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150105s2015 enk ob 001 0 eng |
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|a 581.3/5
|2 23
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|a MAIN
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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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|a 1 online resource.
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|a text
|b txt
|2 rdacontent
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|a computer
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|2 rdamedia
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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 Plants
|x Respiration.
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|a Plant genetics.
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|a Plant physiology.
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|a SCIENCE
|x Life Sciences
|x Botany.
|2 bisacsh
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650 |
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|a Plant genetics.
|2 fast
|0 (OCoLC)fst01065459
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650 |
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|a Plant physiology.
|2 fast
|0 (OCoLC)fst01065616
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650 |
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|a Plants
|x Respiration.
|2 fast
|0 (OCoLC)fst01066090
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|a Electronic books.
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|a Electronic books.
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|a Mur, Luis A. J.
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|a Neelwarne, Bhagyalakshmi.
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776 |
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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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856 |
4 |
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|u https://doi.org/10.1002/9781118789971
|z Full Text via HEAL-Link
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|a 92
|b DG1
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