrhizobia from Small Legumes by rDNA Pcr-Rflp and Aflp Fingerprint Analyses
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    Chapter 58 Genetic Diversity of Rhizobial Populations Nodulating Phaseolus Vulgaris in Acid Soils From Brazil
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    Chapter 59 Molecular Symbiotic Characterization of Rhizobia
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Title
Highlights of Nitrogen Fixation Research
Published by
Springer US, December 2012
DOI 10.1007/978-1-4615-4795-2
ISBNs
978-1-4613-7172-4, 978-1-4615-4795-2
Editors

Martĺnez, Esperanza, Hernández, Georgina

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 13 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 13 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 3 23%
Student > Master 2 15%
Student > Bachelor 2 15%
Other 1 8%
Lecturer 1 8%
Other 1 8%
Unknown 3 23%
Readers by discipline Count As %
Agricultural and Biological Sciences 5 38%
Biochemistry, Genetics and Molecular Biology 3 23%
Environmental Science 2 15%
Unknown 3 23%