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|a Kapuganti, Jagadis G.
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|a Alternative respiratory pathways in higher plants /
|c Kapuganti Jagadis Gupta, Luis A.J. Mur, and Bhagyalakshmi Neelwarne.
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|a Respiratory pathways in higher plants
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|a Chichester, West Sussex :
|b John Wiley & Sons, Inc.,
|c 2015.
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|c ©20
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300 |
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|a 1 online resource
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336 |
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|a text
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|a online resource
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|a Includes bibliographical references and index.
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|a Print version record and CIP data provided by publisher.
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|a Title page; Table of Contents; List of contributors; Preface; SECTION A: Physiology of plant respiration and involvement of alternative oxidase; CHAPTER 1: Integrating classical and alternative respiratory pathways; Introduction; Alternative oxidase (AOX); NADPH dehydogenases linked to AOX; Uncoupling proteins (UCPs); Electron transfer flavoprotein (ETF); Deploying electron dissipatory mechanisms whilst maintaining ATP production under stress situations; Conclusions; References.
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|a CHAPTER 2: Non-coupled pathways of plant mitochondrial electron transport and the maintenance of photorespiratory fluxIntroduction: Carbon fluxes through plant mitochondria in the light; Activation of glycine oxidation by malate; Oscillations of respiratory and photorespiratory fluxes; NADH and NADPH dehydrogenases in the mitochondrial membranes; Increase of the mitochondrial capacity in the light via engagement of rotenone-insensitive dehydrogenases; Physiological role of alternative oxidase; Equilibration of adenylates in the intermembrane space of mitochondria.
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|a Bicarbonate pool and refixation of photorespiratory carbonMalate and citrate valves; Conclusion; References; CHAPTER 3: Taxonomic distribution of alternative oxidase in plants; What is alternative oxidase?; Historical investigations of AOX in plants; Taxonomic distribution of alternative oxidase in all domains of life; Taxonomic distribution of alternative oxidase in plants; Chlorophyte algae; Streptophyte algae; Land plants; Recent functional hypotheses based on studies of AOX in multiple plants; Where should efforts be focused next?; References.
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|a CHAPTER 4: Alternative pathways and phosphate and nitrogen nutritionIntroduction; Phosphate limitation; Nitrogen nutrition and respiratory pathways; Summary; References; CHAPTER 5: Structural elucidation of the alternative oxidase reveals insights into the catalytic cycle and regulation of activity; Introduction; Function and species spread of alternative oxidase; Structure of the trypanosomal alternative oxidase; Models of the alternative oxidase; Modelling the structure of plant alternative oxidase; Summary; References.
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|a CHAPTER 6: The role of alternative respiratory proteins in nitric oxide metabolism by plant mitochondriaIntroduction; Targets of NO in mitochondria; Mitochondrial NO degradation; NO degradation by external NAD(P)H dehydrogenases; Involvement of AOX in NO signalling and homeostasis; Oxidative pathways for NO synthesis; Reductive pathways for NO synthesis; Summary; Acknowledgments; References; CHAPTER 7: Control of mitochondrial metabolism through functional and spatial integration of mitochondria; Introduction; Functional and spatial integration: scope of the review.
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|a Rapid developments in molecular and systems biology techniques have allowed researchers to unravel many new mechanisms through which plant cells switch over to alternative respiratory pathways. This book is a unique compendium of how and why higher plants evolved alternative respiratory metabolism. It offers a comprehensive review of current research in the biochemistry, physiology, classification and regulation of plant alternative respiratory pathways, from alternative oxidase diversity to functional marker development. The resource provides a broad range of perspectives on the applications of plant respiratory physiology, and suggests brand new areas of research. Other key features: written by an international team of reputed plant physiologists, known for their pioneering contributions to the knowledge of regular and alternative respiratory metabolism in higher plants includes step-by-step protocols for key molecular and imaging techniques advises on regulatory options for managing crop yields, food quality and environment for crop improvement and enhanced food security covers special pathways which are of key relevance in agriculture, particularly in plant post-harvest commodities Primarily for plant physiologists and plant biologists, this authoritative compendium will also be of great value topostdoctoral researchers working on plant respiration, as well as to graduate and postgraduate students and university staff in Plant Science. It is a useful resource for corporate and private firms involved in developing functional markers for breeding programs and controlling respiration for the prevention of post-harvest losses in fruit, vegetables, cut flowers and tubers.
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|a ProQuest Ebook Central
|b Ebook Central Academic Complete
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650 |
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|a Plants
|x Respiration.
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650 |
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|a Plant genetics.
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650 |
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|a Plant physiology.
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|a Plant Physiological Phenomena
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|a Plantes
|x Respiration.
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|a Génétique végétale.
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650 |
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|a Physiologie végétale.
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|a SCIENCE
|x Life Sciences
|x Botany.
|2 bisacsh
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|a Plant genetics
|2 fast
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|a Plant physiology
|2 fast
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|a Plants
|x Respiration
|2 fast
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|a Mur, Luis A. J.
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|a Neelwarne, Bhagyalakshmi.
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758 |
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|i has work:
|a Alternative respiratory pathways in higher plants (Text)
|1 https://id.oclc.org/worldcat/entity/E39PD3TkgrtpVPQjVGJFpycbbb
|4 https://id.oclc.org/worldcat/ontology/hasWork
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776 |
0 |
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|i Print version:
|a Kapuganti, Jagadis G.
|t Alternative respiratory pathways in higher plants.
|d Chichester, West Sussex : John Wiley & Sons, Inc., 2015
|z 9781118790465
|w (DLC) 2014050165
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