Plant cell vacuoles: an introduction
This book synthesizes information on the plant cell vacuole and includes methodologies, occurrence and diversity, structure and biochemistry of tonoplasts and molecular biology of biogenesis and diverse functions.
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Collingwood
CSIRO
2000
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Zusammenfassung: | This book synthesizes information on the plant cell vacuole and includes methodologies, occurrence and diversity, structure and biochemistry of tonoplasts and molecular biology of biogenesis and diverse functions. |
Beschreibung: | XVI, 288 S. Ill. |
ISBN: | 0643062548 |
Internformat
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264 | 1 | |a Collingwood |b CSIRO |c 2000 | |
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336 | |b txt |2 rdacontent | ||
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520 | 3 | |a This book synthesizes information on the plant cell vacuole and includes methodologies, occurrence and diversity, structure and biochemistry of tonoplasts and molecular biology of biogenesis and diverse functions. | |
650 | 7 | |a Cellules végétales |2 ram | |
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Datensatz im Suchindex
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adam_text | IMAGE 1
CONTENTS
PREFACE VII
1 EARLY STUDIES 1.1 DISCOVERY OF VACUOLES 1.2 VACUOLAR CONTENTS 1.3
PHYSIOLOGY AND BIOGENESIS 1.4 NATURE OF VACUOLES 1.5 SUMMARY 1.6
REFERENCES
2 3
5
5
II METHODOLOGIES 8
2.1 IN SITU METHODS 8
2.1.1 LIGHT MICROSCOPY 8
2.1.2 FLUORESCENCE MICROSCOPY 9
2.1.2.1 AUTOFLUORESCENCE 10
2.1.2.2 SECONDARY FLUORESCENCE 10
2.1.3 ELECTRON MICROSCOPY 12
2.1.4 CYTOCHEMICAL LOCALISATION 13
2.1.4.1 PROTOCOL FOR SELECTED ENZYMES 14
2.2 IN VITRO METHODS 17
2.2.1 ISOLATION OF INTACT VACUOLES 17
2.2.1.1 EARLY METHODS 17
2.2.1.2 COMPACT TISSUES 18
2.2.1.3 SUSPENSION CELLS 19
2.2.1.4 LEAF TISSUES 19
2.2.1.5 STOMATAL GUARD CELLS 20
2.2.1.6 YEAST CELLS 22
2.2.2 ISOLATION OF VACUOLAR SAP AND TONOPLAST 22
2.2.2.1 EXTRACTION OF SAP 22
2.2.2.2 TONOPLAST FROM INTACT VACUOLE 23
2.2.3 DIRECT EXTRACTION OF TONOPLAST FRACTION 23
2.2.3.1 DISCONTINUOUS GRADIENT 24
2.2.3.2 CONTINUOUS GRADIENT 24
2.2.4 TONOPLAST MARKERS 25
2.3 PHYSIOLOGICAL METHODS 25
2.3.1 DETERMINATION OF PH 25
2.3.1.1 WEAK ACID/BASE DISTRIBUTION 25
2.3.1.2 FLUORESCENCE PROBES 26
2.3.1.3 MICROELECTRODES 26
2.3.1.4 PHOSPHORUS NMR SPECTROSCOPY 27
IMAGE 2
XII CONTENTS
27 28 29
29 29 30 30
31
III OCCURRENCE AND DISTRIBUTION OF VACUOLES 38
38 39
42
45
46
47
47 47 48 48 48 48
50 54
56
59
60
IV ULTRASTRUCTURE AND CHEMICAL COMPOSITION OF TONOPLAST 64 4.1
ULTRASTRUCTURE 64
4.2 CHEMICAL ANALYSIS OF TONOPLAST 67
4.2.1 LIPIDS 67
4.2.2 PROTEINS 67
4.2.3 TONOPLAST ENZYMES 70
4.2.3.1 PROTON ATPASE 70
4.2.3.2 PROTON-PPASE: 72
4.2.3.3 CA 2+-ATPASE 72
4.3 SUMMARY 73
4.3.1 ULTRASTRUCTURE 73
4.3.2 CHEMICAL COMPOSITION 74
4.4 REFERENCES 74
V VACUOLAR CONTENTS 79
5.1 SOLIDS AND PARTICULATE INCLUSIONS 79
5.1.1 CRYSTALS 79
5.1.2 ALEURONE GRAINS 80
2.4
2.5
2.3.2 DETERMINATION OF OSMOTIC VALUES 2.3.3 SPECIAL METHODS 2.3.3.1
PATCH-CLAMP TECHNIQUE
SUMMARY 2.4.1 IN SITU METHODS 2.4.2 IN VITRO METHODS 2.4.3 PHYSIOLOGICAL
METHODS
REFERENCES
OCCURRENCE AND DISTRIBUTION OF VACUOLES 3.1 3.2
3.3
3.4
3.5
3.6
3.7
3.8
3.9
3.10
PROCARYOTES
ALGAE
FUNGI
BRYOPHYTA
PTERIDOPHYTA
GYMNOSPERMS
ANGIOSPERMS 3.7.1 MERISTEM 3.7.2 EPIDERMIS 3.7.3 CORTEX 3.7.4 ENDODERMIS
3.7.5 VASCULAR TISSUES 3.7.6 REPRODUCTIVE TISSUES 3.7.7 SPECIALISED
CELLS
SHAPE, NUMBER AND VOLUME
SUMMARY
REFERENCES
IMAGE 3
CONTENTS XIII
5.1.3 LIPID BODIES 5.1.4 ISOPRENOIDS, POLYTERPENES, RUBBER, RESIN, AND
ESSENTIAL OIL 5.1.5 VOLUTIN AND POLYPHOSPHATE
5.2 COLLOIDAL OR DISSOLVED SUBSTANCES 5.2.1 PHENOLICS 5.2.2 ANTHOCYANIN
AND ANTHOXANTHIN PIGMENTS 5.2.3 ALKALOIDS AND STEROIDS 5.2.4 SUGARS
5.2.5 ORGANIC ACIDS 5.2.6 AMINO ACIDS 5.2.7 HORMONES 5.2.8 INORGANIC
IONS 5.2.9 MISCELLANEOUS SUBSTANCES
5.3 ENZYMES
5.4 SUMMARY 5.4.1 SOLIDS AND PARTICULATE INCLUSIONS 5.4.2 COLLOIDAL AND
DISSOLVED SUBSTANCES 5.4.3 ENZYMES
5.5 REFERENCES
83 84 84
85 85 86 88
88 89 89 90 90
93
93
103 103 103 104
104
VI BIOGENESIS AND DEVELOPMENT OF VACUOLES
6.1 EARLY VIEWS 6.2 DE NOVO ORIGIN 6.2.1 DE NOVO LIPOSOME 6.2.2 DE NOVO
GOLGI BODIES
6.2.3 GROWTH OF TONOPLAST 6.2.3.1 REGENERATION OF TONOPLAST 6.2.3.2
SYNTHESIS AND DIRECT TRANSFER OF LIPIDS TO TONOPLAST 6.2.3.3 SYNTHESIS
AND DIRECT TRANSFER OF PROTEINS TO TONOPLAST
6.3 ORIGIN THROUGH LIPID UTILISATION
6.4 ORIGIN OF ALEURONE VACUOLES
6.5 ORIGIN THROUGH LYTIC PROCESSES
6.6 ORIGIN FROM MEMBRANOUS COMPONENTS 6.6.1 ORIGIN FROM ENDOPLASMIC
RETICULUM 6.6.2 ORIGIN FROM PLASMA MEMBRANE 6.6.3 ORIGIN FROM GOLGI
BODIES
6.6.3.1 GOLGI-VESICLE-VACUOLE 6.6.3.2 ER-GOLGI-VACUOLE
6.7 INHERITANCE OF VACUOLES IN YEAST
6.8 BIOCHEMICAL ASPECTS OF BIOGENESIS 6.8.1 VESICULAR TRANSPORT 6.8.2
SNARE HYPOTHESIS ON VESICULAR TRANSPORT 6.8.3 VESICULAR TRANSPORT IN
YEAST: SNARE MECHANISM
6.8.4 SNARE MECHANISM IN PLANTS 6.8.5 MECHANICS OF FUSION 6.8.6
PREVACUOLES AS INTERMEDIATE STRUCTURES 6.8.7 MEMBRANE TRAFFICKING
6.8.7.1 INDEPENDENT SORTING OF MEMBRANE AND LUMEN PROTEIN
115
115 115 115 116
116 117 117 119
119
121
122
124 124 125 125 126 126
128
128 128 131 132 133 135 137 139
139
IMAGE 4
XIV CONTENTS
6.8.7.2 MEMBRANE PROTEIN SORTING 139
6.8.7.3 LUMEN PROTEIN SORTING 139
6.8.8 TRANSPORT PATHWAYS 141
6.8.8.1 VPS-DEPENDENT OR CPY PATHWAY 142
6.8.8.2 ALTERNATIVE/ALP PATHWAY 142
6.8.8.3 CYTOPLASM-TO-VACUOLE TARGETING (CVT) PATHWAY 142
6.9 SORTING SIGNALS FOR PROTEINS 143
6.9.1 POSITIVE SIGNALLING FOR PLANT PROTEINS 143
6.9.2 DIRECT PATHWAY 147
6.9.3 DEFAULT MECHANISM 147
6.9.3.1 ABSENCE OF SORTING SIGNAL 147
6.9.3.2 GARBAGE PATHWAY 148
6.9.3.3 MOLECULAR CHAPERONS 148
6.9.4 AUTOPHAGY 149
6.9.4.1 CONCLUDING REMARKS 149
6.10 SUMMARY 149
6.11 REFERENCES 151
VII FUNCTIONS OF VACUOLES 163
7.1 TRANSPORT OF MOLECULES ACROSS MEMBRANES 163
7.2 UPTAKE OF WATER 164
7.2.1 AQUAPORIN 164
7.2.1.1 HISTOLOGICAL CONSIDERATIONS 165
7.3 UPTAKE OF IONS 167
7.3.1 GENERAL CONSIDERATIONS 167
7.3.2 ACCUMULATION OF IONS 168
7.3.2.1 PRIMARY ACTIVE TRANSPORT 169
7.3.2.2 SECONDARY ACTIVE TRANSPORT 170
7.3.2.3 UPTAKE OF ANIONS 172
7.3.2.4 ROLE OF ION CHANNELS 173
7.4 PH REGULATION BY VACUOLES 173
7.4.1 ROLE OF OXIDO-REDUCTASES 176
7.5 SALT TOLERANCE 176
7.6 OSMOREGULATION 177
7.6.1 TURGOR FOR GROWTH 178
7.6.2 TONOPLAST PERMEABILITY 178
7.6.3 THE MECHANISM OF OSMOREGULATION 178
7.6.3.1 OSMOREGULATION BY SUGARS 178
7.6.3.2 TURGOR MOVEMENTS 180
7.7 ROLE OF VACUOLE IN CALCIUM HOMEOSTASIS 183
7.7.1 CA 2+ TRANSPORTERS AND CHANNELS 184
7.7A A CA 2+AS SECOND MESSENGER 185
7.7.1.2 CA 2+- BINDING PROTEINS 185
7.8 METABOLIC FUNCTIONS 186
7.8.1 CRASSULACEAN ACID METABOLISM 186
7.8.2 HOMEOSTASIS OF AMINO ACID LEVELS 187
7.8.3 SUCROSE ACCUMULATION AND TRANSPORT 188
IMAGE 5
CONTENTS XV
7.8.4 BIOSYNTHESIS INSIDE VACUOLES 7.8.4.1 PROCESSING OF SUGARS 7.8.4.2
BIOSYNTHESIS OF GLYCOSIDES 7.8.4.3 ANTHOCYANINS 7.8.4.4 ETHYLENE
METABOLISM
7.8.4.5 PROCESSING OF STORAGE PROTEINS 7.8.4.6 BIOSYNTHESIS OF ALKALOIDS
7.9 LYTIC FUNCTIONS 7.9.1 HYDROLYTIC ACTIVITY 7.9.2 PROTEOLYTIC ACTIVITY
7.9.2.1 DEGRADATION OF EXTRANEOUS PROTEINS
7.9.2.2 PROTEOLYSIS OF MUTANT PROTEINS
7.9.3 NUCLEOLYTIC ACTIVITY 7.9.4 AUTOPHAGY 7.9.4.1 ORGANELLE BREAKDOWN
INSIDE VACUOLES 7.9.4.2 MEMBRANOUS ENCLOSURE OF CYTOPLASM
7.9.4.3 INVAGINATION OF TONOPLAST 7.9.5 HETEROPHAGY 7.9.5.1 TYPES OF
HETEROPHAGY
7.9.5.2 PLASMALEMMASOMES 7.9.5.3 ACCUMULATION OF BREAKDOWN PRODUCTS
7.9.5.4 HOST-PATHOGEN INTERACTIONS 7.9.6 LYTIC ACTIVITY IN
DIFFERENTIATION
7.9.6.1 AUTOPHAGY IN VASCULAR DIFFERENTIATION 7.9.6.2 AUTOPHAGY IN
LATICIFER DEVELOPMENT 7.9.6.3 AUTOPHAGY IN COTYLEDONARY DEVELOPMENT
7.9.6.4 AUTOPHAGY IN GAMETOGENESIS 7.9.6.5 AUTOPHAGY IN SENESCENCE
7.10 DETOXIFICATION OF SO 2
7.11 DETOXIFICATION OF XENOBIOTICS
7.12 PHYTOREMEDIATION OF HEAVY METALS 7.13 SCAVENGING OF ACTIVE OXYGEN
SPECIES
7.14 SUMMARY 7.15 REFERENCES
191 191 191 191
192 193 194
196 196 196 197 197
197 198 198 198 198 201 201 201 202 202 208 208 211 211 211 212
213
214
216
219
220
225
VIII RETROSPECT AND PROSPECT
8.1 DEFINITIONS 8.2 SIGNIFICANCE OF VACUOLES
8.3 UNIQUENESS OF VACUOLES 8.4 HOMOLOGY 8.4.1 HOMOLOGY OF TONOPLAST WITH
PLASMA MEMBRANE 8.4.1.1 EVOLUTION OF THE VACUOLE
8.4.2 HOMOLOGY WITH OTHER MEMBRANES 8.4.3 HOMOLOGY WITH GOLGI APPARATUS
8.4.4 HOMOLOGY WITH SINGLE-MEMBRANED ORGANELLES 8.4.5 HOMOLOGY WITH
LYSOSOMES
8.4.5.1 VACUOLES ARE NOT LYSOSOMES
249
249 249
251
252 252 255 255
256 256 256 259
IMAGE 6
XVI CONTENTS
8.5 PROSPECT OF GENETIC ENGINEERING OF TONOPLAST 259
8.5.1 ENGINEERING AGAINST WATER STRESS 260
8.5.2 ENGINEERING OF PROTON PUMPS 260
8.5.3 ENGINEERING FOR STORAGE AND PROCESSING 262
8.5.4 ENGINEERING FOR PHYTOREMEDIATION AND DETOXIFICATION 263
8.5.5 ENGINEERING FOR PROTEIN TARGETING 264
8.5.6 ENGINEERING FOR DISEASE RESISTANCE 264
8.5.7 OTHER POSSIBILITES 264
8.6 SUMMARY 265
8.7 REFERENCES 267
INDEX 273
|
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institution | BVB |
isbn | 0643062548 |
language | English |
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oclc_num | 44022312 |
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owner_facet | DE-355 DE-BY-UBR DE-703 DE-20 |
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spelling | De, Deepesh N. Verfasser aut Plant cell vacuoles an introduction Deepesh N. De Collingwood CSIRO 2000 XVI, 288 S. Ill. txt rdacontent n rdamedia nc rdacarrier This book synthesizes information on the plant cell vacuole and includes methodologies, occurrence and diversity, structure and biochemistry of tonoplasts and molecular biology of biogenesis and diverse functions. Cellules végétales ram Vacuoles ram Plant vacuoles Pflanzenzelle (DE-588)4115551-8 gnd rswk-swf Vakuole (DE-588)4187316-6 gnd rswk-swf Pflanzenzelle (DE-588)4115551-8 s Vakuole (DE-588)4187316-6 s DE-604 SWB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009027198&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | De, Deepesh N. Plant cell vacuoles an introduction Cellules végétales ram Vacuoles ram Plant vacuoles Pflanzenzelle (DE-588)4115551-8 gnd Vakuole (DE-588)4187316-6 gnd |
subject_GND | (DE-588)4115551-8 (DE-588)4187316-6 |
title | Plant cell vacuoles an introduction |
title_auth | Plant cell vacuoles an introduction |
title_exact_search | Plant cell vacuoles an introduction |
title_full | Plant cell vacuoles an introduction Deepesh N. De |
title_fullStr | Plant cell vacuoles an introduction Deepesh N. De |
title_full_unstemmed | Plant cell vacuoles an introduction Deepesh N. De |
title_short | Plant cell vacuoles |
title_sort | plant cell vacuoles an introduction |
title_sub | an introduction |
topic | Cellules végétales ram Vacuoles ram Plant vacuoles Pflanzenzelle (DE-588)4115551-8 gnd Vakuole (DE-588)4187316-6 gnd |
topic_facet | Cellules végétales Vacuoles Plant vacuoles Pflanzenzelle Vakuole |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009027198&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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