Physicochemical and environmental plant physiology:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Amsterdam [u.a.]
Elsevier, Acad. Press
2005
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Ausgabe: | 3. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Includes bibliographical references |
Beschreibung: | XX, 567 S. Ill., graph. Darst. |
ISBN: | 0125200269 |
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Datensatz im Suchindex
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adam_text | PHYSICOCHEMICAL AND ENVIRONMENTAL PLANT PHYSIOLOGY THIRD EDITION PARK S.
NOBEL DEPARTMENT OF ECOLOGY AND EVOLUTIONARY BIOLOGY UNIVERSITY OF
CALIFORNIA, LOS ANGELES LOS ANGELES, CALIFORNIA AMSTERDAM * BOSTON *
HEIDELBERG * LONDON ELSEVIER NEW YORK * OXFORD * PARIS * SAN DIEGO
ACADEMIC SAN FRANCISCO * SINGAPORE * SYDNEY * TOKYO ACADEMIC PRESS IS AN
IMPRINT OF ELSEVIER CONTENTS PREFACE XIII SYMBOLS AND ABBREVIATIONS XV
1. CELLS AND DIFFUSION 3 1.1. CELL STRUCTURE 1.1A. GENERALIZED PLANT
CELL LIB. LEAF ANATOMY 1.1C. VASCULAR TISSUE 1.1D. ROOT ANATOMY 1.2.
DIFFUSION 1.2A. FICK S FIRST LAW 1.2B. CONTINUITY EQUATION AND FICK S
SECOND LAW 1.2C. TIME-DISTANCE RELATION FOR DIFFUSION 1.3. MEMBRANE
STRUCTURE 1.3 A. MEMBRANE MODELS 1.3B. ORGANELLE MEMBRANES 1.4. MEMBRANE
PERMEABILITY 1.4A. CONCENTRATION DIFFERENCE ACROSS A MEMBRANE 1.4B.
PERMEABILITY COEFFICIENT 1.4C. DIFFUSION AND CELLULAR CONCENTRATION 1.5.
CELL WALLS 1.5 A. CHEMISTRY AND MORPHOLOGY 1.5B. DIFFUSION ACROSS CELL
WALLS 1.5C. STRESS-STRAIN RELATIONS OF CELL WALLS 1.6. PROBLEMS 1.7.
REFERENCES 2. WATER 3 3 5 7 9 11 12 13 16 20 21 22 25 26 28 29 31 32 33
36 40 42 45 2.1. PHYSICAL PROPERTIES 46 2.1 A. HYDROGEN BONDING*THERMAL
RELATIONS 47 2.1B. SURFACE TENSION 49 2.1 C. CAPILLARY RISE 50 . 2.1D.
CAPILLARY RISE IN THE XYLEM 52 VI CONTENTS 2.1E. TENSILE STRENGTH,
VISCOSITY 53 2.1F. ELECTRICAL PROPERTIES 54 2.2. CHEMICAL POTENTIAL 56
2.2A. FREE ENERGY AND CHEMICAL POTENTIAL 56 2.2B. ANALYSIS OF CHEMICAL
POTENTIAL 59 2.2C. STANDARD STATE 62 2.2D. HYDROSTATIC PRESSURE 63 2.2E.
WATER ACTIVITY AND OSMOTIC PRESSURE 64 2.2F. VAN THOFF RELATION 65 2.2G.
MATRIC PRESSURE 68 2.2H. WATER POTENTIAL 69 2.3. CENTRAL VACUOLE AND
CHLOROPLASTS 70 2.3A. WATER RELATIONS OF THE CENTRAL VACUOLE 71 2.3B.
BOYLE-VAN T HOFF RELATION 73 2.3C. OSMOTIC RESPONSES OF CHLOROPLASTS 74
2.4. WATER POTENTIAL AND PLANT CELLS 77 2.4A. INCIPIENT PLASMOLYSIS 77
2.4B. HOFIER DIAGRAM AND PRESSURE-VOLUME CURVE 79 2.4C. CHEMICAL
POTENTIAL AND WATER POTENTIAL OF WATER VAPOR 82 2.4D. PLANT-AIR
INTERFACE 86 2.4E. PRESSURE IN THE CELL WALL WATER 87 2.4F. WATER FLUX
89 2.4G. CELL GROWTH 91 2.4H. KINETICS OF VOLUME CHANGES 93 2.5.
PROBLEMS 94 2.6. REFERENCES 96 3. SOLUTES 99 3.1. CHEMICAL POTENTIAL OF
IONS 100 3.1A. ELECTRICAL POTENTIAL 101 3.IB. ELECTRONEUTRALITY AND
MEMBRANE CAPACITANCE 102 3.1C. ACTIVITY COEFFICIENTS OF IONS 104 3.1D.
NERNST POTENTIAL 106 3.1E. EXAMPLE OF JV K 108 3.2. FLUXES AND
DIFFUSION POTENTIALS 109 3.2A. FLUX AND MOBILITY 110 3.2B. DIFFUSION
POTENTIAL IN A SOLUTION 113 3.2C. MEMBRANE FLUXES 116 3.2D. MEMBRANE
DIFFUSION POTENTIAL * GOLDMAN EQUATION 119 3.2E. APPLICATION OF GOLDMAN
EQUATION 123 3.2F. DONNAN POTENTIAL 124 3.3. CHARACTERISTICS OF CROSSING
MEMBRANES 126 3.3A. ELECTROGENICITY 127 3.3B. BOLTZMANN ENERGY
DISTRIBUTION AND Q W , A TEMPERATURE COEFFICIENT 128 3.3C. ACTIVATION
ENERGY AND ARRHENIUS PLOTS 131 3.3D. USSING-TEORELL EQUATION 134 S
CONTENTS VLL 3.3E. EXAMPLE OF ACTIVE TRANSPORT 136 3.3F. ENERGY FOR
ACTIVE TRANSPORT 139 3.3G. SPECULATION ON ACTIVE TRANSPORT 140 3.4.
MECHANISMS FOR CROSSING MEMBRANES 141 3.4A. CARRIERS, PORTERS, CHANNELS,
AND PUMPS 141 3.4B. MICHAELIS-MENTEN FORMALISM 145 3.4C. FACILITATED
DIFFUSION 147 3.5. PRINCIPLES OF IRREVERSIBLE THERMODYNAMICS 149 3.5A.
FLUXES, FORCES, AND ONSAGER COEFFICIENTS 150 3.5B. WATER AND,SOLUTE FLOW
151 3.5C. FLUX DENSITIES, L P . AND A 153 3.5D. VALUES OF REFLECTION
COEFFICIENTS . 156 3.6. SOLUTE MOVEMENT ACROSS MEMBRANES 158 3.6A.
INFLUENCE,OF REFLECTION COEFFICIENTS ON INCIPIENT PLASMOLYSIS 160 3.6B.
EXTENSION OF THE BOYLE-VAN T HOFF RELATION 162 3.6C. REFLECTION
COEFFICIENTS OF CHLOROPLASTS 164 3.6D. SOLUTE FLUX DENSITY 164 3.7.
PROBLEMS 165 3.8. REFERENCES 168 4. LIGHT 171 4.1. WAVELENGTH AND ENERGY
173 4.1A. LIGHTWAVES 173 4.IB. ENERGY OF LIGHT 175 4.1C. ILLUMINATION,
PHOTON FLUX DENSITY, AND IRRADIANCE 177 4.1D. SUNLIGHT 180 4.1E.
PLANCK S AND WIEN S FORMULAE 182 4.2. ABSORPTION OF LIGHT BY MOLECULES
183 4.2A. ROLE OF ELECTRONS IN ABSORPTION EVENT 184 4.2B. ELECTRON SPIN
AND STATE MULTIPLICITY 185 4.2C. MOLECULAR ORBITALS 187 4.2D.
PHOTBISOMERIZATION 189 4.2E. LIGHT ABSORPTION BY CHLOROPHYLL 190 4.3.
DEEXCITATION 192 4.3A. FLUORESCENCE, RADIATIONLESS TRANSITION, AND
PHOSPHORESCENCE 193 4.3B. COMPETING PATHWAYS FOR DEEXCITATION 194 4.3C.
LIFETIMES 197 4.3D. QUANTUM YIELDS 198 4.4. ABSORPTION SPECTRA, AND
ACTION SPECTRA 199 4.4A. VIBRATIONAL SUBLEVELS 200 4.4B. THE
FRANCK-CONDON PRINCIPLE 202 4.4C. ABSORPTION BANDS AND ABSORPTION
COEFFICIENTS 204 4.4D. APPLICATION OF BEER S LAW 207 4.4E. CONJUGATION
208 4.4F. ACTION SPECTRA 209 4.4G. ABSORPTION AND ACTION SPECTRA OF
PHYTOCHROME 210 VLLL CONTENTS 4.5. PROBLEMS 214 4.6. REFERENCES 216 5.
PHOTOCHEMISTRY OF PHOTOSYNTHESIS 219 5.1. CHLOROPHYLL*CHEMISTRY AND
SPECTRA 222 5.1A. TYPES AND STRUCTURES 222 5.IB. ABSORPTION AND
FLUORESCENCE EMISSION SPECTRA 223 5.IC. ABSORPTION IN VIVO * POLARIZED
LIGHT 226 5.2. OTHER PHOTOSYNTHETIC PIGMENTS 228 5.2A. CAROTENOIDS 228
5.2B. PHYCOBILINS 232 5.2C. GENERAL COMMENTS 234 5.3. EXCITATION
TRANSFERS AMONG PHOTOSYNTHETIC PIGMENTS 235 5.3A. PIGMENTS AND THE
PHOTOCHEMICAL REACTION 235 5.3B. RESONANCE TRANSFER OF EXCITATION 237
5.3C. SPECIFIC TRANSFERS OF EXCITATION 239 5.3D. EXCITATION TRAPPING 240
5.4. GROUPINGS OF PHOTOSYNTHETIC PIGMENTS 242 5.4A. PHOTON PROCESSING
243 5.4B. EXCITATION PROCESSING 243 5.4C. PHOTOSYNTHETIC ACTION SPECTRA
AND ENHANCEMENT EFFECTS 245 5.4D. TWO PHOTOSYSTEMS PLUS LIGHT-HARVESTING
ANTENNAE 246 5.5. ELECTRON FLOW 249 5.5A. ELECTRON FLOW MODEL 249 5.5B.
COMPONENTS OF THE ELECTRON TRANSFER PATHWAY 251 5.5C. TYPES OF ELECTRON
FLOW 257 5.5D. ASSESSING PHOTOCHEMISTRY USING FLUORESCENCE 258 5.5E.
PHOTOPHOSPHORYLATION 260 5.5F. VECTORIAL ASPECTS OF ELECTRON FLOW 260
5.6. PROBLEMS 262 5.7. REFERENCES 263 6. BIOENERGETICS 267 6.1. GIBBS
FREE ENERGY .. 268 6.1A. CHEMICAL REACTIONS AND EQUILIBRIUM CONSTANTS
269 6.1B. INTERCONVERSION OF CHEMICAL AND ELECTRICAL ENERGY 272 6.1C.
REDOX POTENTIALS 274 6.2. BIOLOGICAL ENERGY CURRENCIES 276 6.2A.
ATP*STRUCTURE AND REACTIONS 277 6.2B. GIBBS FREE ENERGY CHANGE FOR ATP
FORMATION 281 6.2C. NADP+-NADPH REDOX COUPLE 283 6.3. CHLOROPLAST
BIOENERGETICS 284 6.3A. REDOX COUPLES 285 6.3B. H+ CHEMICAL POTENTIAL
DIFFERENCES CAUSED BY ELECTRON FLOW 288 6.3C. EVIDENCE FOR CHEMIOSMOTIC
HYPOTHESIS 289 6.3D. COUPLING OF FLOWS 290 CONTENTS IX 6.4.
MITOCHONDRIAL BIOENERGETICS 292 6.4A. ELECTRON FLOW COMPONENTS * REDOX
POTENTIALS 293 6.4B. OXIDATIVE PHOSPHORYLATION 295 6.5. ENERGY FLOW IN
THE BIOSPHERE 298 6.5A. INCIDENT LIGHT * STEFAN-BOLTZMANN LAW 299 6.5B.
ABSORBED LIGHT AND PHOTOSYNTHETIC EFFICIENCY 301 6.5C. FOOD CHAINS AND
MATERIAL CYCLES . 302 6.6. PROBLEMS 303 6.7. REFERENCES 305 7.
TEMPERATURE AND ENERGY BUDGETS 307 7.1. ENERGY BUDGET*RADIATION 308
7.1A. SOLAR IRRADIATION 310 7.IB. ABSORBED INFRARED IRRADIATION 314
7.1C. EMITTED INFRARED RADIATION 315 7.ID. VALUES FOR A, IR, AND EIR
316 7.1E. NET RADIATION 318 7.1F. EXAMPLES FOR RADIATION TERMS 318 .
7.2. WIND * HEAT CONDUCTION AND CONVECTION 321 7.2A. WIND 322 7.2B. AIR
BOUNDARY LAYERS 324 7.2C. BOUNDARY LAYERS FOR BLUFF BODIES 326 7.2D.
HEAT CONDUCTION/CONVECTION EQUATIONS 327 7.2E. DIMENSIONLESS NUMBERS 329
7.2F. EXAMPLES OF HEAT CONDUCTION/CONVECTION 332 7.3. LATENT
HEAT*TRANSPIRATION 333 7.3A. HEAT FLUX DENSITY ACCOMPANYING
TRANSPIRATION 333 7.3B. HEAT FLUX DENSITY FOR DEW OR FROST FORMATION 334
7-3C. EXAMPLES OF FROST AND DEW FORMATION 335 7.4. FURTHER EXAMPLES OF
ENERGY BUDGETS 337 7.4A. LEAF SHAPE AND ORIENTATION 337 7.4B. SHADED
LEAVES WITHIN PLANT COMMUNITIES 339 7.4C. HEAT STORAGE 340 7.4D. TIME
CONSTANTS 342 7.5. SOIL 343 7.5A. THERMAL PROPERTIES 343 7.5B. SOIL
ENERGY BALANCE 344 7.5C VARIATIONS IN SOIL TEMPERATURE 345 7.6. PROBLEMS
347 7.7. REFERENCES 349 8. LEAVES AND FLUXES 351 8.1. RESISTANCES AND
CONDUCTANCES*TRANSPIRATION 352 8.1A. BOUNDARY LAYER ADJACENT TO LEAF 354
8.1B. STOMATA , 357 8.1C. STOMATAL CONDUCTANCE AND RESISTANCE 359
CONTENTS 8.1D. CUTICLE 361 8.1E. INTERCELLULAR AIR SPACES 362 8.1F.
FICK S FIRST LAW AND CONDUCTANCES 363 8.2. WATER VAPOR FLUXES
ACCOMPANYING TRANSPIRATION 366 8.2A. CONDUCTANCE AND RESISTANCE NETWORK
366 8.2B. VALUES OF CONDUCTANCES 369 8.2C. EFFECTIVE LENGTHS AND
RESISTANCE 370 8.2D. WATER VAPOR CCFHCENTRATIONS AND MOLE FRACTIONS FOR
LEAVES 371 8.2E. EXAMPLES OF WATER VAPOR LEVELS IN A LEAF 373 8.2F.
WATER VAPOR FLUXES 375 8.2G. CONTROL OF TRANSPIRATION 376 8.3. CO2
CONDUCTANCES, AND RESISTANCES 378 8.3A. RESISTANCE AND CONDUCTANCE
NETWORK 378 8.3B. MESOPHYLL AREA 380 8.3C. RESISTANCE FORMULATION FOR
CELL COMPONENTS 382 8.3D. PARTITION COEFFICIENT FOR CO 2 383 8.3E. CELL
WALL RESISTANCE 385 8.3F. PLASMA MEMBRANE RESISTANCE 386 8.3G. CYTOSOL
RESISTANCE 387 8.3H. MESOPHYLL RESISTANCE 387 8.31. CHLOROPLAST
RESISTANCE 388 8.4. CO2 FLUXES ACCOMPANYING PHOTOSYNTHESIS 389 8.4A.
PHOTOSYNTHESIS - 389 8.4B. RESPIRATION AND PHOTPRESPIRATION 391 8.4C.
COMPREHENSIVE CO2 RESISTANCE NETWORK 395 8.4D. COMPENSATION POINTS 396
8.4E. FLUXES OF CO 2 399 8.4F. CO 2 CONDUCTANCES 401 8.4G.
PHOTOSYNTHETIC RATES 402 8.5. WATER-USE EFFICIENCY 404 8.5A. VALUES OF
WUE 404 8.5B. ELEVATIONAL EFFECTS ON WUE 407 8.5C. STOMATAL CONTROL OF
WUE 407 8.5D. C 3 VERSUS C4 PLANTS 410 8.6. PROBLEMS 413 8.7. REFERENCES
415 9. PLANTS AND FLUXES 419 9.1. GAS FLUXES ABOVE PLANT CANOPY 420
9.1A. WIND SPEED PROFILES 421 9.1B. FLUX DENSITIES 422 9.1C. EDDY
DIFFUSION COEFFICIENTS 423 9.ID. RESISTANCE OF AIR ABOVE THE CANOPY 425
9.1E. TRANSPIRATION AND PHOTOSYNTHESIS 425 9.IF. VALUES FOR FLUXES AND
CONCENTRATIONS 426 9.1G. CONDENSATION 428 9.2. GAS FLUXES WITHIN PLANT
COMMUNITIES 429 9.2A. EDDY DIFFUSION COEFFICIENT AND RESISTANCE *429 XI
9.2B. WATER VAPOR 431 9.2C. ATTENUATION OF THE PHOTOSYNTHETIC PHOTON
FLUX 432 9.2D. VALUES OF FOLIAR ABSORPTION COEFFICIENT 433 9.2E. LIGHT
COMPENSATION POINT 435 9.2F. CO2 CONCENTRATIONS AND FLUXES 435 9.2G. CO
2 AT NIGHT 437 9.3. WATER MOVEMENT IN SOIL 438 9.3A. SOIL WATER
POTENTIAL 439 9.3B. DARCY S LAW 441 9.3C. SOIL HYDRAULIC CONDUCTIVITY
COEFFICIENT 441 9.3D. FLUXES FOR CYLINDRICAL SYMMETRY 443 9.3E. FLUXES
FOR SPHERICAL SYMMETRY 445 9.4. WATER MOVEMENT IN THE XYLEM AND THE
PHLOEM 446 9.4A. ROOT TISSUES 447 9.4B. XYLEM 448 9.4C. POISEUILLE S LAW
448 9.4D. APPLICATIONS OF POISEUILLE S LAW 449 9.4E. PHLOEM 453 9.4F.
PHLOEM CONTENTS AND SPEED OF MOVEMENT 454 9.4G. MECHANISM OF PHLOEM FLOW
455 9.4H. VALUES FOR COMPONENTS OF THE PHLOEM WATER POTENTIAL 456 9.5.
SOIL-PLANT-ATMOSPHERE CONTINUUM 459 9.5 A. VALUES OF WATER POTENTIAL
COMPONENTS 459 9.5B. RESISTANCES AND AREAS _ 461 9.5C. SPECIFIC
RESISTANCES AND CONDUCTANCES 465 9.5D. CAPACITANCE AND TIME CONSTANTS
468 9.5E. DAILY CHANGES 471 9.5F. GLOBAL CLIMATE CHANGE 473 9.6.
PROBLEMS 476 9.7. REFERENCES 479 SOLUTIONS TO PROBLEMS 483 APPENDIX I.
NUMERICAL VALUES OF CONSTANTS AND COEFFICIENTS 529 APPENDIX II.
CONVERSION FACTORS AND DEFINITIONS 537 APPENDIX III. MATHEMATICAL
RELATIONS 541 III.A. PREFIXES (FOR UNITS OF MEASURE) 541 III.B. AREAS
AND VOLUMES 541 III.C. LOGARITHMS 541 III.D. QUADRATIC EQUATION 542
III.E. TRIGNOMETRIC FUNCTIONS 542 III.F. DIFFERENTIAL EQUATIONS 543
APPENDIX IV. GIBBS FREE ENERGY AND CHEMICAL POTENTIAL 545 IV.A. ENTROPY
AND EQUILIBRIUM 545 IV.B. GIBBS FREE ENERGY 547 IV.C. CHEMICAL POTENTIAL
549 IV.D. PRESSURE DEPENDENCE OF IJ 550 IV.E. CONCENTRATION DEPENDENCE
OF /XY 553 INDEX 555
|
any_adam_object | 1 |
author | Nobel, Park S. |
author_facet | Nobel, Park S. |
author_role | aut |
author_sort | Nobel, Park S. |
author_variant | p s n ps psn |
building | Verbundindex |
bvnumber | BV019696840 |
callnumber-first | Q - Science |
callnumber-label | QK711 |
callnumber-raw | QK711.2 |
callnumber-search | QK711.2 |
callnumber-sort | QK 3711.2 |
callnumber-subject | QK - Botany |
classification_rvk | WN 1000 WN 1300 |
classification_tum | BIO 422f BIO 480f |
ctrlnum | (OCoLC)56367931 (DE-599)BVBBV019696840 |
dewey-full | 571.2 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 571 - Physiology & related subjects |
dewey-raw | 571.2 |
dewey-search | 571.2 |
dewey-sort | 3571.2 |
dewey-tens | 570 - Biology |
discipline | Biologie |
edition | 3. ed. |
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id | DE-604.BV019696840 |
illustrated | Illustrated |
indexdate | 2024-07-09T20:04:03Z |
institution | BVB |
isbn | 0125200269 |
language | English |
lccn | 2004057702 |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-013024496 |
oclc_num | 56367931 |
open_access_boolean | |
owner | DE-29T DE-703 DE-M49 DE-BY-TUM |
owner_facet | DE-29T DE-703 DE-M49 DE-BY-TUM |
physical | XX, 567 S. Ill., graph. Darst. |
publishDate | 2005 |
publishDateSearch | 2005 |
publishDateSort | 2005 |
publisher | Elsevier, Acad. Press |
record_format | marc |
spelling | Nobel, Park S. Verfasser aut Physicochemical and environmental plant physiology Park S. Nobel Plant physiology 3. ed. Amsterdam [u.a.] Elsevier, Acad. Press 2005 XX, 567 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Includes bibliographical references Chimie végétale Fisiologia larpcal Physiologie végétale Plantes - Cellules et tissus Plantes - Écophysiologie Botanical chemistry Plant ecophysiology Plant cells and tissues Pflanzenphysiologie (DE-588)4045580-4 gnd rswk-swf Umweltfaktor (DE-588)4124348-1 gnd rswk-swf Pflanzen (DE-588)4045539-7 gnd rswk-swf Biophysik (DE-588)4006891-2 gnd rswk-swf Biochemie (DE-588)4006777-4 gnd rswk-swf Autökologie (DE-588)4143684-2 gnd rswk-swf Pflanzen (DE-588)4045539-7 s Autökologie (DE-588)4143684-2 s DE-604 Pflanzenphysiologie (DE-588)4045580-4 s Umweltfaktor (DE-588)4124348-1 s Biochemie (DE-588)4006777-4 s 1\p DE-604 Biophysik (DE-588)4006891-2 s 2\p DE-604 3\p DE-604 HEBIS Datenaustausch Mainz application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013024496&sequence=000001&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 3\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Nobel, Park S. Physicochemical and environmental plant physiology Chimie végétale Fisiologia larpcal Physiologie végétale Plantes - Cellules et tissus Plantes - Écophysiologie Plant physiology Botanical chemistry Plant ecophysiology Plant cells and tissues Pflanzenphysiologie (DE-588)4045580-4 gnd Umweltfaktor (DE-588)4124348-1 gnd Pflanzen (DE-588)4045539-7 gnd Biophysik (DE-588)4006891-2 gnd Biochemie (DE-588)4006777-4 gnd Autökologie (DE-588)4143684-2 gnd |
subject_GND | (DE-588)4045580-4 (DE-588)4124348-1 (DE-588)4045539-7 (DE-588)4006891-2 (DE-588)4006777-4 (DE-588)4143684-2 |
title | Physicochemical and environmental plant physiology |
title_alt | Plant physiology |
title_auth | Physicochemical and environmental plant physiology |
title_exact_search | Physicochemical and environmental plant physiology |
title_full | Physicochemical and environmental plant physiology Park S. Nobel |
title_fullStr | Physicochemical and environmental plant physiology Park S. Nobel |
title_full_unstemmed | Physicochemical and environmental plant physiology Park S. Nobel |
title_short | Physicochemical and environmental plant physiology |
title_sort | physicochemical and environmental plant physiology |
topic | Chimie végétale Fisiologia larpcal Physiologie végétale Plantes - Cellules et tissus Plantes - Écophysiologie Plant physiology Botanical chemistry Plant ecophysiology Plant cells and tissues Pflanzenphysiologie (DE-588)4045580-4 gnd Umweltfaktor (DE-588)4124348-1 gnd Pflanzen (DE-588)4045539-7 gnd Biophysik (DE-588)4006891-2 gnd Biochemie (DE-588)4006777-4 gnd Autökologie (DE-588)4143684-2 gnd |
topic_facet | Chimie végétale Fisiologia Physiologie végétale Plantes - Cellules et tissus Plantes - Écophysiologie Plant physiology Botanical chemistry Plant ecophysiology Plant cells and tissues Pflanzenphysiologie Umweltfaktor Pflanzen Biophysik Biochemie Autökologie |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=013024496&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT nobelparks physicochemicalandenvironmentalplantphysiology AT nobelparks plantphysiology |