Plant abiotic stress:
Gespeichert in:
Weitere Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Oxford, UK
Blackwell
2005
|
Schlagworte: | |
Online-Zugang: | Table of contents Inhaltsverzeichnis |
Beschreibung: | Includes bibliographical references and index |
Beschreibung: | XVII, 270 S. Ill., graph. Darst. |
ISBN: | 1405122382 |
Internformat
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Datensatz im Suchindex
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adam_text | Plant Abiotic Stress
Edited by
MATTHEW A JENKS
Center for Plant Environmental Stress Physiology
Purdue University
Indiana, USA
and
PAUL M HASEGAWA
Center for Plant Environmental Stress Physiology
Purdue University
Indiana, USA
©
Blackwell
Publishing
Contents
Contributors xi
Preface xvi
1 Eco-physiological adaptations to limited water environments 1
ANDREW J WOOD
1 1 Introduction 1
1 2 Limited water environments 2
121 Arid and semiarid regions of the world 2
122 Plant strategies for water economy 4
123 Ability to survive in water-limited environments 5
124 Surviving water-deficit (drought) and severe
water-deficit (desiccation) 6
1 3 Adaptation to limited water environments 7
131 Evolution of land plants 7
132 Tolerance to desiccation 10
1 4 Refresher of the world - how to create more drought-tolerant
crops 10
©
2 Plant cuticle function as a barrier to water loss 14
S MARK GOODWIN and MATTHEW A JENKS
2 1 Introduction 14
2 2 Cuticle structure and composition 14
2 3 Cuticle function as a barrier to plant water loss 18
2 4 Genetics of cuticle permeability 24
2 5 Conclusions 31
3 Plant adaptive responses to salinity stress 37
MIGUEL A BOTELLA, ABEL ROSADO, RAY A BRESSAN
and PAUL M HASEGAWA
3 1 Salt stress effects on plant survival, growth and development 37
311 NaCl causes both ionic and osmotic stresses 38
312 Secondary effects of salt stress 38
vi CONTENTS
3 2 Plant genetic models for dissection of salt tolerance
mechanisms and determinant function 39
321 Arabidopsis thaliana as a model for glycophyte
responses to salt stress 40
322 Thellungiella halophila (salt cress) - a halophyte
molecular genetic model 40
3 3 Plant adaptations to NaCl stress 41
331 Intracellular ion homeostatic processes 41
3311 Na+ influx and efflux across the plasma
membrane 42
3312 Na+ and Cl~ compartmentalization into the
vacuole 42
3313 K+/Na+selective accumulation 44
332 Regulation of Na+ homeostasis in roots and shoots 44
333 Sensing and regulatory pathways that control ion
homeostasis 45
334 Osmotic homeostasis: compatible osmolytes 46
335 Damage response and antioxidant protection 46
3 4 Plant salt tolerance determinants identified by functional
genetic approaches 47
341 Effector genes 52
3411 Na+ homeostasis 52
3412 Genes involved in osmotic homeostasis:
synthesis of compatible solutes 54
3413 Genes involved in ROS scavenging 54
3414 Genes involved in protection of cell integrity 56
342 Regulatory genes O 56
3421 Kinases 56
3422 Transcription factors 57
3423 Other salt tolerance determinants 58
3 5 Global analysis of transcriptional activation of salt-responsive
genes 58
4 The CBF cold-response pathway 71
SARAH FOWLER, DANIEL COOK and
MICHAEL F THOMASHOW
4 1 Introduction 71
4 2 Arabidopsis CBF cold-response pathway 72
421 Discovery and overview 72
422 CBF proteins 75
4221 General properties 75
4222 Mechanism of action 76
CONTENTS vii
423 Function of the CBF cold-response pathway 78
4231 Cryoprotective proteins 79
4232 Regulatory proteins 81
4233 Biosynthetic proteins 82
424 Regulation of CBF gene expression in response
to low temperature 83
4241 DNA regulatory elements controlling CBF
expression 84
4242 Proteins with positive roles in CBF
expression 84
4243 Proteins with negative roles in CBF expression 85
4244 Other potential CBF regulatory proteins 87
4245 Light and circadian rhythms 87
4246 Role of calcium 88
4247 Role of ABA 89
4 3 Conservation of the CBF cold-response pathway 89
431 Brassica napus 89
432 Tomato 90
433 Rice 92
4 4 Concluding remarks 93
Plant responses to high temperature 100
JANE LARKINDALE, MICHAEL MISHKIND and
ELIZABETH VIERLING
5 1 Introduction 100
5 2 Physiological responses to high temperature 101
521 High temperature limits uPoptimal plant performance 101
522 Heat sensitivity of photosynthesis 102
523 Heat sensitivity of reproduction 104
5 3 Cellular acquired thermotolerance 104
5 4 Heat shock proteins/molecular chaperones 105
541 HspWOICIpB 106
542 Hsp90 110
543 Hsp70IDnaK 111
544 Hsp60IGroE I l l
545 The sHSP family of proteins 112
5 5 Other components of the response to heat 114
551 Antioxidant production 115
552 Other heat-stress regulated genes 118
553 Other heat-protective responses 120
554 Mutants defective in heat tolerance 121
555 Transgenic plants with altered heat tolerance 122
viii CONTENTS
5 6 Signaling pathways involved in response to heat 125
561 Heat shock transcription factors 125
562 Other signaling pathways 126
563 Abscisic acid 126
564 Salicylic acid 127
565 Calcium 127
566 Active oxygen species 128
567 Ethylene 128
568 Signaling lipids 129
569 Kinases and phosphatases 129
5 7 Genetic variation in heat tolerance 131
571 Agricultural/horticultural plants 131
572 Natural variation in heat tolerance 132
5 8 Summary 132
6 Adaptive responses in plants to nonoptimal soil pH 145
V RAMIREZ-RODRIGUEZ, J LOPEZ-BUCIO and
L HERRERA-ESTRELLA
6 1 Introduction 145
6 2 Soil pH 146
6 3 Soil acidification 146
6 4 Acid soils 147
6 5 Calcareous soils 148
6 6 Plant responses to soil stress 149
6 7 Plant responses to heavy metals 150
6 8 Aluminum tolerance by exclusionQ 150
6 9 Aluminum tolerance by internal accumulation 152
6 10 Metal hyperaccumulators 153
6 11 Plant responses to mineral deficiency 155
6 11 1 Phosphorus deficiency 155
6 11 2 Improving P efficiency in transgenic plants 156
6 11 3 Plant responses to iron deficiency 158
6 12 Morphological responses to mineral deficiency 161
6 12 1 Effects of iron availability on transfer cell formation 161
6 12 2 Effects of nutrient availability on root hair formation 162
v 6 12 3 Effects of nutrient availability on root branching 162
/ 6 13 Functional genomics for the discovery of genes involved in
mineral nutrition 163
6 14 Application of functional genomics to iron and phosphorus
nutrition 164
CONTENTS ix
7 Plant response to herbicides 171
WILLIAM E DYER and STEPHEN C WELLER
7 1 Introduction 171
7 2 Photosynthetic inhibitors 174
721 Resistance 176
7 3 Biosynthetic inhibitors 177
731 Branched-chain amino acid synthesis inhibitors 177
7311 Resistance 179
732 Aromatic amino acid synthesis inhibitors 181
7321 Resistance 184
733 Fatty acid synthesis and elongation inhibitors 186
7331 Resistance 189
734 Cellulose synthesis inhibitors 190
7341 Resistance 190
735 Folic acid synthesis inhibitors 190
7351 Resistance 191
736 Nitrogen metabolism inhibitors 191
7361 Resistance 191
737 Quinone synthesis inhibitors 192
7371 Resistance 193
738 Carotenoid biosynthesis inhibitors 193
7381 Resistance 194
7 4 Induction of herbicide metabolism 194
741 Resistance 196
7 5 Protoporphyrinogen oxidase inhibitors 196
751 Resistance 197
7 6 Mitotic disruptors © 197
761 Resistance 198
7 7 Hormone disruptors 198
771 Resistance 199
7 8 Genome effects -- 201
7 9 Summary and future prospects 202
8 Integration of abiotic stress signaling pathways 215
MANU AGARWAL and JIAN-KANG ZHU
8 1 Introduction 215
811 Sensors 216
812 ROS 218
813 Calcium 220
814 Phospholipids 221
CONTENTS
815 SOS pathway
816 SOS3-like Ca2+-binding proteins and SOS2-like
protein kinases
817 CDPKs
818 MAPKs
819 ICE1 pathway for cold regulation
Regulation of gene expression by ABA
Conclusions and perspectives
Summary
9 Genomic Analysis of Stress Response 248
MOTOAKI SEKI, JUNKO ISHIDA, MAIKO NAKAJIMA,
AKIKO ENJU, KEI IIDA, MASAKAZU SATOU,
MIKI FUJITA, YOSHIHIRO NARUSAKA, MARI NARUSAKA,
TETSUYA SAKURAI, KENJI AKIYAMA, YOUKO OONO,
AYAKO KAMEI, TAISHI UMEZAWA, SAHO MIZUKADO,
KYONOSHIN MARUYAMA, KAZUKO
YAMAGUCHI-SHINOZAKI and KAZUO SHINOZAKI
9 1 Introduction 248
9 2 Expression profiling under stress conditions by cDNA
microarray analysis 248
9 3 DNA Microarrays are an excellent tool for identifying
genes regulated by various stresses 249
9 4 DNA microarrays are a useful tool for identifying the target
genes of the stress-related transcription factors 250
9 5 Expression profiling in various str©s-related mutants 253
9 6 Rehydration- or proline-inducible genes and functions of
their gene products identified by RAFL cDNA microarray 254
9 7 Abiotic stress-inducible genes identified using microarrays
in monocots 255
9 8 Many stress - or hormone-inducible transcription factor genes
have been identified by the transcriptome analysis 256
981 7K RAFL cDNA microarray analysis 256
982 GeneChip analysis 257
9 9 Application of full-length cDNAs to structural and functional
« analysis of plant proteins 258
9 10 Conclusions and perspectives 259
9 11 Summary 260
Index 266
|
any_adam_object | 1 |
author2 | Jenks, Matthew A. |
author2_role | edt |
author2_variant | m a j ma maj |
author_facet | Jenks, Matthew A. |
building | Verbundindex |
bvnumber | BV019879611 |
callnumber-first | S - Agriculture |
callnumber-label | SB112 |
callnumber-raw | SB112.5 |
callnumber-search | SB112.5 |
callnumber-sort | SB 3112.5 |
callnumber-subject | SB - Plant Culture |
classification_tum | BIO 498f LAN 242f |
ctrlnum | (OCoLC)56880263 (DE-599)BVBBV019879611 |
dewey-full | 632/.1 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 632 - Plant injuries, diseases, pests |
dewey-raw | 632/.1 |
dewey-search | 632/.1 |
dewey-sort | 3632 11 |
dewey-tens | 630 - Agriculture and related technologies |
discipline | Biologie Agrarwissenschaft Agrar-/Forst-/Ernährungs-/Haushaltswissenschaft / Gartenbau Pflanzenbau |
format | Book |
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id | DE-604.BV019879611 |
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institution | BVB |
isbn | 1405122382 |
language | English |
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spelling | Plant abiotic stress edited by Matthew A. Jenks ... Oxford, UK Blackwell 2005 XVII, 270 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Includes bibliographical references and index Cultures - Physiologie Cultures, Effets du stress sur les Ecologische aspecten gtt Fysiologie gtt Milieueffecten gtt Planten gtt Stress gtt Stressoren (fysiologie) gtt Crops Effect of stress on Crops Physiology Abiotischer Faktor (DE-588)4292953-2 gnd rswk-swf Pflanzen (DE-588)4045539-7 gnd rswk-swf Pflanzenphysiologie (DE-588)4045580-4 gnd rswk-swf Kulturpflanzen (DE-588)4033576-8 gnd rswk-swf Stressreaktion (DE-588)4138565-2 gnd rswk-swf 1\p (DE-588)4143413-4 Aufsatzsammlung gnd-content Kulturpflanzen (DE-588)4033576-8 s Pflanzenphysiologie (DE-588)4045580-4 s Stressreaktion (DE-588)4138565-2 s DE-604 Pflanzen (DE-588)4045539-7 s Abiotischer Faktor (DE-588)4292953-2 s 2\p DE-604 Jenks, Matthew A. edt http://www.loc.gov/catdir/toc/ecip053/2004025753.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=013203778&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Plant abiotic stress Cultures - Physiologie Cultures, Effets du stress sur les Ecologische aspecten gtt Fysiologie gtt Milieueffecten gtt Planten gtt Stress gtt Stressoren (fysiologie) gtt Crops Effect of stress on Crops Physiology Abiotischer Faktor (DE-588)4292953-2 gnd Pflanzen (DE-588)4045539-7 gnd Pflanzenphysiologie (DE-588)4045580-4 gnd Kulturpflanzen (DE-588)4033576-8 gnd Stressreaktion (DE-588)4138565-2 gnd |
subject_GND | (DE-588)4292953-2 (DE-588)4045539-7 (DE-588)4045580-4 (DE-588)4033576-8 (DE-588)4138565-2 (DE-588)4143413-4 |
title | Plant abiotic stress |
title_auth | Plant abiotic stress |
title_exact_search | Plant abiotic stress |
title_full | Plant abiotic stress edited by Matthew A. Jenks ... |
title_fullStr | Plant abiotic stress edited by Matthew A. Jenks ... |
title_full_unstemmed | Plant abiotic stress edited by Matthew A. Jenks ... |
title_short | Plant abiotic stress |
title_sort | plant abiotic stress |
topic | Cultures - Physiologie Cultures, Effets du stress sur les Ecologische aspecten gtt Fysiologie gtt Milieueffecten gtt Planten gtt Stress gtt Stressoren (fysiologie) gtt Crops Effect of stress on Crops Physiology Abiotischer Faktor (DE-588)4292953-2 gnd Pflanzen (DE-588)4045539-7 gnd Pflanzenphysiologie (DE-588)4045580-4 gnd Kulturpflanzen (DE-588)4033576-8 gnd Stressreaktion (DE-588)4138565-2 gnd |
topic_facet | Cultures - Physiologie Cultures, Effets du stress sur les Ecologische aspecten Fysiologie Milieueffecten Planten Stress Stressoren (fysiologie) Crops Effect of stress on Crops Physiology Abiotischer Faktor Pflanzen Pflanzenphysiologie Kulturpflanzen Stressreaktion Aufsatzsammlung |
url | http://www.loc.gov/catdir/toc/ecip053/2004025753.html http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013203778&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT jenksmatthewa plantabioticstress |