Climate change and marine and freshwater toxins:
Gespeichert in:
Weitere Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
de Gruyter
2015
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVIII, 490 S. Ill., graph. Darst., Kt. |
ISBN: | 9783110333039 9783110382617 |
Internformat
MARC
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245 | 1 | 0 | |a Climate change and marine and freshwater toxins |c Ed. by Luis M. Botana ... |
264 | 1 | |a Berlin [u.a.] |b de Gruyter |c 2015 | |
300 | |a XVIII, 490 S. |b Ill., graph. Darst., Kt. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
650 | 4 | |a Marine Toxins, Freshwater Toxins, Drinking Water Safety, Food and Feedstock, Climate Change | |
650 | 0 | 7 | |a Wasserblüte |0 (DE-588)4376539-7 |2 gnd |9 rswk-swf |
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999 | |a oai:aleph.bib-bvb.de:BVB01-027722309 |
Datensatz im Suchindex
_version_ | 1804152852438843392 |
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adam_text | CONTENTS
PREFACE * V
LIST OF CONTRIBUTING
AUTHORS * XV
JOSEFINO C. COMISO
1 VARIABILITY AND
TRENDS OF GLOBAL
SEA ICE
COVER AND SEA LEVEL:
EFFECTS ON PHYSICOCHEMICAL
PARAMETERS * 1
1.1
INTRODUCTION * 1
1.2
VARIABILITY AND TRENDS OF GLOBAL SEA ICE * 2
1.2.1
ARCTIC REGION 5
1.2.2
ANTARCTIC REGION 8
1.3
VARIABILITY AND TRENDS IN SEA LEVEL *12
1.3.1
CONTRIBUTIONS FROM WARMING OCEANS 13
1.3.2
CONTRIBUTIONS FROM GLACIERS, ICE SHEETS AND OTHERS *15
1.4
EFFECTS ON PHYSICOCHEMICAL PARAMETERS *19
1.4.1
LARGE-SCALE CHANGES IN SURFACE TEMPERATURE *19
1.4.2
LARGE-SCALE CHANGES IN PLANKTON CONCENTRATION AND PRIMARY
PRODUCTIVITY * 20
1.4.3
CHANGES IN OTHER PHYSICOCHEMICAL PARAMETERS * 26
1.5
DISCUSSION AND CONCLUSIONS 29
BEGOFIA ESPIFIA,
MARTA PRADO, STEPHANIE VIAL, VER6NICA C. MARTINS, JOSS RIVAS,
AND
PAULO P. FREITAS
2 NEW TECHNIQUES IN ENVIRONMENT MONITORING*35
2.1 INTRODUCTION 35
2.2 IN SITU HARMFUL ALGAL BLOOM MONITORING * 36
2.2.1 OPTICAL REMOTE SENSING 36
2.2.2 AUTOMATED MONITORING 38
2.2.3 HABS SAMPLING BASED ON ABSORPTION 42
2.3 LIQUID CHROMATOGRAPHY AND MASS SPECTROMETRY * 44
2.4 BIOSENSORS FOR HABS MONITORING 46
2.4.1 OPTICAL BIOSENSORS * 49
2.4.2 ELECTROCHEMICAL BIOSENSORS * 51
2.4.3 MASS BIOSENSORS * 51
2.4.4 MAGNETIC-BASED BIOSENSORS * 52
2.5 ADVANCES IN NANOTECHNOLOGY FOR HAB DETECTION * 53
2.5.1 NANOPARTICLES 54
2.5.2 ANALYTICAL NANO-APPLICATIONS * 55
2.6 MOLECULAR BIOLOGY-BASED TECHNIQUES FOR HABS DETECTION * 64
HTTP://D-NB.INFO/1056010452
VIII * CONTENTS
2.6.1 OVERVIEW 64
2.6.2 DNA/RNA TARGETS 65
2.6.3 HYBRIDIZATION-BASED TECHNIQUES * 70
2.6.4 AMPLIFICATION-BASED TECHNIQUES 72
2.6.5 APTAMERS FOR TOXIN DETECTION 75
2.7 FUTURE PERSPECTIVES 76
MIKKO NIKINMAA AND KATJA ANTTILA
3 RESPONSES OF MARINE ANIMALS
TO OCEAN ACIDIFICATION * 99
3.1 INTRODUCTION * 99
3.2 WHAT CAUSES OCEAN ACIDIFICATION * 99
3.2.1 EFFECT OF ATMOSPHERIC CARBON DIOXIDE LOADING *100
3.2.2 INFLUENCE OF PRIMARY PRODUCTION 101
3.2.3 CARBON BALANCE IN COASTAL AREAS 101
3.2.4 INTERACTIONS BETWEEN TEMPERATURE CHANGES AND
OCEAN ACIDIFICATION *102
3.3 PROCESSES OF ANIMALS THAT ARE EXPECTED TO BE AFFECTED *102
3.3.1 PH REGULATION 102
3.3.2 CALCIFICATION 107
3.3.3 DEVELOPMENT 108
3.3.4 OXYGEN TRANSPORT AND METABOLISM *110
3.3.5 BEHAVIOR 114
3.4 CONCLUSIONS 115
SHAUNA MURRAY,
UWE JOHN, AND
ANKE KREMP
4
ALEXANDRIUM
SPP.: GENETIC
AND ECOLOGICAL
FACTORS INFLUENCING
SAXITOXLN
PRODUCTION AND PROLIFERATION
*125
4.1 INTRODUCTION *125
4.2 ALEXANDRIUM TAXONOMY, PHYLOGENETICS AND SPECIES EVOLUTION *126
4.3 WHAT ARE SAXITOXINS? 129
4.3.1 WHICH SPECIES PRODUCE SAXITOXINS? *130
4.3.2 THE SXT GENES IN DINOFLAGELLATES 131
4.4 ECOLOGICAL FACTORS INFLUENCING ALEXANDRIUM SPP. PROLIFERATION
AND TOXICITY *133
4.4.1 THE ROLE OF ECOPHYSIOLOGICAL ADAPTATIONS IN ECOLOGY AND BLOOM
FORMATION OF ALEXANDRIUM LIFE CYCLES *133
4.4.2 MIXOTROPHIC NUTRITION 133
4.4.3 ALLELOPATHY 134
4.5 EFFECTS OF ENVIRONMENTAL FACTORS ON ALEXANDRIUM PROLIFERATION
AND TOXICITY *135
4.5.1 NUTRIENTS 135
4.5.2 TEMPERATURE 135
CONTENTS
* IX
4.5.3 C0
2
138
4.5.4 SALINITY 139
4.6 ADAPTATION TO CHANGING CLIMATE CONDITIONS 141
SUSANNA A. WOOD,
JONATHAN PUDDICK, HUGO BORGES, DANIEL R. DIETRICH, AND
DAVID P. HAMILTON
5 POTENTIAL
EFFECTS OF CLIMATE CHANGE
ON CYANOBACTERIAL
TOXIN PRODUCTION 155
5.1 INTRODUCTION *155
5.1.1 MICROCYSTES AND NODULARINS *156
5.1.2 CYLINDROSPERMOPSINS 157
5.1.3 SAXITOXINS *157
5.1.4 ANATOXIN-A AND HOMO-ANATOXIN-A *157
5.1.5 ANATOXIN-A(S) 158
5.1.6 LIPOPOLYSACCHARIDES (LPS) 158
5.2 EFFECTS OF CLIMATE CHANGE ON COMMON TOXIN PRODUCING SPECIES *159
5.2.1 MICROCYSTIS 160
5.2.2 CYLINDROSPERMOPSIS 161
5.2.3 DOLICHOSPERMUM *161
5.2.4 PLANKTOTHRIX 162
5.2.5 PHORMIDIUM 163
5.3 EFFECTS OF CLIMATE CHANGE ON TOXIN REGULATION *164
5.3.1 MICROCYSTINS 164
5.3.2 NODULARINS 166
5.3.3 CYLINDROSPERMOPSINS *166
5.3.4 SAXITOXINS 167
5.3.5 ANATOXINS 167
5.4 CLIMATE CHANGE AND ITS EFFECT ON CYANOBACTERIA AND TOXIN PRODUCTION
IN POLAR ENVIRONMENTS *168
5.5 CONCLUSIONS 170
GUSTAAF M.HALLEGRAEFF
6 HARMFUL
MARINE ALGAL
BLOOMS AND CLIMATE
CHANGE: PROGRESS
ON A FORMIDABLE
PREDICTIVE CHALLENGE
*181
6.1 INTRODUCTION 181
6.2 ALGAL BLOOM RANGE EXTENSIONS AND CLIMATE CHANGE *182
6.3 RANGE EXTENSIONS FURTHER AIDED BY SHIP BALLAST WATER TRANSPORT *184
6.4 THE FORMIDABLE CHALLENGE OF PREDICTING PHYTOPLANKTON
COMMUNITY RESPONSES *187
6.5 WE CAN LEARN FROM THE FOSSIL RECORD, LONG-TERM PLANKTON RECORDS AND
DECADAL SCALE CLIMATE EVENTS *188
6.6 MITIGATION OF THE LIKELY IMPACT ON SEAFOOD SAFETY *188
X CONTENTS
ELKE S. REICHWALDT, SOM CIT SINANG, AND ANAS
GHADOUANI
7 GLOBAL
WARMING, CLIMATE
PATTERNS AND TOXIC
CYANOBACTERIA *195
7.1 INTRODUCTION 195
7.2 THE EFFECT OF GLOBAL WARMING ON INLAND WATER BODIES *196
7.2.1 DIRECT EFFECTS OF GLOBAL WARMING ON INLAND WATER BODIES *196
7.2.2 INDIRECT EFFECTS OF GLOBAL WARMING ON INLAND WATER BODIES *197
7.3 THE ECOLOGY OF CYANOBACTERIA AND TOXIN PRODUCTION * 203
7.3.1 ENVIRONMENTAL FACTORS AFFECTING CYANOBACTERIAL BIOMASS * 203
7.3.2 ENVIRONMENTAL FACTORS AFFECTING MICROCYSTIN PRODUCTION * 204
7.3.3 ECOLOGICAL FACTORS AFFECTING CYANOBACTERIAL BLOOMS: COMPETITION
206
7.4 DIRECT AND INDIRECT EFFECTS OF GLOBAL WARMING ON
CYANOBACTERIAL GROWTH * 208
7.4.1 TEMPERATURE, STRATIFICATION, AND MIXING 215
7.4.2 NUTRIENTS 216
7.4.3 SALINITY 217
7.4.4 TURBIDITY AND PH 217
7.5 DIRECT AND INDIRECT EFFECTS OF GLOBAL WARMING ON MICROCYSTIN
CONCENTRATION * 217
7.6 WHY SHOULD WE CARE? * 219
ARISTIDIS VLAMIS AND PANAGIOTA KATIKOU
8 HUMAN IMPACT
IN MEDITERRANEAN
COASTAL ECOSYSTEMS
AND CLIMATE
CHANGE:
EMERGING
TOXINS 239
8.1 INTRODUCTION 239
8.2 MEDITERRANEAN COASTAL ECOSYSTEMS * 240
8.2.1 HUMAN IMPACT 242
8.2.2 SOCIO-ECONOMICAL IMPLICATIONS OF CLIMATE CHANGE
* 244
8.2.3 EFFECT TO ECOSYSTEM FROM EXTREME EVENTS OF CLIMATE CHANGE * 245
8.2.4 ECOLOGICAL RESPONSE TO CLIMATE CHANGE * 246
8.3 EMERGING
TOXINS IN THE MEDITERRANEAN SEA * 248
8.3.1 IDENTIFIED EMERGING TOXINS AND CLIMATE CHANGE EFFECTS * 249
8.4 CONCLUSION 259
GURJEET S. KOHLI, HAZEL
FARRELL, AND SHAUNA A. MURRAY
9
GAMBIERDLSCUS,
THE
CAUSE OF CIGUATERA
FISH POISONING:
AN INCREASED
HUMAN
HEALTH THREAT
INFLUENCED BY CLIMATE CHANGE * 273
9.1 THE GENUS GAMBIERDISCUS * 273
9.2 MORPHOLOGY AND PHYLOGENETICS * 274
9.3 GEOGRAPHIC DISTRIBUTION AND ABUNDANCE * 279
9.3.1 THE PACIFIC AND
INDIAN OCEAN REGIONS * 282
9.3.2 THE ATLANTIC OCEAN REGION 282
9.4 CTXS AND MTXS 283
CONTENTS
XI
9.5 TOXICITY OF DIFFERENT SPECIES OF GAMBIERDISCUS 288
9.6 DETECTION OF CTXS AND MTXS IN SEAFOOD * 289
9.7 CONCLUSION 303
DANI J. BARRINGTON, XI XIAO, LIAH X. COGGINS, AND ANAS GHADOUANI
10 CONTROL AND
MANAGEMENT OF HARMFUL ALGAL
BLOOMS * 313
10.1 INTRODUCTION 313
10.2 GLOBAL WATER CRISIS 313
10.3 CYANOBACTERIA AND CYANOTOXINS * 314
10.4 CYANOBACTERIAL PREVENTION AND MITIGATION *315
10.5 CYANOBACTERIAL MANAGEMENT * 320
10.6 CASE STUDY: THE
MANAGEMENT OF CYANOBACTERIA IN WASTE
STABILIZATION PONDS * 323
10.7 TREATMENT OF CYANOBACTERIA AND CYANOTOXINS
WITH HYDROGEN PEROXIDE * 326
10.8 NEW TECHNIQUES FOR THE CONTROL AND CHARACTERIZATION OF
CYANOBACTERIAL BLOOMS 335
10.8.1 ALLELOPATHIC CONTROL OF CYANOBACTERIA * 335
10.8.2 OPTIMIZATION OF THE FDA-PI METHOD
USING FLOW CYTOMETRY TO MEASURE
METABOLIC ACTIVITY OF CYANOBACTERIA * 336
10.9 NEW PERSPECTIVES AND FUTURE DIRECTIONS 338
JOAQURN ESPINOSA, SARA SILVA-SALVADO, AND 6SCAR GARCFA-MARTIN
11 GLOBAL
CLIMATE CHANGE
PROFILE AND
ITS POSSIBLE
EFFECTS ON THE
REPRODUCTIVE CYCLE,
SEX EXPRESSION AND
SEX CHANGE
OF SHELLFISH
AS MARINE
TOXINS VECTORS
* 359
11.1 INTRODUCTION 359
11.2 SHELLFISH AS MARINE TOXINS VECTORS * 360
11.2.1 GENERAL CONSIDERATIONS * 360
11.2.2 GLOBAL INCREASE IN HABS 362
11.2.3 GLOBAL CLIMATE CHANGE 365
11.3 REPRODUCTIVE CYCLE, SEX EXPRESSION AND SEX CHANGE IN SHELLFISH *
378
11.3.1 REPRODUCTIVE CYCLE, REPRODUCTIVE PERIOD AND SEX EXPRESSION
IN BIVALVE MOLLUSKS 378
11.3.2 WHAT IS SEX? 379
11.3.3 SEX DETERMINATION: EVERYTHING HAPPENS IN THE EMBRYO 380
11.3.4 SEX DETERMINATION OF THE GONAD AND SEX DIFFERENTIATION OF
PRIMORDIAL
GERM CELLS (PGCS): MOLECULAR BASIS AND REGULATION 381
11.3.5 GONAD SOMATIC SEX AND GERMLINE SEX IN BIVALVE MOLLUSKS * 382
11.3.6 SEX, SEX REVERSAL, TYPES OF SEXUALITY AND SEX CHANGE
IN BIVALVE MOLLUSKS 384
XII
CONTENTS
11.3.7 WHAT DOES SEX CHANGE
MEAN AND HOW COULD THIS PROCESS BE PERFORMED
BY BIVALVE MOLLUSKS? * 391
11.3.8 TEMPERATURE, PHOTOPERIOD, REPRODUCTIVE CYCLE AND SEX CHANGE
IN BIVALVE MOLLUSKS * 393
11.3.9 CLIMATE CHANGE, REPRODUCTIVE CYCLE, SEX EXPRESSION AND SEX CHANGE
IN BIVALVE MOLLUSKS * 398
11.4 CONCLUDING REMARKS 402
M. CARMEN
LOUZAO, NATALIA VILARIFIO, AND LUIS M. BOTANA
12 EFFECTS ON WORLD
FOOD PRODUCTION AND
SECURITY * 417
12.1 INTRODUCTION 417
12.2 FOODBORNE AND WATERBORNE DISEASES * 417
12.3 ZOONOSIS AND OTHER ANIMAL DISEASES * 418
12.4 PRODUCT SAFETY IN FISHERIES 419
12.5 AQUACULTURE FOOD PRODUCTION 423
12.6 HARMFUL ALGAL BLOOMS 423
12.6.1 IMPACT OF TEMPERATURE CHANGE ON HARMFUL ALGAL BLOOMS 424
12.6.2 ACIDIFICATION OF WATERS AND EFFECT ON HARMFUL ALGAL BLOOMS * 426
12.6.3 IMPACT OF SEA-LEVEL RISE AND INCREASED PRECIPITATION ON HARMFUL
ALGAL COMMUNITIES * 426
12.6.4 MICROALGAL TOXICITY* 427
12.7 HARMFUL ALGAL BLOOMS AND AQUATIC FOOD SAFETY * 428
12.7.1 PREDICTIVE MODELING 433
12.8 FUTURE PERSPECTIVES 434
NATALIA VILARIFIO, M. CARMEN
LOUZAO, MARFA FRAGA, AND
LUIS M. BOTANA
13 FROM SCIENCE TO POLICY:
DYNAMIC ADAPTATION OF LEGAL
REGULATIONS
ON AQUATIC BIOTOXINS * 441
13.1 INTRODUCTION * 441
13.2 CURRENT WORLDWIDE REGULATIONS ON MARINE PHYCOTOXINS * 441
13.2.1 MAXIMUM PERMITTED LEVELS 441
13.2.2 OFFICIAL DETECTION METHODS 446
13.3 CURRENT WORLDWIDE REGULATIONS ON CYANOTOXINS * 447
13.4 NEW OCCURRENCES OF TOXIC EPISODES CHALLENGE PROTECTION
OF CONSUMER S SAFETY 455
13.5 LIMITATIONS FOR THE DEVELOPMENT AND IMPLEMENTATION OF NEW
REGULATIONS: FROM SCIENCE TO POLICY OR FROM POLICY TO SCIENCE?
* 457
13.5.1 TECHNICAL LIMITATIONS FOR RECENT/FUTURE TOXIN REGULATIONS * 457
13.5.2 TOXICOLOGICAL LIMITATIONS FOR NEW TOXIN REGULATIONS * 461
13.5.3 ECONOMIC LIMITATIONS 465
13.6 MODIFICATION OF MONITORING AND SURVEILLANCE PROGRAMS * 466
13.7 INTEGRATIVE EXAMPLE: TETRODOTOXIN AS A BIOMARKER
OF CLIMATE CHANGE * 467
13.8 CONCLUDING REMARKS * 470
INDEX*483
|
any_adam_object | 1 |
author2 | Botana, Luis M. 1959- |
author2_role | edt |
author2_variant | l m b lm lmb |
author_GND | (DE-588)173411711 |
author_facet | Botana, Luis M. 1959- |
building | Verbundindex |
bvnumber | BV042285010 |
ctrlnum | (OCoLC)889427204 (DE-599)BVBBV042285010 |
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dewey-ones | 540 - Chemistry and allied sciences |
dewey-raw | 540 |
dewey-search | 540 |
dewey-sort | 3540 |
dewey-tens | 540 - Chemistry and allied sciences |
discipline | Chemie / Pharmazie |
format | Book |
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publisher | de Gruyter |
record_format | marc |
spelling | Climate change and marine and freshwater toxins Ed. by Luis M. Botana ... Berlin [u.a.] de Gruyter 2015 XVIII, 490 S. Ill., graph. Darst., Kt. txt rdacontent n rdamedia nc rdacarrier Marine Toxins, Freshwater Toxins, Drinking Water Safety, Food and Feedstock, Climate Change Wasserblüte (DE-588)4376539-7 gnd rswk-swf Toxizität (DE-588)4078372-8 gnd rswk-swf Klimaänderung (DE-588)4164199-1 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content Klimaänderung (DE-588)4164199-1 s Wasserblüte (DE-588)4376539-7 s Toxizität (DE-588)4078372-8 s DE-604 Botana, Luis M. 1959- (DE-588)173411711 edt DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027722309&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Climate change and marine and freshwater toxins Marine Toxins, Freshwater Toxins, Drinking Water Safety, Food and Feedstock, Climate Change Wasserblüte (DE-588)4376539-7 gnd Toxizität (DE-588)4078372-8 gnd Klimaänderung (DE-588)4164199-1 gnd |
subject_GND | (DE-588)4376539-7 (DE-588)4078372-8 (DE-588)4164199-1 (DE-588)4143413-4 |
title | Climate change and marine and freshwater toxins |
title_auth | Climate change and marine and freshwater toxins |
title_exact_search | Climate change and marine and freshwater toxins |
title_full | Climate change and marine and freshwater toxins Ed. by Luis M. Botana ... |
title_fullStr | Climate change and marine and freshwater toxins Ed. by Luis M. Botana ... |
title_full_unstemmed | Climate change and marine and freshwater toxins Ed. by Luis M. Botana ... |
title_short | Climate change and marine and freshwater toxins |
title_sort | climate change and marine and freshwater toxins |
topic | Marine Toxins, Freshwater Toxins, Drinking Water Safety, Food and Feedstock, Climate Change Wasserblüte (DE-588)4376539-7 gnd Toxizität (DE-588)4078372-8 gnd Klimaänderung (DE-588)4164199-1 gnd |
topic_facet | Marine Toxins, Freshwater Toxins, Drinking Water Safety, Food and Feedstock, Climate Change Wasserblüte Toxizität Klimaänderung Aufsatzsammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027722309&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT botanaluism climatechangeandmarineandfreshwatertoxins |