Plant responses to abiotic stress: with 5 tables
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Berlin ; Heidelberg ; New York ; Hong Kong ; London ; Milan ; Pa
Springer
2004
|
Schriftenreihe: | Topics in current genetics
4 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XIII, 300 S. graph. Darst. |
ISBN: | 3540200371 |
Internformat
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245 | 1 | 0 | |a Plant responses to abiotic stress |b with 5 tables |c Heribert Hirt ; Kazuo Shinozaki (ed.) |
264 | 1 | |a Berlin ; Heidelberg ; New York ; Hong Kong ; London ; Milan ; Pa |b Springer |c 2004 | |
300 | |a XIII, 300 S. |b graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 1 | |a Topics in current genetics |v 4 | |
500 | |a Literaturangaben | ||
650 | 4 | |a Crops |x Effect of stress on | |
650 | 4 | |a Crops |x Physiology | |
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adam_text |
TABLE
OF
CONTENTS
INTRODUCTION
.
1
HERIBERT
HIRT
.
1
WATER
STRESS
.
2
SALT
STRESS
.
2
LOW
TEMPERATURE
STRESS
.
3
ABA
AS
ABIOTIC
STRESS
SIGNALLING
HORMONE
.
4
HEAT
STRESS
.
4
OXIDATIVE
STRESS
.
5
HEAVY
METAL
STRESS
.
6
GENOTOXIC
STRESS
.
6
STRESS
TRANSCRIPTOME
ANALYSIS
.
7
STRESS
SENSORS
IN
THE
MODEL
ORGANISM
SYNECHOCYSTIS
.
8
1
MOLECULAR
RESPONSES
OF
HIGHER
PLANTS
TO
DEHYDRATION
.
9
DOROTHEA
BARTELS
AND
ERIK
SOUER
.
9
ABSTRACT
.
9
1.1
INTRODUCTION
.
9
1.2
PLANT
SPECIES
AND
EXPERIMENTAL
SYSTEMS
USED
IN
MOLECULAR
STUDIES
.
10
1.3
ABSCISIC
ACID
(ABA)
.
11
1.4
THE
PERCEPTION
OF
WATER
STRESS
.
13
1.4.1
HISTIDINE
KINASES
.
13
1.4.2
THE
ROLE
OF
KINASES
AND
PHOSPHATASES
IN
THE
RESPONSE
TO
WATER
DEFICIT
.
14
1.4.2
CALCIUM
SIGNALLING
.
16
1.4.3
HETEROTRIMERIC
G-PROTEINS
.
17
1.4.4
PHOSPHOLIPID
SIGNALLING
.
17
1.5
TRANSCRIPTIONAL
CONTROL
.
19
1.5.1
THE
ABA
RESPONSIVE
ELEMENT
.
22
1.5.2
THE
DEHYDRATION-RESPONSIVE
ELEMENT
.
22
1.5.3
THE
SAP
DOMAIN
.
23
1.5.4
MYB
AND
HELIX-LOOP-HELIX
DOMAINS
.
24
1.5.5
HOMEODOMAIN
PROTEINS
.
25
1.5.6
AN
RNA
AS
A
SIGNALLING
MOLECULE?
.
25
1.5.7
POSITIONING
OF
SIGNALS
IN
THE
NETWORK
.
26
1.6
DEHYDRATION-ACTIVATED
PROTEINS
.
26
1.6.1
THE
ACCUMULATION
OF
COMPATIBLE
SOLUTES
.
26
1.6.2
GENES
THAT
ENCODE
PROTEINS
WITH
PROTECTIVE
FUNCTIONS
.
27
1.6.3
REACTIVE
OXYGEN
INTERMEDIATES
.
28
1.7
CONCLUSIONS
AND
OUTLOOK
.
28
ACKNOWLEDGEMENTS
.
30
REFERENCES
.
30
VI
TABLE
OF
CONTENTS
ABBREVIATIONS
.
37
2
ABSCISIC
ACID
SIGNALLING
.
39
ALEXANDER
CHRISTMANN,
ERWIN
GRILL
AND
MICHAEL
MEINHARD
.
39
ABSTRACT
.
39
2.1
INTRODUCTION
.
39
2.2
SYSTEMS
USED
TO
STUDY
ABA
SIGNAL
TRANSDUCTION
.
40
2.3
ABA
BIOSYNTHESIS
.
41
2.3.1
REACTIONS
GENERATING
SUBSTRATES
FORNCED
.
43
2.3.2
NCED-CATALYZED
CLEAVAGE
REACTION
.
43
2.3.3
FORMATION
OF
ABA
FROM
XANTHOXIN
.
43
2.3.4
FEEDBACK
REGULATION
OF
ABA
BIOSYNTHESIS
.
44
2.4.
SIGNALLING
COMPONENTS
.
44
2.4.1
ABA
RECEPTOR
.
44
2.4.2
INTRACELLULAR
MESSENGERS
.
45
2.4.3
G-PROTEINS
.
49
2.4.4.
FAMESYLTRANSFERASE
ERAI
.
50
2.4.5
PROTEIN
PHOSPHATASES
.
50
2.4.6
PROTEIN
KINASES
.
53
2.4.7
TRANSCRIPTIONAL
REGULATORS
.
54
2.5
RNA
AND
PROTEIN
TURNOVER
DURING
ABA
RESPONSE
.
57
2.6
CROSS-TALK
.
58
ACKNOWLEDGEMENTS
.
58
REFERENCES
.
58
3
PLANT
RESPONSES
TO
HEAT
STRESS
.
73
PRITI
KRISHNA
.
73
ABSTRACT
.
73
3.1
INTRODUCTION
.
73
3.2
MAJOR
FAMILIES
OF
HEAT
SHOCK
PROTEINS
.
74
3.2.1
HSPLOO
.
74
3.2.2
HSP90
.
75
3.2.3
HSP70
.
76
3.2.4
SMALL
HSPS
.
77
3.2.5
THE
CHAPERONINS
.
78
3.3
TRANSCRIPTIONAL
REGULATION
OF
HSPS
.
79
3.3.1
STRUCTURE
OF
PLANT
HSFS
.
80
3.3.2
REGULATION
OF
PLANT
HSFS
.
80
3.4
CA
2+
AND
HEAT
SHOCK
RESPONSE
.
87
3.5
HORMONES
AND
HEAT
STRESS
RESPONSE
.
88
3.6
RELATIONSHIP
BETWEEN
HEAT
AND
OTHER
STRESSES
.
90
3.7
DEVELOPMENTAL
REGULATION
OF
SHSPS
BY
HSFS
.
91
3.8
FUTURE
DIRECTIONS
.
92
ACKNOWLEDGEMENTS
.
93
REFERENCES
.
93
TABLE
OF
CONTENTS
VII
4
SENSORS
OF
ABIOTIC
STRESS
IN
SYNECHOCYSTIS
.
103
KOJI
MIKAMI,
IWANE
SUZUKI
AND
NORIO
MURATA
.
103
ABSTRACT
.
103
4.1
INTRODUCTION
.
103
4.2
HIK33
AS
A
COLD
SENSOR
.
104
4.3
HIK33
AS
A
SENSOR
OF
HYPEROSMOTIC
STRESS
.
106
4.4
PERCEPTION
OF
MULTIPLE
STRESSES
BY
HIK33
.
106
4.5
HIKL6,
HIK33,
AND
HIK34
AS
SALT
SENSORS
.
108
4.6
HIK7
AND
RRE29
AS
THE
SENSOR
AND
SIGNAL
TRANSDUCER
OF
A
PHOSPHATE
DEFICIT
.
108
4.7
SENSORS
OF
METAL
IONS
.
109
4.7.1
HIK27
AND
RREL6
AS
THE
SENSOR
AND
SIGNAL
TRANSDUCER
OF
MANGANESE
DEFICIENCY
.
110
4.7.2
HIK30
AND
RRE33
AS
THE
SENSOR
AND
SIGNAL
TRANSDUCER
OF
AN
EXCESS
OF
NI
2+
IONS
.
112
4.8
COMPARATIVE
ANALYSIS
OF
HISTIDINE
KINASES
(HIKS)
IN
CYANOBACTERIA
.
112
4.9
FUTURE
PERSPECTIVES
.
113
ACKNOWLEDGEMENTS
.
114
REFERENCES
.
114
5
OXIDATIVE
STRESS
SIGNALLING
.
121
RADHIKA
DESIKAN,
JOHN
T.
HANCOCK
AND
STEVEN
J.
NEILL
.
121
ABSTRACT
.
121
5.1
INTRODUCTION
.
121
5.2
REACTIVE
OXYGEN
SPECIES
(ROS)
.
122
5.3
REDOX
BALANCE
AND
THE
GENERATION
AND
REMOVAL
OF
ROS
.
124
5.3.1
REDOX
BALANCE
.
124
5.3.2.
ROS
GENERATION
.
124
5.3.3
REMOVAL
OF
ROS
.
128
5.4
CELLULAR
RESPONSES
.
130
5.4.1
EFFECTS
ON
GENE
EXPRESSION
.
130
5.4.2
SIGNALLING
.
134
5.5
H
2
O
2
BIOLOGY
.
137
5.5.2
H
2
O
2
AND
STOMATA
.
139
5.5.3
H
2
O
2
AND
ROOTS
.
140
5.5.4
ANOXIA
AND
H
2
O
2
.
140
5.6
CONCLUSIONS
.
141
REFERENCES
.
141
ABBREVIATIONS
.
148
6
SIGNAL
TRANSDUCTION
IN
PLANT
COLD
ACCLIMATION
.
151
PEKKA
HEINO
AND
E.
TAPIO
PAIVA
.
151
ABSTRACT
.
151
6.1
INTRODUCTION
.
151
6.1.1
LOW
TEMPERATURE
STRESS
.
151
6.1.2
COLD
ACCLIMATION
.
152
VIII
TABLE
OF
CONTENTS
6.1.3
MOLECULAR
DISSECTION
OF
COLD
ACCLIMATION
.
155
6.2
SIGNAL
PERCEPTION
AND
LOW
TEMPERATURE
SENSING
.
156
6.2.1
PERCEPTION
OF
COLD
.
156
6.2.2
MEMBRANE
RIGIDIFICATION
.
157
6.3
ROLE
OF
CA
2+
IN
COLD
ACCLIMATION
.
158
6.4
PROTEIN
PHOSPHORYLATION
.
162
6.4.1
PROTEIN
KINASES
.
162
6.4.2
PROTEIN
PHOSPHATASES
.
164
6.5
REGULATION
OF
GENE
EXPRESSION
IN
RESPONSE
TO
LOW
TEMPERATURE
.
165
6.5.1
GENE
EXPRESSION
IN
RESPONSE
TO
COLD
.
165
6.5.2
CRT/DRE/LTRE
REGULATED
GENE
EXPRESSION
.
166
6.5.3
ABRE
MEDIATED
GENE
EXPRESSION
.
169
6.5.4
REGULATION
OF
TRANSCRIPTION
FACTORS
.
170
6.5.5
POST-TRANSCRIPTIONAL
REGULATION
OF
GENE
EXPRESSION
.
173
6.6
CONCLUSIONS
.
175
ACKNOWLEDGEMENTS
.
176
REFERENCES
.
176
7
HEAVY
METAL
SIGNALLING
IN
PLANTS:
LINKING
CELLULAR
AND
ORGANISMIC
RESPONSES
.
187
ANDREA
POLLE
AND
ANDRES
SCHIITZENDUBEL.
187
ABSTRACT
.
187
7.1
INTRODUCTION
.
187
7.2
CHEMICAL
PROPERTIES,
TOXICITY,
AND
STRESS
SIGNALLING
OF
HEAVY
METALS
WITH
CONTRASTING
FUNCTIONS
IN
PLANTS
.
189
7.2.1
COPPER
.
189
7.2.2
CADMIUM
.
190
7.3
UPTAKE
AND
SENSING
OF
HEAVY
METALS:
REGULATION
OF
METAL
HOMEOSTASIS
.
193
7.3.1
EXTRACELLULAR
CELLULAR
PROCESSES
AND
BIOTROPHIC
INTERACTIONS
.
193
7.3.2
CELLULAR
SIGNALLING
OF
COPPER
-
MEANS
TO
MAINTAIN
HOMEOSTASIS
.
195
7.3.3
CELLULAR
SIGNALLING
OF
CADMIUM
.
198
7.4
STRESS
SIGNALS
TRIGGERING
PLANT
GROWTH
AND
DEVELOPMENT
AT
THE
ORGANISMIC
LEVEL
.
199
7.4.1
LINKS
BETWEEN
CELLULAR
HEAVY
METAL
SIGNALLING
AND
INHIBITION
OF
ROOT
GROWTH
.
199
7.4.2
LONG
DISTANCE
SIGNALLING
AND
SHOOT
RESPONSES
TO
HEAVY
METALS
.
202
7.5
CONCLUSIONS
AND
IMPLICATION
FOR
FUTURE
RESEARCH
.
204
ACKNOWLEDGEMENTS
.
205
REFERENCES
.
205
8
MOLECULAR
GENETICS
OF
GENOTOXIC
STRESS
SIGNALLING
IN
PLANTS
.
217
ROMAN
ULM
.
217
ABSTRACT
.
217
8.1
INTRODUCTION
.
217
8.2
WHAT
IS
GENOTOXIC
STRESS?
.
218
TABLE
OF
CONTENTS
IX
8.3
GENOTOXIC
STRESS
SIGNALLING
.
221
8.3.1
FROM
INSIDE
THE
NUCLEUS
.
221
8.3.2
FROM
THE
CELL
PERIPHERY
.
225
8.3.3
TRANSCRIPTIONAL
RESPONSE
TO
GENOTOXIC
STRESS
IN
PLANTS
.
230
8.3.4
UV-B
SIGNALLING
.
231
8.4
RAPID
GENOMIC
CHANGE
IN
PLANTS?
.
232
8.5
CONCLUSIONS
.
233
ACKNOWLEDGEMENTS
.
233
REFERENCES
.
233
ABBREVIATIONS
.
239
9
PLANT
SALT
TOLERANCE
.
241
VISWANATHAN
CHINNUSAMY
AND
JIAN-KANG
ZHU
.
241
ABSTRACT
.
241
9.1
INTRODUCTION
.
241
9.2
SODIUM
ENTRY
INTO
PLANT
CELLS
.
242
9.3
INPUT
SIGNALS
OF
SALT
STRESS
.
243
9.3.1
CALCIUM
SIGNALLING
.
244
9.3.2
CALCIUM
SENSORS
.
246
9.3.3
HYBRID
TWO-COMPONENT
RECEPTOR
KINASES
.
248
9.3.4
MAPK
PATHWAY
.
250
9.4
ABA-MEDIATED
SALT
STRESS
SIGNALING
.
252
9.5
THE
SOS
SIGNALING
PATHWAY
OF
ION
HOMEOSTASIS
.
253
9.6
OSMOTIC
STRESS
MANAGEMENT
.
255
9.6.1
SODIUM
SEQUESTRATION
INTO
THE
VACUOLE
.
256
9.6.2
K
+
UPTAKE
.
256
9.6.3
OSMOPROTECTANT
BIOSYNTHESIS
.
257
9.7
STRESS
DAMAGE
CONTROL
AND
REPAIR
.
258
9.7.1
SALT
STRESS
INDUCED
PROTEINS
.
258
9.8
OXIDATIVE
STRESS
MANAGEMENT
.
259
9.9
GROWTH
REGULATION
.
260
9.10
CONCLUSIONS
AND
PERSPECTIVES
.
261
ACKNOWLEDGEMENTS
.
261
REFERENCES
.
261
10
TRANSCRIPTOME
ANALYSIS
IN
ABIOTIC
STRESS
CONDITIONS
IN
HIGHER
PLANTS
.
271
MOTOAKI
SEKI,
AYAKO
KAMEI,
MASAKAZU
SATOU,
TETSUYA
SAKURAI,
MIKI
FUJITA,
YOUKO
OONO,
KAZUKO YAMAGUCHI-SHINOZAKI
AND
KAZUO
SHINOZAKI.
271
ABSTRACT
.
271
10.1
INTRODUCTION
.
271
10.2
CIS
AND
TRANS-ACTING
FACTORS
INVOLVED
IN
REGULATION
OF
GENE
EXPRESSION
BY
DROUGHT,
HIGH-SALINITY
AND
COLD
STRESS
.
272
10.2.1
APPLICATION
OF
CDNA
MICROARRAY
ANALYSIS
TO
EXPRESSION
PROFILING
UNDER
ABIOTIC
STRESS
CONDITIONS
.
273
10.3
COLLECTION
AND
FUNCTIONAL
ANNOTATION
OF
RIKEN
ARABIDOPSIS
FULL-LENGTH
(RAFL)
CDNAS
.
273
X
TABLE
OF
CONTENTS
10.3.1
APPLICATION
OF
RIKEN
ARABIDOPSIS
FULL-LENGTH
(RAFL)
CDNA
MICROARRAY
TO
IDENTIFY
DROUGHT-,
COLD-,
OR
HIGH-SALINITY-STRESS-
REGULATED
GENES
.
274
10.4
STRESS-INDUCIBLE
GENES
AND
FUNCTIONS
OF
THEIR
GENE
PRODUCTS
IDENTIFIED
BY
RAFL
CDNA
MICROARRAY
.
277
10.4.1
COLD-INDUCIBLE
GENES
AND
STRESS-DOWNREGULATED
GENES
IDENTIFIED
USING
RAFL
CDNA
MICROARRAY
.
281
10.4.2
APPLICATION
OF
RAFL
CDNA
MICROARRAY
TO
STUDY
THE
EXPRESSION
PROFILES
UNDER
ABIOTIC
STRESS
CONDITIONS
.
283
10.5
APPLICATION
OF
ARABIDOPSIS
GENECHIP
TO
STUDY
THE
EXPRESSION
PROFILES
UNDER
ABIOTIC
STRESS
CONDITIONS
.
285
10.6
ABIOTIC
STRESS-INDUCIBLE
GENES
IDENTIFIED
USING
MICROARRAYS
IN
MONOCOTS
.
287
10.7
CONCLUSIONS
AND
PERSPECTIVES
.
287
ACKNOWLEDGEMENTS
.
289
REFERENCES
.
289
ABBREVIATIONS
.
294
INDEX
.
297 |
any_adam_object | 1 |
author_GND | (DE-588)121395707 |
building | Verbundindex |
bvnumber | BV017514580 |
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callnumber-raw | SB112.5 |
callnumber-search | SB112.5 |
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classification_rvk | WN 1950 |
classification_tum | UMW 233f UMW 175f BIO 498f |
ctrlnum | (OCoLC)174909922 (DE-599)BVBBV017514580 |
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 | 3632.1 |
dewey-tens | 630 - Agriculture and related technologies |
discipline | Biologie Agrar-/Forst-/Ernährungs-/Haushaltswissenschaft / Gartenbau Umwelt |
format | Book |
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genre | (DE-588)4143413-4 Aufsatzsammlung gnd-content |
genre_facet | Aufsatzsammlung |
id | DE-604.BV017514580 |
illustrated | Illustrated |
indexdate | 2024-08-22T00:16:04Z |
institution | BVB |
isbn | 3540200371 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-010547875 |
oclc_num | 174909922 |
open_access_boolean | |
owner | DE-M49 DE-BY-TUM DE-703 DE-20 DE-634 DE-11 DE-188 |
owner_facet | DE-M49 DE-BY-TUM DE-703 DE-20 DE-634 DE-11 DE-188 |
physical | XIII, 300 S. graph. Darst. |
publishDate | 2004 |
publishDateSearch | 2004 |
publishDateSort | 2004 |
publisher | Springer |
record_format | marc |
series | Topics in current genetics |
series2 | Topics in current genetics |
spelling | Plant responses to abiotic stress with 5 tables Heribert Hirt ; Kazuo Shinozaki (ed.) Berlin ; Heidelberg ; New York ; Hong Kong ; London ; Milan ; Pa Springer 2004 XIII, 300 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Topics in current genetics 4 Literaturangaben Crops Effect of stress on Crops Physiology Stress (DE-588)4058047-7 gnd rswk-swf Stressreaktion (DE-588)4138565-2 gnd rswk-swf Pflanzen (DE-588)4045539-7 gnd rswk-swf Umweltbelastung (DE-588)4061619-8 gnd rswk-swf Abiotischer Faktor (DE-588)4292953-2 gnd rswk-swf Samenpflanzen (DE-588)4076988-4 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content Samenpflanzen (DE-588)4076988-4 s Stressreaktion (DE-588)4138565-2 s Umweltbelastung (DE-588)4061619-8 s DE-604 Pflanzen (DE-588)4045539-7 s Stress (DE-588)4058047-7 s Abiotischer Faktor (DE-588)4292953-2 s Hirt, Heribert 1956- Sonstige (DE-588)121395707 oth Topics in current genetics 4 (DE-604)BV035420113 4 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010547875&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Plant responses to abiotic stress with 5 tables Topics in current genetics Crops Effect of stress on Crops Physiology Stress (DE-588)4058047-7 gnd Stressreaktion (DE-588)4138565-2 gnd Pflanzen (DE-588)4045539-7 gnd Umweltbelastung (DE-588)4061619-8 gnd Abiotischer Faktor (DE-588)4292953-2 gnd Samenpflanzen (DE-588)4076988-4 gnd |
subject_GND | (DE-588)4058047-7 (DE-588)4138565-2 (DE-588)4045539-7 (DE-588)4061619-8 (DE-588)4292953-2 (DE-588)4076988-4 (DE-588)4143413-4 |
title | Plant responses to abiotic stress with 5 tables |
title_auth | Plant responses to abiotic stress with 5 tables |
title_exact_search | Plant responses to abiotic stress with 5 tables |
title_full | Plant responses to abiotic stress with 5 tables Heribert Hirt ; Kazuo Shinozaki (ed.) |
title_fullStr | Plant responses to abiotic stress with 5 tables Heribert Hirt ; Kazuo Shinozaki (ed.) |
title_full_unstemmed | Plant responses to abiotic stress with 5 tables Heribert Hirt ; Kazuo Shinozaki (ed.) |
title_short | Plant responses to abiotic stress |
title_sort | plant responses to abiotic stress with 5 tables |
title_sub | with 5 tables |
topic | Crops Effect of stress on Crops Physiology Stress (DE-588)4058047-7 gnd Stressreaktion (DE-588)4138565-2 gnd Pflanzen (DE-588)4045539-7 gnd Umweltbelastung (DE-588)4061619-8 gnd Abiotischer Faktor (DE-588)4292953-2 gnd Samenpflanzen (DE-588)4076988-4 gnd |
topic_facet | Crops Effect of stress on Crops Physiology Stress Stressreaktion Pflanzen Umweltbelastung Abiotischer Faktor Samenpflanzen Aufsatzsammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010547875&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV035420113 |
work_keys_str_mv | AT hirtheribert plantresponsestoabioticstresswith5tables |