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Nitrogen Fixation

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Cover of 'Nitrogen Fixation'

Table of Contents

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    Book Overview
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    Chapter 1 Recent studies on the biochemistry and chemistry of nitrogenases
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    Chapter 2 Nodulation genetics: the plant-bacterial interface
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    Chapter 3 Physiological, metabolic and developmental implications of O 2 regulation in legume nodules
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    Chapter 4 Regulation of nitrogen fixation and assimilation genes in the free-living versus symbiotic state
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    Chapter 5 Evolution, structure and function of nitrogen-fixing root nodules: Confessions of ignorance
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    Chapter 6 Nitrogen cycling and human intervention
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    Chapter 7 H 2 cycling in N 2 fixation: Past, present, and future outlook
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    Chapter 8 Analysis of Azotobacter vinelandii strains containing defined deletions in nif genes required for FeMo-co biosynthesis
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    Chapter 9 In vitro synthesis of the iron-molybdenum cofactor and its analogs: Requirement of a non- nif gene product for the synthesis, and altered properties of dinitrogenase
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    Chapter 10 Identification of FeMoco domains within the nitrogenase MoFe protein
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    Chapter 11 Kinetics and mechanisms of ATP hydrolysis, electron transfers and proton release by Klebsiella pneumoniae nitrogenase
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    Chapter 12 Crystal structure of the nitrogenase iron protein from Azotobacter vinelandii
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    Chapter 13 Structure of the nitrogenase MoFe protein: Spatial distribution of the intrinsic metal atoms determined by X-ray anomalous scattering
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    Chapter 14 Vanadium nitrogenase of Azotobacter
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    Chapter 15 Possible structural analogs for the Fe/M/S sites in the nitrogenases. The[Fe 6 S 6 (L) 6 (M(CO) 3 ) 2 ] n- clusters and the [(MFe 3 S 4 ) 2 (μ 2 -S)(μ 2 -L)] n- singly- and doubly-bridged double cubanes
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    Chapter 16 Workshop summary: How is the MoFe protein organized to fix nitrogen?
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    Chapter 17 Rhizobium meliloti nodulation genes specify the production of an alfalfa-specific sulfated lipo-oligosaccharide signal
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    Chapter 18 Surface interactions between rhizobia and legume root hairs
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    Chapter 19 Isolation, characterization, and structural elucidation of a “ nod signal” excreted by Rhizobium trifolii ANU843 which induces root hair branching and nodule-like primordia in axenic white clover seedlings
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    Chapter 20 Recent studies on the Rhizobium -legume symbiosis
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    Chapter 21 The Rhizobium leguminosarum bv. viciae NodO protein compensates for the exported signal made by the host-specific nodulation genes
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    Chapter 22 Rhizobium meliloti nodulation genes and their regulation
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    Chapter 23 Regulatory steps in nodulation by Rhizobium leguminosarum bv viciae
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    Chapter 24 Nutrient exchange across the peribacteroid membrane of isolated symbiosomes
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    Chapter 25 Immunological dissection of the plant-microbe interface in pea nodules
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    Chapter 26 Endosymbiosis of Rhizobium : Internalization of the “extracellular compartment” and metabolites exchange
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    Chapter 27 Workshop summary: Compilation of the nod, fix , and nif genes of Rhizobia and information concerning their function
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    Chapter 28 Limiting factors in symbiotic nitrogen fixation: Structure and dynamics of the Rhizobium genome
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    Chapter 29 Oxygen diffusion in the legume root nodule
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    Chapter 30 A genetic approach to analyze the critical role of oxygen in bacteroid metabolism
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    Chapter 31 Molecular analysis of terminal oxidases in electron-transport pathways of Bradyrhizobium japonicum and Azotobacter vinelandii
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    Chapter 32 Metabolism of C 4 -dicarboxylates and amino acids in soybean nodule bacteroids, and their role in energy supply to nitrogenase
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    Chapter 33 Measurement of N 2 fixation by 15 N natural abundance in the management of legume crops: roles and precautions
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    Chapter 34 Genetic analysis of sym genes and other nodule-related genes in Pisum sativum
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    Chapter 35 Host legume control of nodulation by flavonoids
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    Chapter 36 Ecological aspects of nitrogen fixation
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    Chapter 37 The ecology of indigenous populations of Rhizobium leguminosarum bvs. trifolii and viceae
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    Chapter 38 Molecular analysis of the denitrification system of pseudomonads
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    Chapter 39 Production of nitrite and N 2 O by the ammonia-oxidizing nitrifiers
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    Chapter 40 Planned release of genetically modified organisms: Scientific and regulatory issues
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    Chapter 41 Field release of genetically-engineered Rhizobium meliloti and Bradyrhizobium japonicum strains
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    Chapter 42 Assessment of genetically engineered microorganisms under the Toxic Substances Control Act: Considerations prior to small-scale release
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    Chapter 43 Regulation of the C 4 -dicarboxylate transport in free-living and symbiotic Rhizobium meliloti
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    Chapter 44 Transcriptional activation of nitrogen fixation genes in Klebsiella pneumoniae
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    Chapter 45 Mechanism of transcription from nif promoters: involvement of IHF
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    Chapter 46 Organization and regulation of nitrogen fixation genes in Rhodobacter capsulatus
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    Chapter 47 The genetics and biochemistry of the reversible ADP-ribosylation systems of Rhodospirillum rubrum and Azospirillum lipoferum
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    Chapter 48 Nitrogen fixation genes of Clostridium pasteurianum
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    Chapter 49 Azospirillum associations
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    Chapter 50 Nitrogen fixation in filamentous cyanobacteria
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    Chapter 51 Hydrogen metabolism and the alternative nitrogenase in the cyanbacterium Anabaena variabilis
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    Chapter 52 Introduction to nitrogen fixation in agriculture and industry: Contribution of BNF to sustainability of agriculture
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    Chapter 53 Improvement of inoculant efficiency by strain improvement and formulation manipulations
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    Chapter 54 Agronomic and economic benefits of nitrogen contributed by legumes in live-mulch and alley cropping systems
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    Chapter 55 Stem-nodule symbiosis and its unusual properties
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    Chapter 56 Workshop summary: What are the applications of our research to ecology and agriculture worldwide?
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    Chapter 57 Protein synthesis and protein phosphorylation in Bradyrhizobium japonicum bacteroids
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    Chapter 58 Some nodulin and Nod proteins show similarity to specific animal proteins
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    Chapter 59 Alfalfa root nodule aspartate aminotransferase (AAT): Biochemical importance and genetic control
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    Chapter 60 Regulation of host gene expression during nodule development in soybeans
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    Chapter 61 Nodulins and nodule development
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    Chapter 62 Regulation of expression of the GLN-τ gene of Phaseolus vulgaris L
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    Chapter 63 The glutamine synthetases of Rhizobium leguminosarum and their regulatory genes
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    Chapter 64 Workshop summary: How can we couple the genetics and physiology of nodule function?
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    Chapter 65 Evolving a Rhizobium for non-legume nodulation
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    Chapter 66 Hypotheses for the evolution of actinorhizal symbioses
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    Chapter 67 Genetics of alternative nitrogen fixation systems in Azotobacter vinelandii
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    Chapter 68 Nitrogen fixation in Methanosarcina barkeri strain 227
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    Chapter 69 The first photosynthetic N 2 -fixing Rhizobium : Characteristics
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    Chapter 70 Nodulation of non-legumes by rhizobia
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    Chapter 71 Congress summary: the molecular perspective
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    Chapter 72 Congress summary: the organismal perspective
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    Chapter 73 Computer networking and biological nitrogen fixation
Overall attention for this book and its chapters
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Title
Nitrogen Fixation
Published by
Springer US, December 2012
DOI 10.1007/978-1-4684-6432-0
ISBNs
978-1-4684-6434-4, 978-1-4684-6432-0
Editors

Gresshoff, Peter M., Roth, L. Evans, Stacey, Gary, Newton, William E.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 3 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 3 100%

Demographic breakdown

Readers by professional status Count As %
Student > Bachelor 1 33%
Unknown 2 67%
Readers by discipline Count As %
Medicine and Dentistry 1 33%
Unknown 2 67%