Introduction to conservation genetics:
Gespeichert in:
Hauptverfasser: | , , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Cambridge [u.a.]
Cambridge Univ. Press
2010
|
Ausgabe: | 2. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Hier auch später erschienene, unveränderte Nachdrucke Includes bibliographical references and index |
Beschreibung: | XXIII, 618 S. Ill., graph. Darst., Kt. 25 cm |
ISBN: | 9780521878470 0521878470 9780521702713 0521702712 |
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250 | |a 2. ed. | ||
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Datensatz im Suchindex
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adam_text |
Contents
Preface
to the second edition page
xiii
Preface
xv
Copyright acknowledgments
xxii
Chapter I Introduction l
The 'sixth extinction'
2
Why conserve biodiversity?
2
Endangered and extinct species
3
What is an endangered species?
5
What causes extinctions?
7
Recognition of genetic factors in conservation biology
7
What is conservation genetics?
8
Examples of the use of genetics to aid conservation
10
Genetic management of threatened species
13
Methodology in conservation genetics
15
Sources of information
15
Summary
16
General bibliography
16
Problems
17
Practical exercises: categorizing endangerment of species
18
Chapter
2
I Genetics and extinction
19
Genetics and the fate of endangered species
20
Relationship between inbreeding and extinction
22
Relationship between loss of genetic diversity and extinction
28
Summary
33
Further reading
34
Software
34
Problems
34
Practical exercises: computer projections
34
SECTION I | EVOLUTIONARY GENETICS
39
I OF NATURAL POPULATIONS
Chapter
3
I Genetic diversity
41
Importance of genetic diversity
42
What is genetic diversity?
43
Measuring genetic diversity
46
Extent of genetic diversity
56
Low genetic diversity in threatened species and bottlenecked
populations
61
CONTENTS
Variation
over space and time
62
Genetic differences among species
63
Summary
64
Further reading
64
Software
64
Problems
65
Practical exercise: Measuring genetic diversity using
microsatellites
65
Chapter
4
Characterizing genetic diversity: single loci
66
Describing genetic diversity
67
Frequencies of
alíeles
and genotypes
67
Hardy-Weinberg equilibrium
69
Expected heterozygosity
72
Deviations from Hardy-Weinberg equilibrium
78
Extensions of the Hardy-Weinberg equilibrium
79
More than one locus: linkage disequilibrium
83
Summary
86
Further reading
87
Software
87
Problems
87
Chapter
5
Characterizing genetic diversity:
90
quantitative variation
Importance of quantitative characters
91
Properties of quantitative characters
92
Basis of quantitative genetic variation
94
Methods for detecting quantitative genetic variation
94
Partitioning genetic and environmental variation
96
Partitioning of quantitative genetic variation
97
Evolutionary potential, additive variation and heritability
99
Dominance variance (VD)
108
Measuring genetic changes over time
109
Correlations between molecular and quantitative
genetic variation
110
Genotype
χ
environment interaction
110
Summary
112
Further reading
112
Software
112
Problems
113
Chapter
6
Evolutionary impacts of natural selection
115
in large populations
The need to evolve
116
Factors controlling the evolution of populations
119
Selection
121
Selection on
quantitative characters
133
CONTENTS
Summary
136
Further reading
137
Software
137
Problems
137
Practical exercises: computer simulations
138
Chapter
7
Evolutionary impacts of mutation and
140
migration, and their interactions with
selection in large populations
Factors controlling the evolution of populations
141
Importance of mutation and migration and their
interactions with selection in conservation
141
Origin and regeneration of genetic diversity
141
Mutation
142
Mutation-selection balance and the mutation load
146
Migration
152
Migration-selection equilibria and clines
155
Summary
158
Further reading
159
Software
159
Problems
159
Chapter
8
Genetic consequences of small
161
population sizes
Importance of small populations in conservation biology
162
Chance effects
163
Fixation
168
Effects of population bottlenecks
168
Inbreeding
173
Measuring population size
174
Selection in small populations
176
Mutation-selection equilibrium in small populations
177
Computer simulation
178
Summary
179
Further reading
179
Software
180
Problems
180
Practical exercises: computer simulations
180
Chapter
9
Maintenance of genetic diversity
182
Conservation of genetic diversity
183
Fate of different classes of mutations
183
Maintenance of genetic diversity in large populations
184
Neutral mutations under random genetic drift
184
Selection intensities vary among characters
188
Balancing selection
189
Reproductive fitness
198
CONTENTS
Maintenance
of genetic
diversity in small populations
199
Summary
204
Further reading
204
Software
204
Problems
205
Practical exercises: Computer simulations
206
Chapter 1
0
Population genomics
207
Genome sequencing and population genomics
208
cDNA expression microarrays
210
What conservation benefits might be gained from genomics?
211
Genome organization
212
Insights into evolution from genomics
216
Insights from gene expression studies
222
Prospects for individual-locus genetic management
223
Summary
227
Further reading
227
Software
227
Problems
228
SECTION II
EFFECTS OF POPULATION
229
SIZE REDUCTION
Chapter 11 \ Loss of genetic diversity in
231
I small populations
Changes in genetic diversity over time
232
Relationship between loss of genetic diversity and
reduced fitness
232
Effects of sustained population size restrictions on
genetic diversity
234
Relationship between population size and genetic
diversity in wild populations
239
Effective population size
242
Measuring effective population size
243
Gene trees and coalescence
254
Summary
257
Further reading
257
Software
257
Problems
258
Practical exercises: computer simulations
258
Chapter
12 !
Inbreeding
260
What is inbreeding?
261
Conservation concerns with inbreeding
262
Measuring inbreeding: inbreeding coefficient (F)
262
Genetic consequences of inbreeding
265
CONTENTS
Inbreeding in small random mating populations
269
Pedigrees
274
Regular systems of inbreeding
276
Mutation-selection balance with inbreeding
279
Inbreeding in polyploids
281
Relationships between inbreeding, heterozygosity,
genetic diversity and population size
282
Summary
283
Further reading
283
Software
283
Problems
283
Chapter
13
Inbreeding depression
285
Inbreeding depression in naturally outbreeding species
286
Inbreeding depression in the wild
287
Inbreeding depression due to small population size
289
Inbreeding, population viability and extinction
290
Characteristics of inbreeding depression
293
Inbreeding depression in species that regularly inbreed
296
Genetic basis of inbreeding depression
296
Purging
299
Detecting and measuring inbreeding depression
303
Genetic rescue
306
Summary
307
Further reading
307
Software
308
Problems
308
Chapter 1
4
I Population fragmentation
309
Habitat fragmentation
310
Population fragmentation
310
Population structure
312
Completely isolated population fragments
314
Measuring population fragmentation:
F
statistics
321
Gene flow among population fragments
325
Measuring gene flow
327
Landscape genetics
331
Impacts of different population structures on reproductive fitness
332
Summary
334
Further reading
335
Software
335
Problems
336
Chapter I
5
Genetically viable populations
337
Shortage of space for threatened species
338
How large?
340
Retaining reproductive fitness
340
CONTENTS
Retaining evolutionary potential
341
How large are threatened populations?
343
Long-term retention of single-locus genetic diversity
347
Time to regenerate genetic diversity
348
Avoiding accumulation of new deleterious mutations
348
Genetic goals in the management of wild populations
349
Genetic goals in management of captive populations:
a compromise
351
The fallacy of small surviving populations
355
Summary
356
Further reading
356
Software
357
Problems
357
SECTION III FROM THEORY TO PRACTICE
359
Chapter
16
Resolving
taxonomic
uncertainties and
362
defining management units
Importance of accurate taxonomy in conservation biology
363
What is a species?
366
Sub-species
369
How do species arise?
370
Delineating sympatric species
372
Delineating allopatric species
373
Genetic distance
375
Constructing phylogenetic trees
377
Outbreeding depression
381
Defining management units within species
384
Summary
387
Further reading
388
Software
388
Problems
389
Practical exercise: building a phylogenetic tree
390
Chapter 1
7
I Genetic management of wild
391
E
populations
Genetic issues in wild populations
392
Increasing population size
394
Diagnosing genetic problems
396
Genetic rescue of small inbred populations by outcrossing
397
Genetic management of fragmented populations
399
Genetic issues in reserve design
405
Impacts of harvesting
406
Genetic management of species that are not outbreeding diploids
407
Summary
412
CONTENTS
Further reading
413
Software
413
Problems
413
Chapter
18
Genetic issues in introduced and
414
invasive species
Impact of invasive species on biodiversity
415
Phases in establishment of invasive species
416
Genetic issues in invasion biology
417
Evolution of native species in response to introduced species
419
Control of invasive species
420
Introgression and hybridization
425
Summary
428
Further reading
428
Software
429
Problems
429
Chapter
19
Genetic management of captive
430
populations
Why captive breed?
431
Stages in captive breeding and
réintroduction
433
Founding captive populations
434
Growth of captive populations
437
Genetic management during the maintenance phase
437
Captive management of groups
444
Ex situ conservation of plants
446
Reproductive technology and genome resource banks
447
Managing inherited diseases in endangered species
449
Summary
451
Further reading
451
Software
451
Problems
452
Chapter
20
I Genetic management for
reintroduction
453
Reintroductions
454
Genetic changes in captivity that affect
reintroduction
success
456
Genetic adaptation to captivity
458
Genetic management of
reintroductions
461
How successful are
reintroductions?
464
Supportive breeding
465
Case studies in captive breeding and
reintroduction
466
Summary
470
Further reading
471
Software
471
Problems
471
CONTENTS
Chapter
2
1
Use of molecular genetics in forensics
472
and to understand species biology
Forensics: detecting illegal hunting and collecting
473
Understanding a species' biology is critical to
its conservation
474
Population size and demographic history
478
Gene flow and population structure
481
Reintroduction
and
translocation
486
Breeding systems, parentage, founder relationships
and sexing
486
Disease
493
Diet
493
Aging and fitness from telomere lengths
493
Dating using molecular clocks
494
Summary
494
Further reading
495
Software
495
Problems
496
Chapter
22
The broader context: population
497
viability analysis (PVA)
What causes endangerment and extinction?
498
Predicting extinction probabilities: population
viability analysis (PVA)
500
Genetics and PVA
505
Insights into the causes of extinction from PVA
506
Recovering threatened populations
509
Using PVA to evaluate management options: case studies
510
How useful are the predictions of PVA?
514
Lessons learned
516
Minimum viable population sizes (MVP)
517
Summary
520
Further reading
520
Software
521
Problems
521
Practical exercises: population viability analyses
521
Take home messages from this book
523
Revision problems
525
Glossary
527
References
539
Index
595 |
any_adam_object | 1 |
author | Frankham, Richard 1942- Ballou, Jonathan D. 1954- Briscoe, David A. 1947- |
author_GND | (DE-588)140566473 (DE-588)140789642 (DE-588)140566651 |
author_facet | Frankham, Richard 1942- Ballou, Jonathan D. 1954- Briscoe, David A. 1947- |
author_role | aut aut aut |
author_sort | Frankham, Richard 1942- |
author_variant | r f rf j d b jd jdb d a b da dab |
building | Verbundindex |
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dewey-hundreds | 300 - Social sciences |
dewey-ones | 333 - Economics of land and energy |
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dewey-search | 333.95/34 |
dewey-sort | 3333.95 234 |
dewey-tens | 330 - Economics |
discipline | Allgemeines Biologie Wirtschaftswissenschaften Umwelt Geographie |
edition | 2. ed. |
format | Book |
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id | DE-604.BV040637052 |
illustrated | Illustrated |
indexdate | 2024-12-06T17:00:45Z |
institution | BVB |
isbn | 9780521878470 0521878470 9780521702713 0521702712 |
language | English |
lccn | 2008049144 |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-025464182 |
oclc_num | 826551159 |
open_access_boolean | |
owner | DE-M49 DE-BY-TUM DE-703 DE-11 DE-384 DE-Grf2 DE-355 DE-BY-UBR |
owner_facet | DE-M49 DE-BY-TUM DE-703 DE-11 DE-384 DE-Grf2 DE-355 DE-BY-UBR |
physical | XXIII, 618 S. Ill., graph. Darst., Kt. 25 cm |
publishDate | 2010 |
publishDateSearch | 2010 |
publishDateSort | 2010 |
publisher | Cambridge Univ. Press |
record_format | marc |
spelling | Frankham, Richard 1942- Verfasser (DE-588)140566473 aut Introduction to conservation genetics Richard Frankham ; Jonathan D. Ballou ; David A. Briscoe. Line drawings by Karina H. McInnes 2. ed. Cambridge [u.a.] Cambridge Univ. Press 2010 XXIII, 618 S. Ill., graph. Darst., Kt. 25 cm txt rdacontent n rdamedia nc rdacarrier Hier auch später erschienene, unveränderte Nachdrucke Includes bibliographical references and index Germplasm resources Genetische Ressourcen (DE-588)4156623-3 gnd rswk-swf Naturschutz (DE-588)4115348-0 gnd rswk-swf Biodiversität (DE-588)4601495-0 gnd rswk-swf Artenreichtum (DE-588)4131912-6 gnd rswk-swf Erhaltung (DE-588)4250664-5 gnd rswk-swf Genetische Variabilität (DE-588)4264352-1 gnd rswk-swf Genetik (DE-588)4071711-2 gnd rswk-swf Artenschutz (DE-588)4112598-8 gnd rswk-swf Genetik (DE-588)4071711-2 s Genetische Variabilität (DE-588)4264352-1 s Erhaltung (DE-588)4250664-5 s DE-604 Artenschutz (DE-588)4112598-8 s Genetische Ressourcen (DE-588)4156623-3 s Naturschutz (DE-588)4115348-0 s Biodiversität (DE-588)4601495-0 s Artenreichtum (DE-588)4131912-6 s Ballou, Jonathan D. 1954- Verfasser (DE-588)140789642 aut Briscoe, David A. 1947- Verfasser (DE-588)140566651 aut Digitalisierung UB Bayreuth application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=025464182&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Frankham, Richard 1942- Ballou, Jonathan D. 1954- Briscoe, David A. 1947- Introduction to conservation genetics Germplasm resources Genetische Ressourcen (DE-588)4156623-3 gnd Naturschutz (DE-588)4115348-0 gnd Biodiversität (DE-588)4601495-0 gnd Artenreichtum (DE-588)4131912-6 gnd Erhaltung (DE-588)4250664-5 gnd Genetische Variabilität (DE-588)4264352-1 gnd Genetik (DE-588)4071711-2 gnd Artenschutz (DE-588)4112598-8 gnd |
subject_GND | (DE-588)4156623-3 (DE-588)4115348-0 (DE-588)4601495-0 (DE-588)4131912-6 (DE-588)4250664-5 (DE-588)4264352-1 (DE-588)4071711-2 (DE-588)4112598-8 |
title | Introduction to conservation genetics |
title_auth | Introduction to conservation genetics |
title_exact_search | Introduction to conservation genetics |
title_full | Introduction to conservation genetics Richard Frankham ; Jonathan D. Ballou ; David A. Briscoe. Line drawings by Karina H. McInnes |
title_fullStr | Introduction to conservation genetics Richard Frankham ; Jonathan D. Ballou ; David A. Briscoe. Line drawings by Karina H. McInnes |
title_full_unstemmed | Introduction to conservation genetics Richard Frankham ; Jonathan D. Ballou ; David A. Briscoe. Line drawings by Karina H. McInnes |
title_short | Introduction to conservation genetics |
title_sort | introduction to conservation genetics |
topic | Germplasm resources Genetische Ressourcen (DE-588)4156623-3 gnd Naturschutz (DE-588)4115348-0 gnd Biodiversität (DE-588)4601495-0 gnd Artenreichtum (DE-588)4131912-6 gnd Erhaltung (DE-588)4250664-5 gnd Genetische Variabilität (DE-588)4264352-1 gnd Genetik (DE-588)4071711-2 gnd Artenschutz (DE-588)4112598-8 gnd |
topic_facet | Germplasm resources Genetische Ressourcen Naturschutz Biodiversität Artenreichtum Erhaltung Genetische Variabilität Genetik Artenschutz |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=025464182&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT frankhamrichard introductiontoconservationgenetics AT balloujonathand introductiontoconservationgenetics AT briscoedavida introductiontoconservationgenetics |