Plant cell death processes:
Gespeichert in:
Format: | Buch |
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Sprache: | English |
Veröffentlicht: |
Amsterdam [u.a.]
Elsevier
2004
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Schlagworte: | |
Online-Zugang: | Table of contents Inhaltsverzeichnis |
Beschreibung: | Includes index |
Beschreibung: | XXVI, 392 S. Ill., graph. Darst. |
ISBN: | 0125209150 |
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adam_text | Plant Cell Death Processes
Edited by
Larry D Nooden
Department of Biology
University of Michigan
AMSTERDAM • BOSTON • HEIDELBERG • LONDON
ELSEVIER NEW YORK • OXFORD • PARIS • SAN DIEGO
ACADEMIC SAN FRANCISCO • SINGAPORE • SYDNEY • TOKYO
PRESS Academic Press is an imprint of Elsevier
CONTENTS
Contributors xvii
Foreword—Aging and Death xxi
Preface xxv
1 Introduction 1
I What this Book Covers 1
II The Processes—Senescence, Aging, Programmed Cell Death,
Apoptosis, etc —Evolving Concepts 2
III Apoptosis in Animals 6
IV Apoptosis in Plants 8
V The Senescence Syndrome 10
VI Hormonal Controls 13
VII Evolution 14
References 14
2 Plant Cell Death and Cell Differentiation 19
I Introduction 19
II The Scope of PCD in Plants 20
III Prereproductive Cell Death 22
A Aleurone and Scutellum 22
B Xylem 24
C Aerenchyma 25
D Abscission Zones 26
IV Reproductive Cell Death 27
A Floral Organs 27
B Gametophytes 29
C Pollination 29
D Embryogenesis 30
V Conclusions 31
References 31
v
vi Contents
3 Cell Death in Plant Disease: Mechanisms and
Molecular Markers 37
I Introduction 37
II Role of Cell Death during Plant-Pathogen Interactions 38
HI Structural and Biochemical Changes Accompanying Cell Death
during Plant Disease 38
IV Definition of Steps Involved in the Signaling Process of
Cell Death Induction during Plant-Pathogen Interactions 39
V Molecular Components for Cell Death Control during
Plant-Pathogen Interactions 41
VI Glogal Analyses of Markers for Cell Death Induction by
Plant Pathogens 43
A Isolation and Characterization of HR Markers 43
B Comparative Analyses of Cell Death Pathways Induced by
Avirulent Pathogens and Senescence 44
C Future Approaches to Global Analysis of Cell
Death-related Genes: Genomic-scale Gene Expression
Monitoring to Mapping of Intersecting Signaling Pathways 45
References 47
4 Changes in Gene Expression during Senescence 51
I Introduction 51
n Changes in Patterns of Nucleic Acids and Proteins during
Senescence 52
HI Similarities between Senescing and Ripening Tissues 52
IV Identification and Classification of Senescence-related Genes 52
V Senescence-related Genes 53
A Regulation of SR Gene Expression by Stresses 60
B Regulation of SR Gene Expression by Cytokinins 60
C Regulation of SR Gene Expression by Ethylene 61
VI Function of SR Genes in Senescence 62
A Genes Involved in Protein Degradation 62
B Genes Involved in the Breakdown of Nucleic Acids 63
C Genes Involved in Membrane Disassembly 64
D Genes Involved in Remobilization of Nitrogen 64
E Genes Encoding Protective or Defense-Response
Proteins 65
F Genes Involved in Ethylene Biosynthesis and Perception 66
VII Summary 66
References 67
5 Genes that Alter Senescence 73
I Introduction 73
II Senescence as a Genetically Programmed Process 74
Contents vii
HI Genes Involved in Execution of Senescence 76
A Overview 76
B Chlorophyll Breakdown 77
C Membrane and Lipid Breakdown 78
D Other Genes Involved in Macromolecule Degradation 78
IV Genes Affecting Senescence through Action on the Hormonal
Controls 79
A Overview 79
B Delay of Senescence by Cytokinin 79
C Regulation of Senescence by Ethylene 80
D Change of Senescence by Brassinosteroid Biosynthesis 80
V Genes that Alter Senescence in Response to Environmental
Factors 80
A Genes in Light Signaling 80
B Stress-related Genes 81
VI Genes Controlling Vegetative Growth (Regeneration) and
Monocarpic Senescence 81
VII Regulatory Genes and Intracellular Signaling 82
VIE Conclusions 85
References 87
6 Senescence and Genetic Engineering 91
I Introduction 91
II The Relationship of Cytokinins and Senescence 92
A Manipulation of Cytokinin Levels 92
B Cytokinin Signaling and Mechanism of Action 95
III The Relationship of Ethylene and Senescence 97
IV Concluding Remarks 100
References 101
7 Proteolysis 107
I Introduction - 107
II Selective Hydrolysis of Peptide Bonds 108
A Protein Maturation and Removal of Peptides from Larger
Precursors 108
B Degradation of Damaged Proteins and of Unassembled
Subunits 108
C Protein Turnover and Adaptation of the Metabolism to
Changing Conditions 108
D Degradation of Mature Proteins in Relation to Nitrogen
Remobilization 108
III Proteolytic Activities in Plants 109
A Classification of Peptide Hydrolases 109
B Complex Proteolytic Systems 110
C ATP-Dependency of Proteolysis 113
viii Contents
D Compartmentation 113
IV Proteolysis in Relation to Cell Death 114
A Cell Death during Differentiation 114
B Senescence 115
C Hypersensitive Response 116
V Regulation of Protein Catabolism 116
A Changes in the Pattern of Proteolytic Enzymes 116
B Altered Susceptibility of Substrate Proteins 116
C Aspects of Compartmentation 118
D Influence of Solutes 118
VI Conclusions 119
References 120
8 Ethylene Signaling in Plant Cell Death 125
I Introduction 125
II Ethylene Biosynthesis Pathways 126
A ACC Pathway 126
B Non-ACC Pathway 126
IH Temporal and Spatial Regulation of Ethylene Biosynthesis 127
IV Ethylene Signal Transduction Pathway 127
V Ethylene Cross Talk with Other Plant Hormones 129
A Ethylene, Abscisic Acid and Sugar 131
B Ethylene and Auxin 132
C Ethylene and Cytokinins 132
D Ethylene and Polyamines 133
VI Protease Involvement and Ethylene Biosynthesis in PCD 134
VII Hormonal Regulation of Plant PCD 134
VIII Perspective 136
References 137
9 Jasmonates — Biosynthesis and Role in Stress Responses and
Developmental Processes
I Introduction
II Jasmonates and Related Compounds
III LOX-derived Compounds and the Biosynthesis of
Octadecanoids and Jasmonates
A The LOX Pathway
B Octadecanoid and Jasmonate Biosynthesis
C Signaling Properties of Jasmonates and
Octadecanoids—the Oxylipin Signature
IV Jasmonate-induced Alteration of Gene Expression
V Jasmonates and Plant Defense Reactions
VI Jasmonates in Plant Development and Senescence
References
Contents ix
10 Leaf Senescence and Nitrogen Metabolism 157
I Introduction 157
II Leaf Senescence and Nitrogen Loss 157
A Fate of Chloroplasts and their Constituents 158
III Protein Metabolism during Leaf Senescence 158
A Fates of DNA and RNA 158
B Synthesis and Degradation of Rubisco 159
C Molecular Basis for Changes in Rubisco Synthesis during
Senescence 160
D Light-Harvesting Chlorophyll a/b Binding Protein of PSII 161
E D1 protein 162
IV Protein degradation 163
V Remobilization of Nitrogen in Senescing Leaves 163
A Amide Formation in Senescing Leaves 163
VI Conclusion 164
References 165
11 Photosynthesis and Chloroplast Breakdown 169
I Introduction 169
II Decline of Photosynthetic Function 170
A Decrease in the Number of Chloroplasts or Gradual
Degradation of Persisting Chloroplasts? 170
B Photosynthetic Performance 170
C Risk of Photoinhibition 171
III Chloroplast Breakdown 172
A Sequence of Senescence-associated Events 172
B Degradation of Plastid Constituents 172
IV Expression of Nuclear Genes Encoding Photosynthesis-related
Proteins 175
A Calvin Cycle-related Genes 175
B Genes Encoding Thylakoid Membrane Proteins 175
C Regulatory Mechanisms Underlying the Down-regulation
of Photosynthesis-related Nuclear Genes 176
V Plastid Gene Expression during Senescence 176
A Transcriptional Activity 176
B Transcript Levels 178
C Protein Synthesis 178
D Expression of Plastid Genes not Related to
Photosynthesis 179
VI Regulation of Chloroplast Senescence 180
A The Dilemma of the Chloroplast: Ongoing Photosynthesis
during Senescence-associated Breakdown 180
B Coordination of Senescence-related Degradation of
Proteins 180
C Photosynthesis and Senescence in Stay-Green Mutants and
Transgenic Plants 181
X Contents
D Photosynthesis and Senescence at Elevated CO2
Concentrations 182
VII Conclusions 183
References 183
12 How Leaves Turn Yellow: Catabolism of Chlorophyll 189
I Introduction 189
II Porphyrin Macrocycle Cleavage 190
IE Chlorophyll Catabolic Pathway 192
IV Intracellular Organization 194
V Regulation of Chlorophyll Breakdown 196
VI Significance of Chlorophyll Breakdown 197
VII Chlorophyll Bleaching 198
Vni Prospect 199
References 199
13 Free Radicals and Oxidative Stress 203
I Introduction 203
II The Molecules that Cause Oxidative Stress 203
m Generating Active Oxygen Species 204
A Metabolic Byproducts 204
B Abiotic Stresses 205
C Oxidative Burst 206
D Photosensitizing Compounds 206
IV Defending Against Oxidative Stress 207
A Cellular Damage by Active Oxygen Species 207
B Enzymatic Detoxification 207
C Small Molecule Antioxidants 207
V Active Oxygen in Resistance and Senescence 209
A Crosslinking of Cell Wall Proteins 209
B Triggering of Programmed Cell Death 209
C Lesion Mimic Mutants 209
D Systemic Acquired Resistance and Salicylic Acid 210
E Active Oxygen and Senescence 210
VI Mechanisms of Signal Transduction 211
A Control of Transcription by Plastoquinone Redox State 211
B MAP Kinase Pathway Signaling 212
VII Conclusions 212
References 212
14 Nutrient Resorption 215
I Introduction 215
II Potential and Realized Resorption 216
Contents xi
HI Resorption Efficiency and Proficiency 216
IV Macronutrients and Trace Metals 217
V Model I: Determinants of Potential Resorption 218
VI Model II: Determinants of Realized Resorption 220
VII Synthesis 223
References 223
15 Whole Plant Senescence 227
I Introduction 228
A Objectives 228
B Patterns 228
C What is Whole Plant Senescence? 229
D Senescence Parameters 229
E Importance of Chronological Age 229
F Correlative Controls 230
G The Causes of Whole Plant Senescence 230
H Evolution and Differences among Monocarpic Species 231
n Complexity and the Rules of Evidence 231
in What is the Cause of Monocarpic Senescence? 232
A Loss of Vegetative Regenerative Capacity 232
B Nutrient (and Hormone) Deficiencies 233
C Death Hormone (Senescence Signal) 238
IV Senescence in Polycarpic Plants and Clones 238
V Reproductive Yield 240
References 241
16 Autumn Coloration, Carbon Acquisition and Leaf Senescence 245
I Introduction 245
II Progress of Autumn Coloration of a Tree Crown 246
-m- Shoot Development and Leaf Senescence 247
A Leaf Phenology 247
B Leaf Shedding 248
C Leaf Nitrogen Content and Light Environment 250
IV Leaf Structure and Function 252
V Leaf Pigments and their Ecological Role 253
References 255
17 Annual Shoot Senescence in Perennials 259
I Introduction 259
II Mayapple as a Study Organism 261
m Sources of Variation in Endogenous Shoot Senescence Time
in Mayapple 262
xiv Contents
II Evolutionary Approaches 332
A Theories of Senescence 332
B Tests of the Theories 334
III Demographic Approaches 338
A Distinguishing Age and Environment 338
B Unique Features of Plants 341
IV Conclusions 344
References 345
24 Flower Longevity 349
I Introduction 349
II Patterns of Flower Longevity in Nature 350
A Variation 350
B Ecological and Phylogenetic Correlates of Flower
Longevity 350
in Evolutionary Perspective 352
A Model of Optimal Flower Longevity 352
B Test of the Model 355
C Extensions of the Model 356
IV Other Issues 357
A The Role of Plasticity in Floral Longevity 357
B Other Selective Forces on Floral Longevity 359
V Conclusions and Future Directions 360
References 360
25 Ecology of Leaf Senescence 363
I Introduction 363
n Photosynthesis 364
III Herbivory 365
IV Leaf Longevity 366
V Theories of Leaf Longevity 367
VI Leaf Habit and Geographical Pattern 368
Vn Leaf Longevity in Different Ecosystems 369
References 370
26 Light Control of Senescence 375
I Introduction 375
n Effects of Darkness 376
in Effects of Light Quantity 377
IV Effects of Light Quality 377
V Photoperiod Effects 379
VI Relationships between Light Effects on Senescence and
Hormones 380
Contents XV
VII Genetic Alterations of Light Control of Senescence 381
References 381
Epilogue 385
Index 387
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spelling | Plant cell death processes ed. by Larry D. Noodén Amsterdam [u.a.] Elsevier 2004 XXVI, 392 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Includes index Altern - Pflanzen Pflanzenzelle - Apoptosis Zelltod - Pflanzenzelle Altern (DE-588)4068596-2 gnd rswk-swf Apoptosis (DE-588)4291096-1 gnd rswk-swf Zelltod (DE-588)4207415-0 gnd rswk-swf Pflanzenzelle (DE-588)4115551-8 gnd rswk-swf Pflanzen (DE-588)4045539-7 gnd rswk-swf Pflanzenzelle (DE-588)4115551-8 s Zelltod (DE-588)4207415-0 s DE-604 Pflanzen (DE-588)4045539-7 s Altern (DE-588)4068596-2 s Apoptosis (DE-588)4291096-1 s Noodén, Larry D. Sonstige (DE-588)128758201 oth http://www.loc.gov/catdir/toc/els041/2003051842.html Table of contents HEBIS Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010321752&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Plant cell death processes Altern - Pflanzen Pflanzenzelle - Apoptosis Zelltod - Pflanzenzelle Altern (DE-588)4068596-2 gnd Apoptosis (DE-588)4291096-1 gnd Zelltod (DE-588)4207415-0 gnd Pflanzenzelle (DE-588)4115551-8 gnd Pflanzen (DE-588)4045539-7 gnd |
subject_GND | (DE-588)4068596-2 (DE-588)4291096-1 (DE-588)4207415-0 (DE-588)4115551-8 (DE-588)4045539-7 |
title | Plant cell death processes |
title_auth | Plant cell death processes |
title_exact_search | Plant cell death processes |
title_full | Plant cell death processes ed. by Larry D. Noodén |
title_fullStr | Plant cell death processes ed. by Larry D. Noodén |
title_full_unstemmed | Plant cell death processes ed. by Larry D. Noodén |
title_short | Plant cell death processes |
title_sort | plant cell death processes |
topic | Altern - Pflanzen Pflanzenzelle - Apoptosis Zelltod - Pflanzenzelle Altern (DE-588)4068596-2 gnd Apoptosis (DE-588)4291096-1 gnd Zelltod (DE-588)4207415-0 gnd Pflanzenzelle (DE-588)4115551-8 gnd Pflanzen (DE-588)4045539-7 gnd |
topic_facet | Altern - Pflanzen Pflanzenzelle - Apoptosis Zelltod - Pflanzenzelle Altern Apoptosis Zelltod Pflanzenzelle Pflanzen |
url | http://www.loc.gov/catdir/toc/els041/2003051842.html http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010321752&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT noodenlarryd plantcelldeathprocesses |