The biology of rocky shores:
Gespeichert in:
Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Oxford [u.a.]
Oxford Univ. Press
2010
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Ausgabe: | 2. ed. |
Schriftenreihe: | The biology of habitats series
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIII, 356 S. Ill., graph. Darst., Kt. |
ISBN: | 9780198564904 9780198564911 |
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245 | 1 | 0 | |a The biology of rocky shores |c Colin Little, Gray A. Williams, Cynthia D. Trowbridge |
250 | |a 2. ed. | ||
264 | 1 | |a Oxford [u.a.] |b Oxford Univ. Press |c 2010 | |
300 | |a XIII, 356 S. |b Ill., graph. Darst., Kt. | ||
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Datensatz im Suchindex
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adam_text | Contents
1 The shore environment 1
1.1 Coastlines: from rocky shores to mangrove swamps 1
1.2 Rocky shores: from waveswept cliffs to sheltered sea loughs 2
1.3 Variations in conditions with height: the generation of
a vertical gradient 5
1.3.1 Tides and changing conditions: emersion’ and
‘submersion 5
1.3.2 Daily tidal patterns: the ‘classic’ case 7
1.3.3 Daily tidal patterns: variations with latitude and
tidal basins 8
1.3.4 Variations in tides over the lunar month 8
1.3.5 Variations in tides over the seasons 9
1.3.6 Tidal predictions and tidal terminology 10
1.3.7 Effects on biological communities 11
1.4 How important is wave action? The generation of a
horizontal gradient 13
1.4.1 Waves and what is meant by exposure’ 14
1.4.2 Variation in exposure: rates of water flow, acceleration
forces, and wave impact 14
1.4.3 Variation in exposure: seasons and pulse events 15
1.4.4 Effects on biological communities 16
2 The diversity of shore organisms 17
2.1 Biodiversity: what lives on the shore? 17
2.1.1 The variety of rocky shore organisms 17
2.1.2 Latitudinal changes 19
2.1.3 The concept of functional groups 20
2.2 Primary producers 22
2.2.1 Microscopic forms: the microalgae 22
2.2.2 Simple forms: filamentous, foliose, and corticated
folio se algae 23
2.2.3 Complex forms: the corticated, leathery, and
calcareous algae 24
2.2.4 Encrusting forms: the crustose algae 24
2.3 Grazers 25
2.3.1 The sweepers: topshells and nerites 25
2.3.2 The rakers: winkles, isopods, amphipods, and
grapsid crabs 26
2.3.3 The diggers and abraders: limpets, chitons, and
sea urchins 27
2.3.4 The biters and cutters: fish and majid crabs 29
2.4 Suspension feeders 30
2.4.1 The individual approach: mussels, barnacles, and
solitary ascidians 30
2.4.2 The colonial approach: polychaetes, bryozoans,
sponges, and ascidians 31
2.5 Predators 32
2.5.1 Borers and drillers: the whelks 33
2.5.2 Crushers and crackers: the crabs 33
2.5.3 External digesters: the starfish 34
2.5.4 Animal browsers or partial predators: the nudibranch
molluscs 35
2.5.5 Mobile vertebrate predators: fish and birds 36
2.5.6 Sit and wait: the hydroids and anemones 36
2.5.7 Parasites: internal and external approaches 37
2.6 Functional groups around the world 37
3 Coping with life on the shore: adaptations of
littoral organisms 38
3.1 How do rocky shore organisms cope with temperature
changes and desiccation? 38
3.1.1 Behavioural adaptations: settlement, hiding, and
migration 38
3.1.2 Physical adaptations: the advantages of shells 41
3.1.3 Physiological adaptations: how to combat water loss
while still breathing 43
3.1.4 Biochemical adaptations: desiccation tolerance, cold
hardening, and heat stress 44
3.2 How do rocky shore organisms cope with waves and currents? 47
3.2.1 Behavioural adaptations: hiding and living in the
boundary layer 48
3.2.2 Physical adaptations: attachment, shape, and size 50
3.2.3 Physiological adaptations: growth strategies and
life cycles 54
3.3 How do rocky shore organisms maintain their populations?
An introduction to life-history strategies 55
3.3.1 Solitary vs. colonial forms 55
3.3.2 Reproductive types: sexual and asexual reproduction on
the shore 56
3.3.3 Benthic vs. pelagic life cycles 57
3.3.4 Supply-side ecology and links with oceanographic
processes 60
3.3.5 Recruitment 61
3.4 Reproductive strategies of producers 62
3.4.1 Sex, gametes, and pheromones 62
3.4.2 How many life-history phases: one, two, or three? 63
3.4.3 Strict cycling vs. variants 65
3.4.4 Microalgal reproduction 65
3.5 Reproductive strategies of consumers 66
3.5.1 Available options: a reproductive mosaic 66
3.5.2 Sex: males, females, or hermaphrodites? 67
3.5.3 External vs. internal fertilization, and the compromise
options 67
3.5.4 Planktonic larvae: to feed or not to feed? 69
3.5.5 Eliminating the larval stage: benthic eggs and direct
development 71
3.5.6 Parental care: brooding eggs or brooding larvae? 71
3.5.7 An alternative strategy: asexual reproduction 73
4 Primary producers on the shore: the autotrophs 75
4.1 Universality of autotrophs on rocky shores 75
4.1.1 Diversity of autotrophs 75
4.1.2 Diversity of forms 76
4.2 Distributions 81
4.2.1 Temperate vs. tropical 81
4.2.2 Local: sheltered vs. exposed 84
4.2.3 What controls small-scale spatial distribution? 86
4.2.4 Succession: what controls distribution in time? 89
4.3 Autotrophs as habitats 90
4.3.1 Macroalgae as forest equivalents: the importance of
the canopy 90
4.3.2 Epiphytes 92
4.4 Autotrophic production 93
4.5 Autotrophs as food sources 95
4.5.1 Food quality and quantity 95
4.5.2 Macroalgae: chemical and physical defences against
grazers 95
4.5.3 Microalgae and cyanobacteria 99
4.5.4 Breakdown: autotrophs as sources of detritus 100
5 Utilizing autotrophic resources: the grazers 102
5.1 Grazers and their food supply 102
5.1.1 Feeding mechanisms 102
5.1.2 Finding a food supply: grazer-algae relationships 106
5.1.3 Culturing a food supply: how to garden 109
5.2 Behaviour of grazers 110
5.2.1 Finding your own level 110
5.2.2 When to forage 111
5.2.3 How to avoid predators 1 114
5.2.4 How to get home 116
5.3 What controls distribution and population density of grazers? 118
5.3.1 Fecundity, recruitment, and growth 118
5.3.2 Effects of physical stress 120
5.3.3 Biological interactions 121
5.4 The effects of grazers 125
5.4.1 Macrograzers 125
5.4.2 Mesograzers 130
6 Suspension feeders: how to live on floating food 134
6.1 Occupying space 134
6.1.1 Spatial dominance on the shore 134
6.2 The problems of sitting still: how to be sessile 135
6.2.1 Feeding in relation to water flow 135
6.2.2 The variety of suspension-feeding mechanisms 137
6.3 Getting nourishment: a variety of food supplies 138
6.4 From larva to adult 139
6.4.1 Settling on hard substrates 139
6.4.2 Settlement on seaweeds 141
6.4.3 Metamorphosis, survival, and growth 143
6.5 What controls distribution and density of suspension feeders? 147
6.5.1 Recruitment and post-settlement mortality 147
6.5.2 Environmental effects on adults 149
6.5.3 Distribution and climate 150
6.5.4 Effects of predators 152
6.5.5 Anti-predator defences 154
6.5.6 Effects of competition 155
6.5.7 Effects of habitat modification and facilitation 157
6.5.8 Interactions between physical and biological effects 157
6.6 The effects of suspension feeders 159
7 Eating flesh: the predators 161
7.1 Food and feeding
161
7.1.1 Feeding mechanisms: a diversity of invertebrates 161
7.1.2 Feeding mechanisms: the mobile vertebrates 164
7.1.3 Foraging strategy 167
7.1.4 The parasitic approach and disease 170
7.2 Behaviour 171
7.2.1 Movement 171
7.2.2 Activity patterns 172
7.2.3 Defence 173
7.2.4 Aggressive behaviour in sessile predators 175
7.3 What controls population density, distribution, and
morphology of predators? 177
7.3.1 Recruitment 177
7.3.2 Physical influences and predation effects 178
7.3.3 Direct effects of predators on predators 180
7.4 The effects of predators 180
7.4.1 Slow-moving predators: whelks and starfish 180
7.4.2 Mobile predators: crabs and vertebrates 183
7.4.3 Predators of sea urchins 185
7.4.4 Effects of parasites and disease 186
8 Vertical distributions: zonation and its causes 187
8.1 Patterns of vertical zonation 187
8.1.1 Exposed shores 187
8.1.2 Sheltered shores 190
8.1.3 Moderately exposed shores 190
8.1.4 How real are ‘zones’? 191
8.2 The influence of physical factors on vertical distributions 194
8.2.1 Direct physical effects 194
8.2.2 Is there a physical basis for ‘zones’? 197
8.3 The influences of biological interactions on zonation 198
8.3.1 Larval settlement and post-settlement mortality 198
8.3.2 Competition 200
8.3.3 Predation 201
8.3.4 Grazing 202
8.3.5 Behaviour 203
8.4 What causes zonation? The relative influences of biological
and physical factors 204
Չ How organisms are gathered together: communities
on the shore and the effects of wave exposure 207
9.1 Communities in relation to wave exposure 207
9.1.1 The composition of communities 207
9.1.2 The vertical range of communities 212
9.2 Explanations of the effects of wave exposure 213
9.2.1 The importance of wave forces 213
9.2.2 The importance of interactions between species 216
9.2.3 Conclusions: why are communities on exposed and
sheltered shores different? 218
9.3 Factors other than exposure: the communities of
special habitats 220
9.3.1 Tidal rapids and the effects of turbulent currents 220
9.3.2 Tide pools and the effects of constant submersion 223
9.3.3 Sea caves and the effects of reduced illumination 226
9.3.4 Estuarine shores and the effects of reduced salinity 227
10 The functioning of rocky-shore communities 232
10.1 Food chains and food webs 232
10.2 Stability on the shore 235
10.2.1 Sheltered shores 235
10.2.2 Exposed shores 236
10.2.3 Moderately exposed shores 237
10.2.4 Conclusion: the causes of instability 238
10.3 Disturbance and succession: mosaics on the shore 238
10.3.1 Disturbance on boulder shores 239
10.3.2 Disturbance on exposed rocky shores 242
10.3.3 The mosaic-cycle concept 242
10.4 Community structure: the influence of competition and
facilitation 243
10.4.1 Interspecific competition 243
10.4.2 Intraspecific competition 245
10.4.3 Facilitation 245
10.4.4 Aggression 247
10.4.5 Conclusion: how important is competition? 247
10.5 The influence of recruitment: supply-side ecology 248
10.5.1 Planktonic stages 248
10.5.2 Settlement and recruitment on the shore 250
10.6 Community structure: the influence of grazing 251
10.7 Community structure: the influence of parasites
and predators 252
10.7.1 Do parasites affect the community? 253
10.7.2 Predation as a dominant force 253
10.7.3 When is predation not the dominant force? 255
10.8 Integrating biological and physical factors:
environmental stress models 256
10.9 How important are individual species? Foundation species,
dominant grazers, and keystone species 258
10.9.1 Foundation species 258
10.9.2 Dominant grazers 259
10.9.3 Keystone species: the importance of predators 260
10.9.4 The importance of multi-species interactions 262
10.10 ‘Top-down’ and ‘bottom-up’ factors 265
10.11 Expanding scales: putting rocky shores into context 267
10.11.1 Interactions with subtidal and terrestrial ecosystems 267
10.11.2 From small scales to meso-scales and large scales 268
11 Human influences on rocky shores 270
11.1 Pollution and its effects 270
11.1.1 Acute accidental pollutant effects 270
11.1.2 Chronic pollution 272
11.1.3 Detection and monitoring 273
11.1.4 Eutrophication 275
11.1.5 Responses to pollution 276
11.2 Other human effects on community structure 278
11.2.1 The influence of invading or ‘alien species 278
11.2.2 Physical disturbance and trampling on the shore 282
11.2.3 Fisheries exploitation and by-catch 283
11.3 Community effects of climate change 285
11.3.1 Effects of El Nino 285
11.3.2 Effects of global warming 287
11.4 Conservation 288
11.4.1 Approaches to marine conservation 289
11.4.2 Marine protected areas 290
11.4.3 Marine protected areas—are they effective? 294
12 Methods and experimental approaches 297
12.1 Shore topography and the problems of physical surveys 297
12.1.1 Measuring the vertical tidal gradient 297
12.1.2 Measuring the horizontal wave-exposure gradient 300
12.2 Making quantitative observations: the search for pattern 302
12.2.1 Measuring abundance—qualitative methods 302
12.2.2 Measuring abundance—quantitative methods 303
12.2.3 Replicates and pseudoreplicates 306
12.3 Experimental designs: the search for processes 308
Appendix: Name Changes of Ecologically Important Taxa 315
Further reading 317
References 319
Index 345
|
any_adam_object | 1 |
author | Little, Colin Williams, Gray A. Trowbridge, Cynthia D. |
author_facet | Little, Colin Williams, Gray A. Trowbridge, Cynthia D. |
author_role | aut aut aut |
author_sort | Little, Colin |
author_variant | c l cl g a w ga gaw c d t cd cdt |
building | Verbundindex |
bvnumber | BV025603073 |
classification_rvk | RB 10525 WI 4600 |
ctrlnum | (OCoLC)729923923 (DE-599)BVBBV025603073 |
discipline | Biologie Geographie |
edition | 2. ed. |
format | Book |
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id | DE-604.BV025603073 |
illustrated | Illustrated |
indexdate | 2024-07-09T22:37:19Z |
institution | BVB |
isbn | 9780198564904 9780198564911 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-020198314 |
oclc_num | 729923923 |
open_access_boolean | |
owner | DE-11 DE-19 DE-BY-UBM DE-384 |
owner_facet | DE-11 DE-19 DE-BY-UBM DE-384 |
physical | XIII, 356 S. Ill., graph. Darst., Kt. |
publishDate | 2010 |
publishDateSearch | 2010 |
publishDateSort | 2010 |
publisher | Oxford Univ. Press |
record_format | marc |
series2 | The biology of habitats series |
spelling | Little, Colin Verfasser aut The biology of rocky shores Colin Little, Gray A. Williams, Cynthia D. Trowbridge 2. ed. Oxford [u.a.] Oxford Univ. Press 2010 XIII, 356 S. Ill., graph. Darst., Kt. txt rdacontent n rdamedia nc rdacarrier The biology of habitats series Ökologie (DE-588)4043207-5 gnd rswk-swf Küstentiere (DE-588)4033483-1 gnd rswk-swf Küste (DE-588)4033469-7 gnd rswk-swf Felsküste (DE-588)4264054-4 gnd rswk-swf Biologie (DE-588)4006851-1 gnd rswk-swf Ökosystem (DE-588)4043216-6 gnd rswk-swf Küstenpflanzen (DE-588)4033477-6 gnd rswk-swf Felsküste (DE-588)4264054-4 s Biologie (DE-588)4006851-1 s DE-604 Ökologie (DE-588)4043207-5 s Küste (DE-588)4033469-7 s 1\p DE-604 Küstentiere (DE-588)4033483-1 s 2\p DE-604 Küstenpflanzen (DE-588)4033477-6 s 3\p DE-604 Ökosystem (DE-588)4043216-6 s 4\p DE-604 5\p DE-604 Williams, Gray A. Verfasser aut Trowbridge, Cynthia D. Verfasser aut Digitalisierung UB Augsburg - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020198314&sequence=000002&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 4\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 5\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Little, Colin Williams, Gray A. Trowbridge, Cynthia D. The biology of rocky shores Ökologie (DE-588)4043207-5 gnd Küstentiere (DE-588)4033483-1 gnd Küste (DE-588)4033469-7 gnd Felsküste (DE-588)4264054-4 gnd Biologie (DE-588)4006851-1 gnd Ökosystem (DE-588)4043216-6 gnd Küstenpflanzen (DE-588)4033477-6 gnd |
subject_GND | (DE-588)4043207-5 (DE-588)4033483-1 (DE-588)4033469-7 (DE-588)4264054-4 (DE-588)4006851-1 (DE-588)4043216-6 (DE-588)4033477-6 |
title | The biology of rocky shores |
title_auth | The biology of rocky shores |
title_exact_search | The biology of rocky shores |
title_full | The biology of rocky shores Colin Little, Gray A. Williams, Cynthia D. Trowbridge |
title_fullStr | The biology of rocky shores Colin Little, Gray A. Williams, Cynthia D. Trowbridge |
title_full_unstemmed | The biology of rocky shores Colin Little, Gray A. Williams, Cynthia D. Trowbridge |
title_short | The biology of rocky shores |
title_sort | the biology of rocky shores |
topic | Ökologie (DE-588)4043207-5 gnd Küstentiere (DE-588)4033483-1 gnd Küste (DE-588)4033469-7 gnd Felsküste (DE-588)4264054-4 gnd Biologie (DE-588)4006851-1 gnd Ökosystem (DE-588)4043216-6 gnd Küstenpflanzen (DE-588)4033477-6 gnd |
topic_facet | Ökologie Küstentiere Küste Felsküste Biologie Ökosystem Küstenpflanzen |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=020198314&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT littlecolin thebiologyofrockyshores AT williamsgraya thebiologyofrockyshores AT trowbridgecynthiad thebiologyofrockyshores |