Nitric oxide in plant physiology:
Gespeichert in:
Weitere Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-Blackwell
2010
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Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XVII, 210 S. Ill., graph. Darst. |
ISBN: | 9783527325191 |
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CONTENTS PREFECE XI LIST OF CONTRIBUTORS XLLL 1 NITRIC OXIDE: CHEMISTRY,
BIOSYNTHESIS, AND PHYSIOLOGICAL ROLE 1 SHAMSUL HOYOT, SYED AIRMAN HASAN,
MASAKI MORI, QAZI FARIDUDDIN, AND AQIL AHMAD 1.1 INTRODUCTION 1 1.2
NITRIC OXIDE CHEMISTRY 2 1.3 BIOSYNTHESIS OF NITRIC OXIDE 3 1.4
PHYSIOLOGICAL ROLE OF NITRIC OXIDE 5 1.4.1 EFFECT OF NITRIC OXIDE ON
SEED DORMANCY 5 1.4.2 EFFECT OF NITRIC OXIDE ON GROWTH 6 1.4.3 EFFECT OF
NITRIC OXIDE ON SENESCENCE 6 1.4.4 EFFECT OF NITRIC OXIDE ON NITRATE
REDACTASE ACTIVITY 7 1.4.5 EFFECT OF NITRIC OXIDE ON RESPIRATION 7 1.4.6
EFFECT OF NITRIC OXIDE ON STOMATAL MOVEMENT 7 1.4.7 EFFECT OF NITRIC
OXIDE ON CHLOROPHYLL CONTENT 7 1.4.8 EFFECT OF NITRIC OXIDE ON
PHOTOSYNTHESIS 8 1.4.9 EFFECT OF NITRIC OXIDE ON ANTIOXIDANT SYSTEM 8
1.4.10 EFFECT OF NITRIC OXIDE ON PROGRAMMED CELL DEATH 9 1.5 NITRIC
OXIDE AND CROSS TALK WITH CLASSICAL PLANT HORMONES 10 1.5.1 AUXINS AND
NITRIC OXIDE 10 1.5.2 ABSCISIC ACID AND NITRIC OXIDE 11 1.5.3 CYTOKINMS,
GIBBERELLINS, AND NITRIC OXIDE 11 1.5.4 ETHYLENE AND NITRIC OXIDE 12
BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/994011008 DIGITALISIERT
DURCH VI CONTENTS 2.1.1 CHEMISTRY OF NITROGEN-ACTIVE SPECIES 17 1A.1
BIOLOGICAL EFFECTS OF NO IS 2.2 METHODS OF NO DETECTION 19 2.2.1
DETERMINATION OF NO BY SPECIFIC ELECTRODES 19 2.2.2 DETERMINATION OF NO
BY SPECTROPHOTOMETRIC AND FLUOROMETRIC METHODS 19 2.2.3 DETERMINATION OF
NO BY ELECTRON PARAMAGNETIC RESONANCE 20 2.2.3.1 SPECIFIC EXPERIMENTAL
ADVANCES 20 2.3 USE OF EPR METHODOLOGY FOR ASSAYING ENZYME ACTIVITIES 22
2.3.1 NOS-LIKE DEPENDENT NO GENERATION 24 2.3.2 NITRATE
REDUCTASE-DEPENDENT NO GENERATION 24 2.4 APPLICATION OF EPR METHODS TO
ASSESS NO GENERATION DURING PLANT DEVELOPMENT 26 2.5 CONCLUSIONS 27
REFERENCES 27 3 CALCIUM, NO, AND CCMP SIGNALING IN PLANT CELL POLARITY 3
1 ANA MARGANDO PRADO, JOSE A. FEIJO, AND DAVID MARSHALL PORTEIFELD 3.1
INTRODUCTION 31 3.2 CELL POLARITY AND PLANT GAMETOPHYTE DEVELOPMENT 33
3.3 CALCIUM SIGNALING IN POLLEN AND FERN SPORES 34 3. CONTENTS VII 4.4.2
ULTRAVIOLET RADIATION 58 4.4.3 OZONE 58 4.4.4 MECHANICAL WOUNDING 59
4.4.5 TOXIC METALS (CADMIUM AND ALUMINUM) 59 4.5 CONCLUDING REMARKS 60
REFERENCES 61 5 POLYAMINES AND CYTOKININ: IS NITRIC OXIDE BIOSYNTHESIS
THE KEY TO OVERLAPPING FUNCTIONS? 65 RINUKSHI WIMALASEKERA AND GUENTHER
F.E. SCHERER 5.1 INTRODUCTION 65 5.2 CYTOKININ- AND POLYAMINE-INDUCED NO
BIOSYNTHESIS 66 5.3 TISSUE DISTRIBUTION OF ZEATIN-INDUCED AND PA-INDUCED
NO FORMATION 67 5.4 NITRIC OXIDE, CYTOKININ, AND POLYAMINES IN PLANT
GROWTH AND DEVELOPMENT AND IN ABIOTIC AND BIOTIC STRESSES 68 5.4.1
EMBRYOGENESIS 68 5.4.2 FLOWERING 69 5.4.3 SENESCENCE 69 5.4.4 PROGRAMMED
CELL DEATH 69 5.4.5 ABIOTIC STRESSES 70 5.4.6 BIOTIC STRESSES 71
REFERENCES 73 6 ROLE OF NITRIC OXIDE IN PROGRAMMED CELL DEATH 77 MICHELA
ZOTTINI, ALEX COSTA, ROBERTO DE MICHELE, AND FIORELLA LO SCHIAVO 6.1
PROGRAMMED CELL DEATH IN PLANTS 77 6.1.1 PCD HALLMARKS AND REGULATION 78
VILI CONTENTS 7.3.2 HYPERSENSITIVE RESPONSE 93 7.3.3 SYSTEMIC RESPONSES
94 7.3.4 STOMATAL CLOSURE 94 7.4 SUBSTRATES FOR NO PRODUCTION DURING
PLANT-PATHOGEN INTERACTIONS 95 7.4.1 PRODUCTION OF NO FROM L-ARGININE 95
7.4.2 PRODUCTION OF NO FROM NITRITE 95 7.5 THE ROLE OF NITRATE REDUCTASE
IN NO PRODUCTION DURING PLANT-PATHOGEN INTERACTIONS 97 REFERENCES 98 8
EFFECTIVE PLANT PROTECTION WEAPONS AGAINST PATHOGENS REQUIRE "NO
BULLETS" 103 LUZIA V. MODOLO 8.1 INTRODUCTION 103 8.2 NITRIC OXIDE AND
REACTIVE OXYGEN SPECIES IN THE HYPERSENSITIVE RESPONSE 104 8.3 NITRIC
OXIDE AND PHYTOALEXIN PRODUCTION 107 8.4 NITRIC OXIDE AND THE SALICYLIC
ACID SIGNALING PATHWAY 108 8.5 NITRIC OXIDE AND THE JASMONIC ACID
SIGNALING PATHWAY 109 8.6 NITRIC OXIDE AND GENE REGULATION 109 8.7
NITRIC OXIDE AND PROTEIN REGULATION 110 8.8 CONCLUDING REMARKS 111
REFERENCE CONTENTS IX 10 INTERPLAY BETWEEN NITRIC OXIDE AND OTHER
SIGNALS INVOLVED IN PLANT RESISTANCE TO PATHOGENS 139 JOLANTA
FLORYSZAK-WIECZOREK AND MAGDALENA ARASIMOWICZ-JELONEK 10.1 INTRODUCTION
139 10.2 NO BURST 140 10.3 COOPERATION OF NO WITH H 2 O 2 IN TRIGGERING
PROGRAMMED CELL DEATH 142 10.4 CROSS TALK OF NO WITH SALICYLIC ACID,
JASMONIC ACID, AND ETHYLENE 145 10.5 THE ROLE OF NO IN THE MICRO- AND
MACROSCALE OF PLANT COMMUNICATION 146 10.5.1 NO CELL SIGNALING DOMAIN
147 10.5.2 NO IN SHORT-DISTANCE COMMUNICATION 147 10.5.3 NO FROM CROSS-
TO LONG-DISTANCE COMMUNICATION 148 10.6 DOES NO PARTICIPATE IN STRESSFUL
MEMORY OF THE PLANT? 149 10.7 NO AND PLANT RECOVERY FROM STRESS 151 10.8
NO IN THE OFFENSIVE STRATEGY OF THE PATHOGEN 154 10.9 CONCLUDING REMARKS
155 REFERENCES 155 11 NITRIC OXIDE SIGNALING BY PLANT-ASSOCIATED
BACTERIA 161 MICHAEL F. COHEN, LORENZO LAMATTINA, AND HIDEO YAMASAKI
11.1 INTRODUCTION 161 11.2 PRODUCTION OF NITRIC OXIDE BY BACTERIA 162
11.2.1 NITRIFICATION 162 CONTENTS 12 A MOLECULAR CLONING AND ANALYSES OF
AN NOS-LIKE GENE OF PEA 181 12.5 CORRELATION STUDY OF NOS-LIKE GENE
EXPRESSION AND NOS ACTIVITY IN COMPATIBLE AND INCOMPATIBLE PEA-BACTERIA
INTERACTIONS 184 REFERENCES 185 13 POSTTRANSLATIONAL MODIFICATIONS OF
PROTEINS BY NITRIC OXIDE: A NEW TOOL OF METABOLOME REGULATION 289
JASMEET KAUR ABAT AND RENU DESWAL 189 13.1 INTRODUCTION 189 13.2
S-NITROSYLATION 190 13.2.1 S-NITROSYLATION AND ETHYLENE BIOSYNTHESIS 192
13.2.2 S-NITROSYLATION AND PHOTOSYNTHESIS 292 13.2.3 S-NITROSYLATION AND
GLYCOLYSIS 294 13.2.4 S-NITROSYLATION AND BIOTIC/ABIOTIC STRESSES 195
13.3 TYROSINE NITRATION 297 13.4 BINDING TO METAL CENTERS 298 13.5
CONCLUSIONS AND PROSPECTS 198 REFERENCES 200 INDEX 203 |
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spellingShingle | Nitric oxide in plant physiology Pflanzenphysiologie (DE-588)4045580-4 gnd Stickstoffoxide (DE-588)4057516-0 gnd |
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title | Nitric oxide in plant physiology |
title_auth | Nitric oxide in plant physiology |
title_exact_search | Nitric oxide in plant physiology |
title_full | Nitric oxide in plant physiology ed. by Shamsul Hayat ... |
title_fullStr | Nitric oxide in plant physiology ed. by Shamsul Hayat ... |
title_full_unstemmed | Nitric oxide in plant physiology ed. by Shamsul Hayat ... |
title_short | Nitric oxide in plant physiology |
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topic | Pflanzenphysiologie (DE-588)4045580-4 gnd Stickstoffoxide (DE-588)4057516-0 gnd |
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