Central European stream ecosystems: the long term study of the Breitenbach
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Format: | Buch |
Sprache: | English |
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Weinheim
Wiley-Blackwell
2011
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Ausgabe: | 1. Aufl. |
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Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XXI, 672 S. Ill., graph. Darst., Kt. 25 cm |
ISBN: | 9783527329526 3527329528 |
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IMAGE 1
IX
CONTENTS
FOREWORD V LIST OF CONTRIBUTORS XIX ACKNOWLEDGMENTS X XI
1 INTRODUCTION 1
PETER ZWICK
1.1 HISTORY OF THE LIMNOLOGISCHE FLUSSSTATION SCHLITZ L
2 THE BREITENBACH AND ITS CATCHMENT 5 JUERGEN MARXSEN, RUEDIGER WAGNER,
AND HANS-HEINRICH SCHMIDT 2.1 STUDY AREA 5
2.2 THE STREAM AND THE CATCHMENT 7
2.3 SAMPLING SITES 18
3 ENVIRONMENTAL CHARACTERISTICS 21 HANS-HEINRICH SCHMIDT 3.1 CLIMATE AND
WEATHER 21
3.1.1 GLOBAL IRRADIANCE 21 3.1.1.1 LOCAL EFFECTS OF IRRADIANCE IN THE
CATCHMENT 24 3.1.2 PRECIPITATION 24
3.1.3 WIND 27
3.1.4 AIR TEMPERATURE 32
3.1.5 DISCHARGE 34
3.1.5.1 BASE FLOW AND BASE FLOW INDEX (BFI) 36 3.1.5.2 FALLING LIMB 38
3.1.5.3 RISING LIMB 39 3.1.5.4 FLOW DURATION CURVE 39 3.1.5.5 HIGH WATER
41 3.1.5.6 BANK-FULL 43 3.1.5.7 WATER SATURATION OF THE VALLEY 44
3.1.5.8 INPUT AVERAGE 44 3.1.5.9 LOW WATER 44 3.2 ATTEMPT TO DEFINE
SUBSTRATUM DYNAMICS 44
BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/1009639935
DIGITALISIERT DURCH
IMAGE 2
X CONTENTS
3.2.1 CROSS-SECTION MEASUREMENTS 46
3.2.2 WET STREAM AREA 46
3.2.3 WATER TEMPERATURE 47 3.2.3.1 WATER TEMPERATURE IN THE SEDIMENT 47
3.2.3.2 WATER TEMPERATURE IN THE STREAM 47 3.3 CHEMISTRY 56
3.3.1 BUFFERING CAPACITY (ABC-ACID BINDING CAPACITY) 57 3.3.2 PH 59
3.3.3 OXYGEN 60
3.3.4 SOLUBLE INORGANIC ELEMENTS 64 3.3.4.1 METHODS 64 3.3.4.2 NITROGEN
64 3.3.4.3 PHOSPHATE 69
3.3.4.4 SILICATE 70 3.3.4.5 SULFATE 71 3.3.4.6 CHLORIDE 71
4 DETRITAL ENERGY SOURCES 73
4.1 ORGANIC MATTER IN STREAMS 73
JUERGEN MARXSEN
4.2 PARTICULATE ORGANIC MATTER 74
JUERGEN MARXSEN AND RUEDIGER WAGNER 4.2.1 PARTICULATE ORGANIC MATTER IN
STREAMS 74 4.2.2 POM INPUTS TO THE BREITENBACH 75 4.2.2.1 MEASURING
PERIODS AND METHODS 75 4.2.2.2 SEASONAL DISTRIBUTION OF CPOM INPUTS 76
4.2.2.3 AMOUNTS OF CPOM INPUTS IN VARIOUS YEARS AND STREAM SECTIONS 78
4.2.2.4 COMPOSITION OF CPOM INPUTS 81 4.2.2.5 TOTAL INPUTS OF POM 82
4.2.3 STANDING STOCKS OF POM IN THE BREITENBACH 83 4.2.4 OUTPUTS OF POM
FROM THE BREITENBACH 83 4.3 DISSOLVED ORGANIC MATTER 84
JUERGEN MARXSEN
4.3.1 DISSOLVED ORGANIC MATTER IN STREAMS 84 4.3.2 CONCENTRATIONS AND
DYNAMICS OF DISSOLVED ORGANIC MATTER IN THE BREITENBACH 84 4.3.3 INPUTS
AND OUTPUTS OF DISSOLVED ORGANIC MATTER TO AND FROM THE
BREITENBACH 89
4.3.4 COMPOSITION OF DISSOLVED ORGANIC MATTER IN THE BREITENBACH:
CARBOHYDRATES 91
5 PRIMARY PRODUCERS 99
EILEEN J. COX, JUERGEN MARXSEN, AND THOMAS C. HORVATH 5.1 PRIMARY
PRODUCERS IN STREAMS 99
5.2 THE COMMUNITIES 100
IMAGE 3
CONTENTS XI
5.2.1 ALGAE 100
5.2.1.1 ALGAL ASSEMBLAGES IN STREAMS 100 5.2.1.2 SPATIAL AND TEMPORAL
PATTERNS OF DIATOM OCCURRENCES IN THE BREITENBACH 101 5.2.1.3 VARIATION
IN ALGAL BIOMAS S 108 5.2.1.4 EFFECTS OF DISCHARGE ON BENTHIC DIATOM
ASSEMBLAGES 112
5.2.1.5 MICROHABITATS 115 5.2.1.6 SPECIES OCCURRENCES AND ECOLOGICAL
INFERENCES 117 5.2.1.7 IMPACT OF GRAZERS ON ALGAL ASSEMBLAGE AND BIOMASS
122 5.2.1.8 GENERAL CONCLUSIONS FROM A PARTICULAR ECOSYSTEM 122 5.2.2
MACROPHYTES 124 5.3 PRIMARY PRODUCTION 126
6 BACTERIA AND FUNGI 131
JUERGEN MARXSEN
6.1 THE ROLE OF BACTERIA AND FUNGI IN STREAMS 131 6.2 THE COMMUNITIES
134
6.2.1 BACTERIAL ABUNDANCE AND BIOMASS 134 6.2.1.1 ABUNDANCE IN DIFFERENT
HABITATS 134 6.2.1.2 EFFECTS OF TEMPERATURE AND DISCHARGE ON SUSPENDED
BACTERIAL ABUNDANCE 139 6.2.1.3 BACTERIAL BIOMASS 141 6.2.2 BACTERIAL
COMMUNITY COMPOSITION 142 6.2.2.1 METHODOLOGICAL APPROACHES 142 6.2.2.2
CULTIVATION 144 6.2.2.3 FLUORESCENCE IN SITU HYBRIDIZATION 145 6.2.2.4
TEMPERATURE GRADIENT GEL ELECTROPHORESIS 151 6.2.2.5 SEQUENCE ANALYSIS
154
6.2.2.6 WATER VERSUS SEDIMENT BACTERIAL COMMUNITIES 161 6.2.2.7
COMMUNITY COMPOSITION: CONCLUSIONS 162 6.2.3 THE FUNGAL COMMUNITY 162
6.3 MICROBIAL METABOLIC ACTIVITY 163 6.3.1 APPROACHES TO MICROBIAL
METABOLIC ACTIVITY MEASUREMENTS IN THE BREITENBACH 163 6.3.2
EXTRACELLULAR ENZYME ACTIVITY 164 6.3.2.1 THE FUNCTION OF EXTRACELLULAR
ENZYMES IN STREAMS 164 6.3.2.2 METHODOLOGICAL APPROACH 166 6.3.2.3
SPATIAL DISTRIBUTION 168 6.3.2.4 ACTIVITY OF DIFFERENT ENZYMES 170
6.3.2.5 ENVIRONMENTAL CONTROLS AND REGULATION 175 6.3.2.6 THE MOLECULAR
BIOLOGY PERSPECTIVE 179 6.3.3 BACTERIAL PRODUCTION 182 6.3.3.1 THE
IMPORTANCE OF BACTERIAL CARBON PRODUCTION IN STREAMS 182
6.3.3.2 METHODOLOGICAL APPROACH 183 6.3.3.3 SEASONAL FLUCTUATION 184
IMAGE 4
XII CONTENTS
6.3.3.4 SMALL-SCALE VARIABILITY AND PARTICULATE ORGANIC MATTER CONTENT
188
6.3.3.5 INFLUENCE OF TEMPERATURE AND DISCHARGE 190 6.3.3.6 COMPARING BCP
BETWEEN DIFFERENT STREAMS AND RIVERS 191 6.3.3.7 ANNUAL BACTERIAL
PRODUCTION AND RESPIRATION 193 6.3.4 FUNGAL PRODUCTION 194
7 THE FAUNA OF THE BREITEN BACH 195
PETER ZWICK, GEORG BECKER, RUEDIGER WAGNER, AND JOACHIM REIDELBACH
7.1 SAMPLING METHODS 196
PETER ZWICK
7.1.1 COLLECTING THE MACROZOOBENTHOS 196 7.1.1.1 STUDY OF SPECIMENS 197
7.1.1.2 SECONDARY PRODUCTION 198 7.1.1.3 LIFE CYCLE ANALYSES 201
7.1.1.4 EFFECT OF AN INSECTICIDE POISONING 201 7.1.2 COLLECTING INSECTS
IN EMERGENCE TRAPS 202 7.1.2.1 GOALS 202 7.1.2.2 TYPES OF TRAP USED AND
YEARS OF OPERATION 202 7.1.2.3 FUNDAMENTALS OF EMERGENCE TRAP FUNCTION
203
7.1.2A ERRORS DURING TRAP OPERATION 205 7.1.2.5 EMERGENCE TRAPS AS
ACTIVITY TRAPS AND TERRESTRIAL BY-CATCH 206 7.1.2.6 EMERGENCE TRAP
COLLECTIONS AND ESTIMATES OF SECONDARY PRODUCTION 207
7.1.2.7 EVALUATION-STATISTICAL TREATMENT OF DATA 208 RUEDIGER WAGNER 7.2
PROTOZOA: CILIOPHORA 209
PETER ZWICK
73 PLATYHELMINTHES AND ANNELIDA 211 PETER ZWICK 7.3.1 PLATYHELMINTHES
211 7.3.2 ANNELIDA 212
7.4 NEMATODA 212
PETER ZWICK AND HEINO CHRISTI 7.5 MOLLUSCA 214
PETER ZWICK
7.6 ARTHROPODA 216
PETER ZWICK
7.6.1 CHELICERATA 216
7.6.2 HYDRACHNIDIA 217 7.6.3 CRUSTACEA 218
7.6.4 INSECTA 219 PETER ZWICK 7.6.4.1 GENERAL AND MINOR TAXA 219 7.6.4.2
EPHEMEROPTERA 226
7.6.4.3 PLECOPTERA 254
IMAGE 5
CONTENTS XIII
7.6.4.4 COLEOPTERA 309
7.6.4.5 TRICHOPTERA 327 RUEDIGER WAGNER 7.6.4.6 AQUATIC DIPTERA 369
RUEDIGER WAGNER 7.7 CHORDATA 404
PETER ZWICK
7.8 ECOPHYSIOLOGY, BEHAVIOR, AND LIFE CYCLES OF SCRAPERS 405 CEORG
BECKER 7.8.1 CROWDING PROBLEMS AND FEEDING STRATEGY OF TINODES ROSTOCKI
(TRICHOPTERA: PSYCHOMYIIDAE), A DOMINANT EPILITHIC CADDISFLY IN THE
MIDDLE AND LOWER REACHES OF THE BREITENBACH 405 7.8.1.1 LARVAL AGE
STRUCTURE, COLONIZATION OF NATURAL SUBSTRATA, AND INTRASPECIFK
COMPETITION FOR SPACE IN T. ROSTOCKI 405 7.8.1.2 RETREATS OF T. ROSTOCKI
AS A SUBSTRATUM FOR LARVAL FOOD RESOURCES 412 7.8.1.3 FEEDING STRATEGY
OF T. ROSTOCKI 419 7.8.2 LIFE CYCLE AND OVIPOSITING ADAPTATIONS OF
AGAPETUS JUSCIPES
(TRICHOPTERA, GLOSSOSOMATIDAE) TO A FIRST-ORDER STREAM 421 7.8.2.1 LIFE
CYCLE OF GLOSSOSOMATIDAE 421 7.8.2.2 MEASUREMENTS OF PRONOTUM LENGTH,
LARVAL MASS, AND CASE LENGTH IN A. JUSCIPES 422 7.8.2.3 NUMBER OF LARVAL
INSTARS 423
7.8.2.4 LARVAL MASS AND CASE LENGTH THROUGHOUT THE ONTOGENY 424 7.8.2.5
MOLT INCREMENTS 426 7.8.2.6 THE PRESENCE OF DEVELOPMENTAL STAGES IN THE
BREITENBACH THROUGHOUT THE YEAR 427
7.8.2.7 LIFE CYCLE ADAPTATION OF A. JUSCIPES TO A SMALL UPHILL STREAM
428 7.8.2.8 OVIPOSITING BEHAVIOR OF AGAPETUS JUSCIPES 429 7.8.2.9 EGG
NUMBER AND EGG MASSES PER FEMALE 430 7.8.2.10 DISTRIBUTION AND ABUNDANCE
OF EGG MASSES IN THE BREITENBACH 430 7.8.2.11 CORRELATION BETWEEN EGG
NUMBER AND CAP STONE SIZE 431
7.8.2.12 OVIPOSITING BEHAVIOR OF GLOSSOSOMATIDAE 432 7.8.3 IMPORTANCE OF
CASE CONSTRUCTION FOR CRAWLING BEHAVIOR AND THE COEXISTENCE OF THREE
TRICHOPTERAN SCRAPERS IN THE UPPER REACH OF THE BREITENBACH 432 7.8.3.1
FUNCTIONS OF DIFFERENT CASE CONSTRUCTIONS FOR TRICHOPTERAN
SPECIES 432
7.8.3.2 CASE CONSTRUCTION WITH RESPECT TO SIZE, SHAPE, COMPOSITION, AND
MASS 433 7.8.3.3 NUMBER AND SIZE OF SAND GRAINS 435 7.8.3.4 USE OF SILK,
CASE CONSTRUCTION COSTS, AND CASE: LARVAL MASS
QUOTIENT 436
7.8.3.5 CRAWLING VELOCITY OF LARVAE 436 7.8.3.6 ADVANTAGES OF DIFFERENT
CASE CONSTRUCTIONS FOR EPILITHIC SCRAPERS 438
IMAGE 6
XIV CONTENTS
7.8.3.7 EFFECT OF SUBSTRATUM ROUGHNESS ON LARVAL CRAWLING VELOCITY 439
7.8.4 INTERACTIONS BETWEEN SCRAPERS AND PERIPHYTON 442 7.8.4.1
INTRODUCTION 442 7.8.4.2 COMPARISON OF THE DIETARY COMPOSITION OF
EPILITHIC TRICHOPTERAN SPECIES 445 7.8.4.3 GUT CONTENT AND PERIPHYTON
ANALYSES 446 7.8.4.4 COMPARISON BETWEEN SPECIES 446
7.8.4.5 GUT CONTENT AND PERIPHYTON COMPOSITION THROUGHOUT THE YEAR 447
7.8.4.6 VARIABILITY IN GUT CONTENT AND PERIPHYTON COMPOSITION ALONG THE
STREAM 451
7.8.4.7 PRIMARY PRODUCERS, FOOD QUALITY, AND RESOURCE OVERLAP 453
7.8.4.8 INTERSPECIFIC COMPETITION BETWEEN SCRAPERS AND TOP-DOWN CONTROL
OF BIOFILMS 455 7.8.4.9 SPATIAL AND TEMPORAL DEVELOPMENT OF TRICHOPTERAN
AND
EPHEMEROPTERAN GRAZERS AND PERIPHYTON ALONG THE BREITENBACH 459 7.8.4.10
SIGNIFICANCE OF PHOTOTROPHIC MICROORGANISMS FOR THE MORTALITY, GROWTH,
AND DEVELOPMENT OF TRICHOPTERAN SCRAPERS 461 7.8.4.11 THE DIURNAL
FORAGING BEHAVIOR OF A. JUSCIPES AND D. ANNULATUS 461
7.8.4.12 FOOD CHOICE IN LABORATORY EXPERIMENTS 462 7.8.4.13 RESPONSE OF
TRICHOPTERAN GRAZERS TO BIOFILMS OF DIVERSE QUANTITY AND QUALITY 467
7.8.4.14 FEEDING STRATEGIES AND ECOLOGICAL SEGREGATION OF TRICHOPTERAN
GRAZERS
IN THE BREITENBACH 471 7.8.4.15 CONCLUSIONS 475 7.9 EFFECTS OF WATER
TEMPERATURE ALONG THE BREITENBACH 476 RUEDIGER WAGNER 7.9.1 WATER
TEMPERATURE AS AN IMPORTANT VARIABLE FOR EXPLAINING BODY
SIZE 476
7.9.2 FUNCTIONAL FEEDING GROUPS 477 7.9.3 EXPERIMENTS WITH CHAETOPTERYX
VILLOSA 478 7.9.3.1 LIFE CYCLE AND ADULT SIZE AT DIFFERENT STREAM SITES
478 7.9.3.2 BETWEEN-SEXES SIZE DIFFERENCE 478
7.9.3.3 FIELD EXPERIMENT-EFFECTS OF FOOD AND TEMPERATURE 480 7.9.3.4
CHAETOPTERYX VILIOSA-GROWTH MODELS 481 7.9.4 GAMMARUS FOSSARUM- ANOTHER
EXAMPLE 481 7.9.5 WATER TEMPERATURE-A LIMITING RESOURCE 483
7.9.6 SCRAPERS- INDICATION OF SITE-SPECIFIC INTRA- AND INTERSPECIFIC
COMPETITION BASED ON EMERGED ADULTS 483 7.9.6.1 CADDISFLY SCRAPERS-SIZE
DIFFERENCES ALONG THE BREITENBACH 483 7.9.6.2 WITHIN- AND
BETWEEN-SPECIES RESOURCE LIMITATION 484
8 ECOSYSTEM BREITEN BACH 487
8.1 THE SANDY STREAMBED AREAS OF THE BREITENBACH 487 RUEDIGER WAGNER,
JUERGEN MARXSEN, AND HANS-HEINRICH SCHMIDT 8.1.1 IMPORTANCE OF SEDIMENTS
IN STREAMS 487
IMAGE 7
CONTENTS XV
8.1.2 THE BREITENBACH STREAMBED 488
8.1.3 INTERSTITIAL WATER: CHEMICAL CHARACTERISTICS 490 8.1.4 BREITENBACH
SANDY SEDIMENTS AS HABITAT 495 8.2 AQUATIC INSECTS EMERGING OVER AN
ARTIFICIALLY CHANGED STREAM BOTTOM 496
RUEDIGER WAGNER
8.2.1 THE "SILTED" EMERGENCE TRAP 498 8.2.2 LABORATORY EXPERIMENTS 499
8.2.3 EMERGING AQUATIC INSECTS 499 8.3 DISCHARGE PATTERNS LARGELY
DETERMINE SPECIES ABUNDANCE AND
COMMUNITY DIVERSITY 503 RUEDIGER WAGNER AND HANS-HEINRICH SCHMIDT 8.3.1
COMMUNITY AND VARIABLES DATA TREATMENT 505 8.3.2 ENVIRONMENTAL VARIABLES
508
8.3.3 COMMUNITY 512
8.3.4 ABUNDANCE AND DISCHARGE PATTERN 514 8.3.5 ORDINATION 517
8.3.6 DISCRIMINANT ANALYSIS 517 8.3.7 COMMUNITY DIVERSITY 519 8.3.8
PERIODS BEFORE AND AFTER 1990 522 8.3.9 THE EPT COMMUNITY OF THE
BREITENBACH AND ENVIRONMENTAL
VARIATION 522
8.3.10 MULTIPLE STABLE COMMUNITY STATES IN RUNNING WATERS? 524 8.4
ELEVEN YEARS EMERGENCE AT FOUR SITES ALONG THE BREITENBACH AND THE
EFFECTS OF DISCHARGE PATTERNS ON THE EPTD COMMUNITY 526 RUEDIGER WAGNER
AND HANS-HEINRICH SCHMIDT
8.4.1 VARIABLES, COMMUNITY, AND STATISTICS 527 8.4.2 ENVIRONMENTAL
VARIABLES 528 8.4.2.1 PRECIPITATION 528 8.4.2.2 DISCHARGE 528
8.4.2.3 WATER TEMPERATURE 529 8.4.2.4 AIR TEMPERATURE AND NUMBER OF
RAINY DAYS 529 8.4.3 COMMUNITY 529
8.4.3.1 DISTRIBUTION OF SPECIES ALONG THE BREITENBACH 529 8.4.3.2
SPECIES AFFECTED BY DISCHARGE PATTERN 531 8.4.3.3 SPECIES WITH
SIMULTANEOUS SPATIAL AND TEMPORAL VARIABILITY 534 8.4.3.4 CORRESPONDENCE
ANALYSIS 534 8.4.3.5 COMMUNITY MEASURES 537
8.4.3.6 DISCRIMINANT ANALYSIS 539 8.4.4 DISCUSSION 539
8.5 THE ERLENBACH-A COMPARISON WITH THE BREITENBACH 543 RUEDIGER WAGNER
8.5.1 ENVIRONMENTAL VARIABLES 545 8.5.1.1 CONDUCTIVITY AND PH 545
8.5.1.2 DISCHARGE 545
IMAGE 8
XVI CONTENTS
8.5.1.3 AIR AND WATER TEMPERATURE 545
8.5.2 COMMUNITY 547 8.5.3 CONCLUSION 553 8.6 MODELING DISCHARGE AND
INSECT ABUNDANCE WITH ARTIFICIAL NEURAL NETWORKS (ANNS) 554
MICHAEL OBACH AND RUEDIGER WAGNER 8.6.1 PRECIPITATION-DISCHARGE 555 8.6.2
PROGNOSIS OF YEARLY ABUNDANCE OF 17 EPT SPECIES 557 8.6.3 SEASONAL
EFFECTS OF VARIABLES ON SPECIES IN MODELS 559 8.6.4 EFFECTS OF DISCHARGE
PARAMETERS ON PREDICTIONS OF MONTHLY
ABUNDANCES OF BAETIS RHODANI 560 8.6.5 PREDICTIONS OF YEARLY ABUNDANCE
PATTERNS 561 8.6.6 ABUNDANCE PREDICTIONS FOR THE CADDISFLY APATANIA
FIMHRIATA AT FOUR SITES ALONG THE STREAM 562 8.6.7 GENERAL ASPECTS 563
8.7 FOOD CHAINS AND CARBON FLOW 564
JUERGEN MARXSEN
8.7.1 THE ORGANIC MATTER BUDGET OF THE BREITENBACH 564 8.7.2 BACTERIA IN
THE FOOD WEB SYSTEM OF THE BREITENBACH 567 8.8 GLOBAL CHANGE AND TIMING
OF INSECT EMERGENCE AT THE BREITENBACH 570
PETER ZWICK AND RUEDIGER WAGNER 8.8.1 INTRODUCTION 570 8.8.2 METHODS 572
8.8.2.1 SELECTION CRITERIA 572
8.8.2.2 ACCURACY OF EMERGENCE DATA AND POSSIBLE SOURCES OF ERROR 573
8.8.2.3 SHIFT IN EMERGENCE DATES 573 8.8.2.4 EMERGENCE DATES AND
TEMPERATURE REGIMES 573 8.8.3 RESULTS 575 8.8.3.1 SHIFT IN EMERGENCE
TIME OF INDIVIDUAL EPHEMEROPTERA
AND PLECOPTERA SPECIES 575 8.8.3.2 SHIFT IN EMERGENCE TIME OF
TRICHOPTERA SPECIES 576 8.8.3.3 EMERGENCE DATES AND THERMAL REGIME 577
8.8.4 DISCUSSION 578
9 SUMMARY 585
GEORG BECKER, EILEEN J. COX, JUERGEN MARXSEN, HANS-HEINRICH SCHMIDT,
RUEDIGER WAGNER, AND PETER ZWICK 9.1 CLIMATE, ENVIRONMENT 585 9.1.1
HYDROLOGICAL CHAIN 586 9.1.2 THERMAL CHAIN 586 9.1.3 WATER CHEMISTRY 587
9.2 DETRITAL ENERGY SOURCES 587 9.3 PRIMARY PRODUCERS 588 9.4 BACTERIA
589
IMAGE 9
CONTENTS XVII
9.5
9.6 9.6.1 9.6.1.1 9.6.1.2 9.6.1.3 9.6.1.4 9.6.1.5 9.6.2 9.7 9.7.1 9.7.2
9.7.3 9.7.4 9.7.5
ORGANIC MATTER BALANCE AND CARBON FLOW 590 FAUNA 591 THE DOMINANT
PTERYGOTA 591 EPHEMEROPTERA 592
PLECOPTERA 593 TRICHOPTERA 594 DIPTERA 595 COLEOPTERA 595
SCRAPERS OF THE BREITENBACH COMMUNITY 596 ECOSYSTEMS 598 THE STREAM
BOTTOM 598 ORDINATION 598 MODELING 599 ERLENBACH 599 GLOBAL CHANGE 600
REFERENCES 601 INDEX 663 |
any_adam_object | 1 |
author2 | Wagner, Rüdiger |
author2_role | edt |
author2_variant | r w rw |
author_facet | Wagner, Rüdiger |
building | Verbundindex |
bvnumber | BV039880552 |
ctrlnum | (OCoLC)767864142 (DE-599)DNB1009639935 |
dewey-full | 577.6409434141 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 577 - Ecology |
dewey-raw | 577.6409434141 |
dewey-search | 577.6409434141 |
dewey-sort | 3577.6409434141 |
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discipline | Biologie |
edition | 1. Aufl. |
format | Book |
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genre | (DE-588)4143413-4 Aufsatzsammlung gnd-content |
genre_facet | Aufsatzsammlung |
geographic | Breitenbach Schlitz, Fluss (DE-588)4008117-5 gnd |
geographic_facet | Breitenbach Schlitz, Fluss |
id | DE-604.BV039880552 |
illustrated | Illustrated |
indexdate | 2024-07-21T00:24:10Z |
institution | BVB |
isbn | 9783527329526 3527329528 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-024739795 |
oclc_num | 767864142 |
open_access_boolean | |
owner | DE-29 DE-1029 |
owner_facet | DE-29 DE-1029 |
physical | XXI, 672 S. Ill., graph. Darst., Kt. 25 cm |
publishDate | 2011 |
publishDateSearch | 2011 |
publishDateSort | 2011 |
publisher | Wiley-Blackwell |
record_format | marc |
spelling | Central European stream ecosystems the long term study of the Breitenbach ed. by Rüdiger Wagner ... With contributions from Georg Becker ... 1. Aufl. Weinheim Wiley-Blackwell 2011 XXI, 672 S. Ill., graph. Darst., Kt. 25 cm txt rdacontent n rdamedia nc rdacarrier Literaturangaben Aquatisches Ökosystem (DE-588)4293663-9 gnd rswk-swf Breitenbach Schlitz, Fluss (DE-588)4008117-5 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content Breitenbach Schlitz, Fluss (DE-588)4008117-5 g Aquatisches Ökosystem (DE-588)4293663-9 s DE-604 Wagner, Rüdiger edt Becker, Georg Sonstige oth X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3655697&prov=M&dok_var=1&dok_ext=htm Inhaltstext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024739795&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Central European stream ecosystems the long term study of the Breitenbach Aquatisches Ökosystem (DE-588)4293663-9 gnd |
subject_GND | (DE-588)4293663-9 (DE-588)4008117-5 (DE-588)4143413-4 |
title | Central European stream ecosystems the long term study of the Breitenbach |
title_auth | Central European stream ecosystems the long term study of the Breitenbach |
title_exact_search | Central European stream ecosystems the long term study of the Breitenbach |
title_full | Central European stream ecosystems the long term study of the Breitenbach ed. by Rüdiger Wagner ... With contributions from Georg Becker ... |
title_fullStr | Central European stream ecosystems the long term study of the Breitenbach ed. by Rüdiger Wagner ... With contributions from Georg Becker ... |
title_full_unstemmed | Central European stream ecosystems the long term study of the Breitenbach ed. by Rüdiger Wagner ... With contributions from Georg Becker ... |
title_short | Central European stream ecosystems |
title_sort | central european stream ecosystems the long term study of the breitenbach |
title_sub | the long term study of the Breitenbach |
topic | Aquatisches Ökosystem (DE-588)4293663-9 gnd |
topic_facet | Aquatisches Ökosystem Breitenbach Schlitz, Fluss Aufsatzsammlung |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=3655697&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024739795&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT wagnerrudiger centraleuropeanstreamecosystemsthelongtermstudyofthebreitenbach AT beckergeorg centraleuropeanstreamecosystemsthelongtermstudyofthebreitenbach |