Genetic structure and local adaptation in natural insect populations: effects of ecology, life history, and behavior
Gespeichert in:
Format: | Buch |
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Sprache: | English |
Veröffentlicht: |
New York [u.a.]
Chapman & Hall [u.a.]
1998
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIX, 449 S. Ill., graph. Darst, Kt. |
ISBN: | 0412080311 |
Internformat
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245 | 1 | 0 | |a Genetic structure and local adaptation in natural insect populations |b effects of ecology, life history, and behavior |c ed. by Susan Mopper ... |
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Datensatz im Suchindex
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adam_text | Effects of Ecology
Life History, and Behavior
Edi ted by
Susan Mopper
Department of Biology
University of Southwestern Louisiana
Lafayette, LA
Sharon Y Strauss
Section of Evolution and Ecology
University of California, Davis
Davis, CA
CHAPMAN amp; HALL
INTERNATIONAL THOMSON PUBLISHING
Thomson Science
NewVbtk • Albany • Bonn • Boston • Cincinnati • Detroit
London • Madrid • Melbourne • Mexico City • Pacific Grove
Paris • San Francisco • Singapore • Tokyo • Toronto • Washington
Contents
Preface xiii
Acknowledgments xv
Contributors xvii
Part I Local Adaptation: Empirical Evidence from Case Studies
1 Population Structure and the Conundrum of Local Adaptation
Don Alstad
1 1 Introduction 3
1 2 Background 3
1 3 Hypotheses 4
1 4 Transfer Experiments 5
1 5 Scale Insect Population Biology 7
1 6Allozyme Studies of Population Genetic Structure 12
1 7 Discussion 16
1 8 References 18
2 Deme Formation in a Dispersive Gall-Forming Midge
Peter Stiling and Anthony M Rossi
2 1 Introduction 22
2 2 Methods 25
2 3 Results 27
2 4 Discussion 30
2 5 Summary 34
2 6 References 34
VI CONTENTS
3 Prevention of Deme Formation by the Pinyon Needle Scale: Problems
of Specializing in a Dynamic System
Neil S Cobb and Thomas G Whitham
3 1 Introduction 37
3 2 Pinyon-Scale System and Sampling Methods 38
321 Sampling of Scales 39
3 3 Experimental Tests of the Deme Formation Hypothesis 40
331 Scale Performance On Natal and Novel Trees 40
332 Peformance of Incipient and Established Scale
Populations 41
3 4 Potential Mechanisms That Prevent Deme Formation 44
3 5 Changing Sex Ratios in Scale Populations: Effect on Gene Flow
among Scale Populations 46
351 Density-Dependent Larval Emigration Promotes Gene Flow 50
352 Catastrophes That Hinder Deme Formation 52
353 Short-Term Differential Mortality 53
354 Long-Term Differential Selection-Developmental Immunity 56
3 6 Summary 56
3 7 References 60
4 Local Adaptation in Specialist Herbivores: Theory and Evidence
William J Boecklen and Susan Mopper
4 1 Introduction 64
4 2 The Theory of Adaptive Deme Formation 65
421 The Adaptive Deme Formation Hypothesis 66
4 3 Corollaries to the Adaptive Deme Formation Hypothesis 67
4 4 Experimental Evidence of Adaptive Deme Formation 68
441 Problems with Power 70
442 Correlative Evidence 74
4 5 Testing the Adaptive Deme Formation Hypothesis 75
451 Defining the Question 75
452 The Essential Conditions 76
453 Testing the Hypothesis 77
4 6 Conclusion 84
4 7 References 85
Part II Foundations of Local Adaptation: The Genetic Basis of Host-Plant Use
and the Nature of Selection
5 Population-Level Adaptation to Host-Plant Chemicals: The Role
of Cytochrome P450 Monooxygenases
May R Berenbaum and Arthur R Zangerl
5 7 Introduction 91
5 2 Mechanisms of Resistance to Plant Allelochemicals 92
CONTENTS vii
5 5 Cytochrome P450 Monooxygenases and Detoxification of Plant
Chemicals 94
5 4 Genetic Variation in Insect P450-Mediated Detoxification
and Possible Importance in Local Adaptation to Allelochemicals 98
5 5 Scenario for P450-Mediated Local Adaptation to Allelo-
chemicals 102
5 6 Conclusions 108
5 7 References 108
6 Assessment of Genetic Variation in the Presence of Maternal or Paternal
Effects in Herbivorous Insects
MaryCarol Rossiter
6 1 Introduction 113
6 2 Impact of Inherited Environmental Effects on Phenotypic
Variation 114
621 Cross-Generational Genetic Covariance 118
6 3 The Position of Inherited Environmental Effects in Quantitative
Genetics Models 119
6 4 Impact of Parental Effects on Quantitative Genetic Analysis 122
641 yEcV Type I Parental Effects Increase Family
Resemblance 122
642 V^ ,, Type II Parental Effect: Decrease Family
Resemblance 122
643 covGmG amp; Cross-Generational Genetic
Correlation: + or — 123
6 5 Quantitative Genetics Studies Involving Variable Environments 126
6 6 What to Do about Inherited Environmental Effects 127
661 Minimizing the Influence of Inherited Environmental Effects 127
662 Characterizing the Influence of Inherited Environmental
Effects 128
6 7 Closing Remarks 130
6 8 References 134
7 Local Adaptation and Stochastic Events in an Oak Leafminer Population
Susan Mopper
7 1 Introduction 139
7 2 Natural History and Experimental Methods 141
7 3 Spatial and Temporal Variation in the Leafminer Population 142
731 Density 142
732 Plant Phenology 142
733 Stochastic Events 144
7 4 Local Adaptation 146
741 Agents of Selection for Local Adaptation 147
742 Local Adaptation and Spatial Variation 148
Vlll CONTENTS
7 5 Conclusion 149
7 6 References 151
8 The Strength of Selection: Intraspecific Variation in Host-Plant Quality
and the Fitness of Herbivores
Sharon Y Strauss and Richard Karban
8 1 Introduction 156
8 2 Estimating the Strength of Selection Imposed by Intraspecific
Variation in Host-Plant Quality on Herbivorous Insects 159
8 3 Gene Flow and the Coefficient of Selection 161
8 4 How Does the Magnitude of Fitness Differences Caused
by Nongenetic Parental Effects Compare to That Attributable
to Genetic Traits? 163
8 5 In Populations Where We Find Local Adaptation, is the Natal Insect
Line Always the Best Performing Line? 165
851 Low Dispersal Limits Sampling of Best Plant Phenotype-Insect
Genotype Combinations 167
852 History of Individual Infestations 167
853 Oviposition Preferences of Females Limits Sampling of All Insect
Genotype-Plant Genotype Combinations 167
854 Alleles at Loci That are Effectively Neutral with Respect to Use
of Some Host Individuals Could Confer High Fitness on Other
Host Plants 167
855 Selection Imposed by Natural Enemies Is as Important as
Performance on Plants 168
856 Other Plant Attributes, Such as Plant Phenology, Are Important
to Local Adaptation 168
8 6 How Does the Magnitude of the Coefficient of Selection Differ in
Studies of Intraspecific Variation in Host Plants versus Interspecific
Variation? 169
8 7 Conclusions 172
8 8 References 174
Part III Life History, Behavior, and Genetic Structure
9 Intrademic Genetic Structure and Natural Selection in Insects
David E McCauley and Peter W Goff
9 1 Introduction 181
9 2 Intrademic versus Interdemic Structure: Patches to Populations 182
921 Statistical Measures of Genetic Structure 182
922 The Natural History of Group Formation 187
923 Hierarchical Analysis of Natural Populations of Insects 190
CONTENTS l v
9 3 Genetic Structure and Selection 192
931 Theory: Models of Population-Structure-Dependent
Selection 192
932 Reality: How Do Ecological Interactions Determine Fitness
in Nature? 195
9 4 Conclusion 199
9 5 References 200
10 Social Behavior and Its Effects on Colony- and Microgeographic Genetic
Structure in Phytophagous Insect Populations
James T Costa
10 1 Introduction 205
10 2 Inbreeding and Relatedness Coefficients: Different Questions for
Different Spatial Scales 206
10 3 Insect Sociality 209
10 4 Life History and Ecology of Herbivorous Social Insects 211
10 4 1 Aphid Societies 211
10 4 2 Thrips Societies 213
10 4 3 Caterpillar Societies 213
10 4 4 Sawfly Societies 213
10 5 Determinants of Genetic Structure at Microgeographic and Colony
Scales 214
10 5 1 Microgeographic (Host Plant-Level) Structure: Setting the Stage
for Colony Dynamics 214
10 5 2 Colony Structure: Spatial and Temporal Patterns 217
10 6 Spatial and Temporal Population Genetic Dynamics: Patterns
and Implications 226
10 7 References 230
11 Dispersal and Adaptive Deme Formation in Sedentary Coccoid
Insects
Lawrence M Hanks and Robert F Denno
11 1 Introduction 239
11 2 Natural History of Coccoid Insects 240
11 3 Dispersal, Behavior, and Capability 240
11 3 1 First-Instar Crawlers 242
11 3 2 Second Instar to Adult Females 249
11 3 3 Second Instar to Adult Males 250
11 4 Dispersal and Deme Formation 250
11 5 Testing the Demic Adaptation Hypothesis 251
11 6 Discussion 253
11 7 References 254
CONTENTS
12 Life-History Strategies and the Genetic Structure of Phytophagous Insect
Populations
Merrill A Peterson and Robert F Denno
12 1 Introduction 263
12 1 1 Gene Flow and the Spatial Scale of Local Adaptation 263
12 1 2 Factors Potentially Influencing Gene Flow among Insect
Populations 263
12 1 3 Measuring Gene Flow among Populations 265
12 1 4 Tests of the Hypotheses 267
12 2 Methods 270
12 2 1 The Data Set 270
12 2 2 Phylogenetic Independence and the Comparative
Approach 297
12 2 3 Analyses 298
12 3 Results 299
12 3 1 Dispersal Ability 299
12 3 2 Host-Plant Growth Form 299
12 3 3 Host Range 301
12 3 4 Principle Habitat 301
12 3 5 Residence Status 303
12 3 6 Autocorrelation of Factors 303
12 4 Discussion 304
12 4 1 Life History and Local Adaptation 305
12 5 References 307
Part IV Local Adaptation, Host-Race Formation, and Speciation
13 Differential Adaptation in Spatially Heterogeneous Environments
and Host-Parasite Coevolution
Sylvain Gandon, Dieter Ebert, Isabelle Olivieri, and Yannis Michalakis
13 1 Introduction 325
13 2 Local Adaptation and Dispersal 326
13 2 1 Evolution of Dispersal 326
13 2 2 What Selects Against Dispersal? 326
13 2 3 What Selects for Dispersal? 327
13 2 4 Local Adaptation and Dispersal 327
13 2 5 Conventional Wisdom: Negative Correlation between Dispersal
and Local Adaptation 32 7
13 2 6 Positive Correlation between Dispersal and Local
Adaptation 329
13 3 Recombination and Local Adaptation 333
13 3 1 Recombination and the Red Queen Hypothesis 333
13 3 2 Recombination and Dispersal 334
CONTENTS XI
13 4 Local Adaptation and Experimental Design 336
13 4 1 Transplant Experiments 336
13 4 2 What Should Be Measured? 337
13 5 Conclusion 338
13 6 References 340
14 Scale-Dependent Evolution of Specialization in a Checkerspot Butterfly:
From Individuals to Metapopulations and Ecotypes
Chris D Thomas and Michael C Singer
14 1 Introduction 343
14 2 Life Cycle o/Euphydryas editha 344
14 3 Individuals and Resource Patches 345
14 3 1 Specialists, Generalists, and Resource Use 345
14 3 2 Several Specialists 350
14 3 3 Host-Associated Fitness Variation within Populations 352
14 4 Local Populations in Metapopulations 353
14 5 Divergence between Populations 358
14 6 Host Races or Ecotypes? 360
14 7 The Hierarchy of Diet Pattern 361
14 8 Maintenance of Behavioral Variation 361
14 8 1 Preference-Performance Correlations 364
14 9 A Model for Euphydryas editha Diet Evolution 366
14 10 The Scale of Diet Differentiation and Speciation 369
14 11 References 370
15 Factors Affecting Gene How between the Host Races of Eurosta
solidaginis
Joanne K Itami, Timothy P Craig, and John D Horner
75 7 Introduction 375
15 1 1 Speciation Models and the Evolution of Reproductive
Isolation 375
15 1 2 Host-Plant Variation, Environmental Variation,
and Gene Flow 377
15 1 3 Insect Variation and Gene Flow 380
15 1 4 The Eurosta-Solidago System 381
15 2 Factors Influencing Gene Flow in Eurosta 381
15 2 1 Prezygotic Isolation 381
15 2 2 Postzygotic Isolation 388
15 3 Gene Flow between Populations o/Eurosta solidaginis 590
75 5 7 Direct and Indirect Methods of Measuring Gene Flow 390
15 3 2 Variation between Populations in South-Central Minnesota 391
15 3 3 Large-Scale Geographic Patterns of Variation 396
15 4 Reproductive Isolation of Populations 398
15 4 1 Eurosta solidaginis in South-Central Minnesota 398
Xll CONTENTS
15 4 2 Variation in the Status of the Host-Associated Populations
in Other Regions and Times 400
15 5 Mode of Host-Race Formation 401
15 6 Summary 403
15 7 References 404
16 Sympatric Host-Race Formation and Speciation in Rhagoletis (Diptera:
Tephritidae): A Tale of Two Species for Charles D
Jeffrey L Feder, Stewart H Berlocher, and Susan B Opp
75 7 It Was the Best of Hosts, It Was the Worst of Hosts? 408
16 2 The Principles: The Apple Fly and the Blueberry Maggot 409
16 3 The Life Cycle of Apple and Blueberry Maggot Flies 411
16 4 A Model for Sympatric Host-Race Formation in R pomonella:
The Wine Shop 412
16 5 Evidence Required to Support Sympatric Race Formation and
Speciation in Rhagoletis 414
16 6 Patterns of Genetic Differentiation in R pomonella 415
16 7 Host Fidelity in R pomonella Races: Evidence from Mark and
Recapture Studies 421
16 7 1 The Field Release Experiment 422
16 7 2 Host Switch Experiment 422
16 7 3 The Net Release Experiment 424
16 7 4 Take-Home Messages from the Mark and Recapture Studies
at the Grant Site 424
16 8 Negative Genetic Trade-Off in the R pomonella Host Races: Still
Knitting 426
16 9 Patterns of Genetic Differentiation in R mendax 428
16 10 Field Studies of Host Fidelity Involving R mendax 429
16 11 Fitness Trade-Offs in the Blueberry Maggot 431
16 12 A Synopsis and Synthesis of the Data: The Knitting Done or Just
Begun? 432
16 13 References 434
Index 443
|
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dewey-search | 595.7/135 |
dewey-sort | 3595.7 3135 |
dewey-tens | 590 - Animals |
discipline | Biologie |
format | Book |
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publisher | Chapman & Hall [u.a.] |
record_format | marc |
spelling | Genetic structure and local adaptation in natural insect populations effects of ecology, life history, and behavior ed. by Susan Mopper ... New York [u.a.] Chapman & Hall [u.a.] 1998 XIX, 449 S. Ill., graph. Darst, Kt. txt rdacontent n rdamedia nc rdacarrier Adaptatie (fysiologie, biologie) gtt Fytofage insecten gtt Genetica gtt Insectes - Populations Insectes - Populations ram Insectes nuisibles - Adaptation ram Insectes nuisibles - Génétique ram Phytophages (Insectes) - Adaptation Phytophages (Insectes) - Génétique Populaties (biologie) gtt Insect populations Phytophagous insects Adaptation Phytophagous insects Genetics Pflanzenfressende Insekten (DE-588)4195374-5 gnd rswk-swf Populationsgenetik (DE-588)4046804-5 gnd rswk-swf Insekten (DE-588)4027110-9 gnd rswk-swf Insekten (DE-588)4027110-9 s Populationsgenetik (DE-588)4046804-5 s DE-604 Pflanzenfressende Insekten (DE-588)4195374-5 s Mopper, Susan Sonstige oth HEBIS Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007954677&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Genetic structure and local adaptation in natural insect populations effects of ecology, life history, and behavior Adaptatie (fysiologie, biologie) gtt Fytofage insecten gtt Genetica gtt Insectes - Populations Insectes - Populations ram Insectes nuisibles - Adaptation ram Insectes nuisibles - Génétique ram Phytophages (Insectes) - Adaptation Phytophages (Insectes) - Génétique Populaties (biologie) gtt Insect populations Phytophagous insects Adaptation Phytophagous insects Genetics Pflanzenfressende Insekten (DE-588)4195374-5 gnd Populationsgenetik (DE-588)4046804-5 gnd Insekten (DE-588)4027110-9 gnd |
subject_GND | (DE-588)4195374-5 (DE-588)4046804-5 (DE-588)4027110-9 |
title | Genetic structure and local adaptation in natural insect populations effects of ecology, life history, and behavior |
title_auth | Genetic structure and local adaptation in natural insect populations effects of ecology, life history, and behavior |
title_exact_search | Genetic structure and local adaptation in natural insect populations effects of ecology, life history, and behavior |
title_full | Genetic structure and local adaptation in natural insect populations effects of ecology, life history, and behavior ed. by Susan Mopper ... |
title_fullStr | Genetic structure and local adaptation in natural insect populations effects of ecology, life history, and behavior ed. by Susan Mopper ... |
title_full_unstemmed | Genetic structure and local adaptation in natural insect populations effects of ecology, life history, and behavior ed. by Susan Mopper ... |
title_short | Genetic structure and local adaptation in natural insect populations |
title_sort | genetic structure and local adaptation in natural insect populations effects of ecology life history and behavior |
title_sub | effects of ecology, life history, and behavior |
topic | Adaptatie (fysiologie, biologie) gtt Fytofage insecten gtt Genetica gtt Insectes - Populations Insectes - Populations ram Insectes nuisibles - Adaptation ram Insectes nuisibles - Génétique ram Phytophages (Insectes) - Adaptation Phytophages (Insectes) - Génétique Populaties (biologie) gtt Insect populations Phytophagous insects Adaptation Phytophagous insects Genetics Pflanzenfressende Insekten (DE-588)4195374-5 gnd Populationsgenetik (DE-588)4046804-5 gnd Insekten (DE-588)4027110-9 gnd |
topic_facet | Adaptatie (fysiologie, biologie) Fytofage insecten Genetica Insectes - Populations Insectes nuisibles - Adaptation Insectes nuisibles - Génétique Phytophages (Insectes) - Adaptation Phytophages (Insectes) - Génétique Populaties (biologie) Insect populations Phytophagous insects Adaptation Phytophagous insects Genetics Pflanzenfressende Insekten Populationsgenetik Insekten |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007954677&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT moppersusan geneticstructureandlocaladaptationinnaturalinsectpopulationseffectsofecologylifehistoryandbehavior |