C4 photosynthesis and related CO2 concentrating mechanisms:
Gespeichert in:
Weitere Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Dordrecht
Springer
2011
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Ausgabe: | 1. ed. |
Schriftenreihe: | Advances in Photosynthesis and Respiration
32 |
Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | XXVII, 410 S. Ill., graph. Darst., Kt. 260 mm x 195 mm |
ISBN: | 9789048194063 9789048194070 |
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IMAGE 1
C 4 PHOTOSYNTHESIS
AND
RELATED CO P CONCENTRATING MECHANISMS
EDITED BY
AGEPATI S. RAGHAVENDRA
UNIVERSITY OF HYDERABAD, HYDERABAD, INDIA
AND
ROWAN F. SAGE UNIVERSITY OF TORONTO, ONTARIO, CANADA
FYA SPRINGER
IMAGE 2
CONTENTS
FROM THE SERIES EDITOR V
CONTENTS XIII
PREFACE XIX
THE EDITORS XXIII
CONTRIBUTORS XXV
AUTHOR INDEX XXVII
PART I: TRIBUTES & INTRODUCTION
1 SIR JAGADISH CHANDRA BOSE (1858-1937): A PIONEER IN PHOTOSYNTHESIS
RESEARCH AND DISCOVERER OF UNIQUE CARBON ASSIMILATION IN HYDRILLA 3-11
AGEPATI S. RAGHAVENDRA AND GOVINDJEE SUMMARY 3
I. INTRODUCTION 4
II. LIFE OF SIR J.C. BOSE 4
III. OUT OF,BOX CONCEPTS AND INNOVATIVE INSTRUMENTS FOR BIOLOGICAL
EXPERIMENTS 5 IV. CLASSIC AND COMPREHENSIVE MONOGRAPHS ON PHYSIOLOGY OF
PLANTS 6 V. WORK ON PHOTOSYNTHESIS AND FOCUS ON HYDRILLA 6
VI. IMPORTANCE OF MALATE AND OPERATION OF C 4 -LIKE PATHWAY 7
VII. CONTEMPORARY VIEW OF HIS OBSERVATIONS ON HYDRILLA 7
VIII. OBSERVATIONS ON INHIBITORS/STIMULANTS ON PHOTOSYNTHESIS IN
HYDRILLA 8 IX. CONCLUDING REMARKS: INSPIRATION FOR BIOLOGY RESEARCH IN
INDIA AND A PIONEER OF PHOTOSYNTHESIS RESEARCH ON HYDRILLA 9
ACKNOWLEDGMENTS 10
REFERENCES 10
2 CONSTANCE ENDICOTT HARTT (1900-1984) AND THE PATH OF CARBON IN THE
SUGARCANE LEAF 13-16
ANDREW A. BENSON AND ANDREW MARETZKI SUMMARY. 13
I. BIOGRAPHY OF CONSTANCE HARTT: EARLY PERIOD AND HER MOVE INTO HAWAII
14 II. WORK AT HAWAIIN SUGAR PLANTERS' ASSOCIATION: FOCUS ON
BIOSYNTHESIS AND TRANSPORT OF SUGAR IN SUGARCANE 14
III. DISCOVERY OF THE ROLE OF MALATE IN CARBON ASSIMILATION AND SUCROSE
BIOSYNTHESIS 14
IV. CONCLUDING REMARKS 15
ACKNOWLEDGMENTS 16
REFERENCES 16
XLLL
IMAGE 3
3 INTRODUCTION 17-25
AGEPATI S. RAGHAVENDRA AND ROWAN F. SAGE
SUMMARY 17
I. INTRODUCTION 18
II. NEW PHYSIOLOGICAL AND DEVELOPMENTAL PERSPECTIVES 20
III. MOLECULAR BASIS OF THE C 4 PATHWAY 22
IV. SYSTEMATICS, DIVERSITY AND EVOLUTION 23
V. NEW USES OF C 4 PHOTOSYNTHESIS 24
VI. CONCLUSIONS 24
ACKNOWLEDGMENTS 24
REFERENCES 24
PART II: NEW PHYSIOLOGICAL AND DEVELOPMENTAL PERSPECTIVES
4 C 4 PHOTOSYNTHESIS: KRANZ FORMS AND SINGLE-CELL C 4 IN TERRESTRIAL
PLANTS 29-61
GERALD E. EDWARDS AND ELENA V. VOZNESENSKAYA SUMMARY ** 30
I. INTRODUCTION 30
II. STRUCTURAL AND BIOCHEMICAL DIVERSITY IN KRANZ TYPE ANATOMY 31
III. SINGLE-CELL C 4 PHOTOSYNTHESIS IN TERRESTRIAL PLANTS 48
IV. FUTURE PERSPECTIVES 55
ACKNOWLEDGMENTS 56
REFERENCES 56
5 SINGLE-CELL C 4 PHOTOSYNTHESIS IN AQUATIC PLANTS 63-80
GEORGE BOWES SUMMARY 63
I. INTRODUCTION 64
II. UNRAVELING THE SINGLE-CELL C 4 SYSTEM 64
III. HCO 3 ~-USE MIMICS C 4 PHOTOSYNTHETIC GAS EXCHANGE CHARACTERISTICS
76 IV. CONCLUDING THOUGHTS 76
ACKNOWLEDGMENTS 77
REFERENCES 77
6 PHOTORESPIRATION:THE BRIDGE TO C 4 PHOTOSYNTHESIS 81-108
HERMANN BAUWE SUMMARY 81
I. INTRODUCTION 82
II. BIOCHEMISTRY AND GENETICS OF THE C 2 CYCLE 84
III. RELATED REACTIONS AND INTERACTIONS WITH OTHER METABOLIC PATHWAYS 93
IV. MEASUREMENT OF PHOTORESPIRATION 95
V. THE ROLE OF PHOTORESPIRATION FOR THE EVOLUTION OF C 4 PHOTOSYNTHESIS
97 VI. FUTURE PROSPECTS 101
ACKNOWLEDGMENTS 103
REFERENCES 103
X IV
IMAGE 4
7 NITROGEN AND SULFUR METABOLISM IN C 4 PLANTS 109-128
STANISLAV KOPRIVA SUMMARY 109
I. INTRODUCTION 110
II. NITROGEN ASSIMILATION 110
III. SULFATE ASSIMILATION 114
IV. GLUTATHIONE SYNTHESIS AND REDUCTION 117
V. PHYSIOLOGICAL SIGNIFICANCE OF THE DISTRIBUTION OF NITRATE AND SULFATE
ASSIMILATION 120
VI. CONCLUSIONS 122
ACKNOWLEDGMENTS 122
REFERENCES 123
8 NITROGEN AND WATER USE EFFICIENCY OF C 4 PLANTS 129-146
OULA GHANNOUM, JOHN R. EVANS, AND SUSANNE VON CAEMMERER SUMMARY 129
I. INTRODUCTION 130
II. NITROGEN USE EFFICIENCY 131
III. WATER USE EFFICIENCY 138
IV. CONCLUSIONS 143
REFERENCES 143
9 DEVELOPMENT OF LEAVES IN C 4 PLANTS: ANATOMICAL FEATURES THAT SUPPORT
C 4 METABOLISM 147-159
TIMOTHY NELSON SUMMARY 147
I. INTRODUCTION 148
II. OVERVIEW OF C 4 BIOLOGY AND LEAF ANATOMY 148
III. QUANTITATIVE VARIATION IN LEAF TRAITS 149
IV. COMPLEX TRAITS AND SYSTEMS ANALYSIS 154
ACKNOWLEDGMENTS 155
REFERENCES 155
10 C 4 PHOTOSYNTHESIS AND TEMPERATURE 161-195
ROWAN F. SAGE, FERIT KOCACINAR, AND DAVID S. KUBIEN SUMMARY 162
I. INTRODUCTION 162
II. THE TEMPERATURE RESPONSES OF C 4 PHOTOSYNTHESIS AND GROWTH 163 III.
THE BIOGEOGRAPHY OF C 4 PHOTOSYNTHESIS , 168
IV. THE TEMPERATURE RESPONSE OF C 4 PHOTOSYNTHESIS: BIOCHEMICAL CONTROLS
175 V. FLUORESCENCE AT LOW TEMPERATURE 184
VI. STOMATAL LIMITATIONS 185
VII. THERMAL ACCLIMATION OF C 4 PHOTOSYNTHESIS 185
VIM. CONCLUSION: ARE C 4 PLANTS INHERENTLY MORE SENSITIVE BY LOW
TEMPERATURE THAN C 3 PLANTS? 187
ACKNOWLEDGMENTS 187
REFERENCES 188
XV
IMAGE 5
PART III: MOLECULAR BASIS OF C 4 PATHWAY
11 TRANSPORT PROCESSES: CONNECTING THE REACTIONS OF C 4 PHOTOSYNTHESIS
199-219
ANDREA BRAUTIGAM AND ANDREAS P. M. WEBER SUMMARY 199
I. INTRODUCTION 200
II. INTERCELLULAR FLUXES 203
III. TRANSPORT PROCESSES IN THE NADP-MALIC ENZYME TYPE 203
IV. TRANSPORT PROCESSES IN THE NAD-MALIC ENZYME TYPE 209
V. TRANSPORT PROCESSES IN THE PEP CARBOXYKINASE (PEP-CK) TYPE 211 VI.
TRANSPORT PROCESSES IN SINGLE CELL C 4 METABOLISM 212
VII. FUTURE PROSPECTS 213
ACKNOWLEDGMENTS 214
REFERENCES . 215
12 C 4 GENE EXPRESSION IN MESOPHYLL AND BUNDLE SHEATH CELLS 221-256
JAMES O. BERRY, MINESH PATEL, AND AMY ZIELINSKI SUMMARY 221
I. INTRODUCTION AND OVERVIEW 222
II. C 4 GENE EXPRESSION IN BUNDLE SHEATH CELLS 225
III. C 4 GENE EXPRESSION IN MESOPHYLL CELLS 235
IV. C 4 GENE EXPRESSION IN ORGANELLES 240
V. FACTORS AFFECTING C 4 GENE EXPRESSION IN BS AND MP CELLS 240
VI. LEVELS OF C 4 GENE REGULATION 243
VII. CONCLUSIONS, FUTURE DIRECTIONS, AND MOLECULAR ENGINEERING OF C 4
CAPABILITY 248
ACKNOWLEDGMENTS 249
REFERENCES 250
13 C 4 -PHOSPHOENOLPYRUVATE CARBOXYLASE 257-275
UDO GOWIK AND PETER WESTHOFF SUMMARY 257
I. PHOSPHOENOLPYRUVATE CARBOXYLASE: AN OVERVIEW 258
II. EVOLUTIONARY ORIGIN OF C 4 PEPCS 263
III. MOLECULAR EVOLUTION OF C 4 PEPCS 266
IV. OUTLOOK 272
REFERENCES 272
14 C 4 DECARBOXYLASES: DIFFERENT SOLUTIONS FOR THE SAME BIOCHEMICAL
PROBLEM, THE PROVISION OF CO 2 TO RUBISCO IN THE BUNDLE SHEATH CELLS
277-300
MARIA F. DRINCOVICH, MARIA V. LARA, CARLOS S. ANDREO, AND VERONICA G.
MAURINO
SUMMARY 277
I. INTRODUCTION 278
II. NADP-MALIC ENZYME, THE MOST STUDIED C 4 DECARBOXYLASE 280
XVI
IMAGE 6
III. PLANT MITOCHONDRIAL NAD-ME, A HETERO-OLIGOMERIC MALIC ENZYME 286
IV. PLANT PEPCK: THE CYTOSOLIC GLUCONEOGENIC ENZYME INVOLVED IN C 4
PHOTOSYNTHESIS 290
V. FUTURE PERSPECTIVES 295
ACKNOWLEDGMENTS 295
REFERENCES 295
15 STRUCTURE, FUNCTION, AND POST-TRANSLATIONAL REGULATION OF C 4
PYRUVATE ORTHOPHOSPHATE DIKINASE 301-315
CHRIS J. CHASTAIN SUMMARY 301
I. INTRODUCTION 302
II. POST-TRANSLATIONAL REGULATION OF C 4 PPDK 305
III. FUNCTIONAL AND BIOINFORMATIC ANALYSIS OF CLONED MAIZE C 4 AND
ARABIDOPSIS C 4 -LIKE PPDK-REGULATORY PROTEIN 310
IV. FUTURE DIRECTIONS 313
ACKNOWLEDGMENTS 313
REFERENCES 313
PART IV: DIVERSITY AND EVOLUTION
16 C 4 PHOTOSYNTHESIS ORIGINS IN THE MONOCOTS: A REVIEW AND REANALYSIS
319-338
ERIC H. ROALSON SUMMARY 319
I. INTRODUCTION 320
II. ALISMATALES 320
II. CYPERACEAE 323
IV. POACEAE 326
V. CONCLUSIONS 332
REFERENCES 335
17 THE GEOLOGIC HISTORY OF C 4 PLANTS 339-357
COLIN P. OSBORNE SUMMARY 339
I. INTRODUCTION 340
II. GEOLOGIC EVIDENCE 340
III. ORIGIN OF C 4 PHOTOSYNTHESIS 345
IV. EXPANSION OF C 4 GRASSLANDS 347
V. CONCLUSIONS 353
ACKNOWLEDGMENTS 354
REFERENCES 354
XVII
IMAGE 7
PARTV: C 4 ENGINEERING AND BIOENERGY
18 HURDLES TO ENGINEERING GREATER PHOTOSYNTHETIC RATES IN CROP PLANTS: C
4 RICE 361-378
JAMES N. BURNELL SUMMARY 361
I. INTRODUCTION 362
II. WHY TRY TO ENGINEER A C 4 CROP PLANT? 362
III. HOW CAN CROP PRODUCTIVITY BE INCREASED BY C 4 PHOTOSYNTHESIS? 363
IV. THE REQUIREMENTS FOR C 4 PHOTOSYNTHESIS 363
V. WHICH PLANT SHOULD WE TRANSFORM? 366
VI. WHICH MECHANISM OF C 4 PHOTOSYNTHESIS SHOULD BE USED AND WHY? 367
VII. EARLY ATTEMPTS AT TRANSFERRING C 4 -TRAITS INTO C 3 PLANTS 369
VIII. ALTERNATE APPROACHES TO IMPROVING PHOTOSYNTHETIC RATES 372
IX. HURDLES TO ENGINEERING C 4 CROPS 373
X. ASSESSMENT OF C 4 -NESS 374
XI. CONCLUSIONS 374
ACKNOWLEDGMENT 375
REFERENCES 375
19 C 4 SPECIES AS ENERGY CROPS 379-397
MICHAEL B. JONES SUMMARY 379
I. INTRODUCTION 380
II. WHAT ARE THE QUALITIES OF AN'IDEAL'ENERGY CROP? 381
III. C 4 SPECIES AS ENERGY CROPS IN COOL-TEMPERATE CLIMATES 383
IV. EXAMPLES OF C 4 SPECIES AS BIOFUEL FEEDSTOCK 385
V. PROSPECTS FOR ENERGY CROP IMPROVEMENT 388 .
VI. THE ENVIRONMENTAL DEBATE AND BIOENERGY CROPS 389
VII. ECONOMIC AND ENERGETIC COSTS AND BENEFITS 391
VIII. CONCLUSIONS AND PERSPECTIVES 392
REFERENCES 392
INDEX 399-410
XVLLL |
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series2 | Advances in Photosynthesis and Respiration |
spelling | C4 photosynthesis and related CO2 concentrating mechanisms ed. by Agepati S. Raghavendra ... 1. ed. Dordrecht Springer 2011 XXVII, 410 S. Ill., graph. Darst., Kt. 260 mm x 195 mm txt rdacontent n rdamedia nc rdacarrier Advances in Photosynthesis and Respiration 32 Kohlendioxid (DE-588)4031648-8 gnd rswk-swf C4-Pflanzen (DE-588)4155219-2 gnd rswk-swf Atmung (DE-588)4003404-5 gnd rswk-swf Photosynthese (DE-588)4045936-6 gnd rswk-swf Anreicherung (DE-588)4330194-0 gnd rswk-swf C4-Pflanzen (DE-588)4155219-2 s Photosynthese (DE-588)4045936-6 s Kohlendioxid (DE-588)4031648-8 s Anreicherung (DE-588)4330194-0 s Atmung (DE-588)4003404-5 s DE-604 Raghavendra, Agepati S. 1950- (DE-588)12020746X edt Advances in Photosynthesis and Respiration 32 (DE-604)BV019837546 32 text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3454471&prov=M&dok_var=1&dok_ext=htm Inhaltstext HEBIS Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020806908&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | C4 photosynthesis and related CO2 concentrating mechanisms Advances in Photosynthesis and Respiration Kohlendioxid (DE-588)4031648-8 gnd C4-Pflanzen (DE-588)4155219-2 gnd Atmung (DE-588)4003404-5 gnd Photosynthese (DE-588)4045936-6 gnd Anreicherung (DE-588)4330194-0 gnd |
subject_GND | (DE-588)4031648-8 (DE-588)4155219-2 (DE-588)4003404-5 (DE-588)4045936-6 (DE-588)4330194-0 |
title | C4 photosynthesis and related CO2 concentrating mechanisms |
title_auth | C4 photosynthesis and related CO2 concentrating mechanisms |
title_exact_search | C4 photosynthesis and related CO2 concentrating mechanisms |
title_full | C4 photosynthesis and related CO2 concentrating mechanisms ed. by Agepati S. Raghavendra ... |
title_fullStr | C4 photosynthesis and related CO2 concentrating mechanisms ed. by Agepati S. Raghavendra ... |
title_full_unstemmed | C4 photosynthesis and related CO2 concentrating mechanisms ed. by Agepati S. Raghavendra ... |
title_short | C4 photosynthesis and related CO2 concentrating mechanisms |
title_sort | c4 photosynthesis and related co2 concentrating mechanisms |
topic | Kohlendioxid (DE-588)4031648-8 gnd C4-Pflanzen (DE-588)4155219-2 gnd Atmung (DE-588)4003404-5 gnd Photosynthese (DE-588)4045936-6 gnd Anreicherung (DE-588)4330194-0 gnd |
topic_facet | Kohlendioxid C4-Pflanzen Atmung Photosynthese Anreicherung |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=3454471&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020806908&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV019837546 |
work_keys_str_mv | AT raghavendraagepatis c4photosynthesisandrelatedco2concentratingmechanisms |