Cytology and evolution in parthenogenesis:
Gespeichert in:
Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boca Raton, Fla.
CRC Pr.
1987
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | 216 S. Ill., Kt. |
ISBN: | 0849359813 |
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adam_text | Cytology and
Evolution in
Parthenogenesis
Authors
Esko Suomalainen
Department of Genetics
University of Helsinki
Helsinki, Finland
Anssi Saura
Department of Genetics
University of Helsinki
Helsinki, Finland
Department of Genetics
University of Ume amp;
Umea, Sweden
Juhani Lokki
Department of Genetics
__ University of Helsinki
Helsinki, Finland
CRC Press, Inc
Boca Raton, Florida
TABLE OF CONTENTS
Chapter 1
Introduction 1
I General 1
II Systems of Parthenogenesis 1
III A History of the Concept 5
A Bonnet 5
B Dzierzon 7
C Owen 7
D Wagner 8
IV Theories of Sex 9
A Weismann 9
B Mendelian Theories 9
1 Fisher-Muller 9
2 Muller s Ratchet 9
3 Individual Selection 10
4 The Cost of Sex 10
V The Species Concept in Parthenogenetic Forms 11
A The Morphological Species 12
B Hybridization in the Origin of Parthenogenetic Forms 12
C Conclusions 13
References 14
Chapter 2
Apomixis in Plants 17
I Introduction 17
II Classification of Apomixis 17
III Meiosis in Apomictic Plants 18
IV Origin of Apomixis and Evolution of Apomictic Plants 20
V Synopsis 22
References 22
Chapter 3 ~ —
The Cytological Basis of Parthenogenesis 23
I Introduction 23
II Automictic Parthenogenesis 23
A The Cleavage Nuclei Fuse or the Halves of the Divided Chromosomes of
the Cleavage Nuclei Remain in the Same Nucleus 23
1 Crustacea: Anostraca 23
2 Insecta 25
a Orthoptera: Phasmidae 25
• b Homoptera: Aleyrodidae 25
c Homoptera: Coccidae 25
d Lepidoptera: Bombycidae 25
e Diptera: Drosophilidae 25
f Hymenoptera: Cynipidae 26
3 Arachnida: Acarina 26
B The Second Polar Nucleus Fuses with the Egg Nucleus — This Process
is Commonly Called Terminal Fusion 26
1 Nematoda 26
2 Oligochaeta: Enchytraeidae 27
3 Crustacea 27
a Anostraca 27
b Isopoda 27
4 Insecta 27
a Orthoptera: Acrididae 27
b Homoptera: Coccidae 28
c Thysanoptera: Terebrantia 28
d Diptera: Drosophilidae 28
e Diptera: Lonchopteridae 29
f Hymenoptera: Tenthredinidae 29
g Hymenoptera: Aphelinidae 29
5 Arachnida: Acarina 29
6 Arthropoda: Tardigrada 29
C The Two Central Polar Nuclei Fuse — This Process is Commonly
Called Terminal Fusion 29
1 Insecta 29
a Lepidoptera: Psychidae 29
b Diptera: Drosophilidae 30
c Diptera: Lonchopteridae 30
d Hymenoptera: Apidae 30
D The First Polar Nucleus Fuses with the Nucleus of the Secondary
Oocyte 30
1 Trematoda 30
2 Crustacea: Anostraca 30
3 Insecta 30
a Collembola 30
b Lepidoptera: Psychidae 31
E The Parthenogenetic Egg Undergoes Two Meiotic Divisions, the
Chromosomes Pair at the Second Prophase 32
1 Insecta: Homoptera: Coccidae 32
F A Premeiotic Doubling of Chromosome Number is Reduced Through
Meiosis 32
1 Turbellaria 32
2 Oligochaeta: Lumbricidae 35
3 Insecta 36
a Orthoptera: Acrididae 36
b Coleoptera: Ptinidae and Scolytidae 37
4 Arachnida: Acarina 37
5 Arthropoda: Tardigrada 37
6 Pisces 37
7 Amphibia 38
8 Reptilia 38
G Other Cases of Automictic Parthenogenesis 38
1 Insecta 38
a Diptera: Cecidomyiidae 38
b Hymenoptera: Ichneumonidae 38
H Synopsis 38
Apomictic Parthenogenesis 38
A Coelenterata: Scyphozoa 39
B Turbellaria 39
C Trematoda 40
D Nematoda 40
E Rotifera 40
F Gastrotricha 40
G Mollusca: Gastropoda 40
H Oligochaeta 40
1 Lumbricidae 40
2 Enchytraeidae 41
I Crustacea 41
1 Anostraca 41
2 Cladocera 41
3 Ostracoda 41
4 Isopoda 42
J Insecta 42
1 Orthoptera 42
a Blattidae 42
b Phasmidae 43
c Tettigoniidae 43
2 Embioptera 43
3 Psocoptera 43
4 Homoptera 43
a Aphididae 43
b Coccidae 46
5 Diptera 46
a Psychodidae 46
b Chironomidae 46
c Cecidomyiidae 46
d Simuliidae 50
6 Coleoptera 50
a Chrysomelidae 50
b Curculionidae 50
7 Hymenoptera 51
a Tenthredinidae 51
b Cynipidae 51
c Formicidae 51
K Arachnida;- Acarina 51
L Arthropoda: Tardigrada 51
M Pisces: Poeciliidae 52
N Synopsis 52
IV Generative or Haploid Parthenogenesis 52
A Nematoda 53
B Rotifera 53
C Insecta 53
L Homoptera: Coccidae and Aleyrodidae 53
2 Thysanoptera 55
3 Coleoptera 55
a Micromalthidae 55
b Scolytidae 55
4 Hymenoptera 55
D Arachnida: Acarina 57
E Synopsis 57
References 58
Chapter 4
Polyploidy in Association with Parthenogenesis 71
I General Features 71
II Polyploidy in Parthenogenetic Animals 71
A Turbellaria 71
B Trematoda 71
C Cestoidea 71
D Nematoda 71
E Mollusca: Gastropoda 71
F Oligochaeta 72
1 Lumbricidae 72
2 Enchytraeidae 72
G Crustacea 72
1 Anostraca 72
2 Isopoda 72
H Insecta 73
1 Collembola 73
2 Orthoptera: Tettigoniidae 73
3 Embioptera 74
4 Homoptera 74
a Delphacidae 74
b Coccidae 74
5 Lepidoptera: Psychidae 75
6 Diptera 75
a Psychodidae 75
b Chironomidae 75
c Simuliidae 75
d Chamaemyiidae 75
e Agromyzidae 75
7 Coleoptera 76
a Ptinidae 76
b Chrysomelidae 76
c Curculionidae 76
d J§colytidae 80
8 Hymenoptera -r 80
I Arachnida: Acarina 80
J Tardigrada 80
K Pisces 80
1 Poeciliidae 80
L Amphibia 81
1 Anura 81
2 Urodela 81
M Reptilia 82
1 Gekkonidae 82
2 Agamidae 83
3 Teiidae 83
4 Xantusiidae 84
III The Distribution of Different Levels of Ploidy 84
A Trichoniscus 84
B Arachnoidea: Acarina 85
C Saga pedo 85
D Solenobia triquetrella 85
E Curculionidae 86
1 European Forms 86
2 Japanese Forms 90
F Historical Explanations 91
G Ecological Explanations 92
H Polyploid Vertebrates 94
IV Origin of Parthenogenesis and Polyploidy in Animals 95
A Origin of Automixis 95
B The Origin of Apomixis and Polyploidy 96
1 The Hybridization Hypothesis 97
2 The Genome Segregation Hypothesis 97
C Polyploid Vertebrates 100
V The Importance of Polyploidy in Parthenogenetic Reproduction 100
References 104
Chapter 5
Genetics of Parthenogenesis 113
I Introduction 113
II Apomictic Parthenogenesis 113
III Automictic Parthenogenesis 113
A The Cleavage Nuclei Fuse or the Halves of the Divided Chromosomes
of the Cleavage Nuclei Remain in the Same Nucleus (Gamete
Duplication) 114
B The Second Polar Nucleus Fuses with the Egg Nucleus (Terminal
Fusion) 114
C The Two Central Polar Nuclei Fuse (Central Fusion) 115
D The First Polar Nucleus Fuses with the Nucleus of the Secondary
Oocyte 115
E The Parthenogenetic Egg Undergoes Two Meiotic Divisions; The
Chromosomes Pair at the Second Meiotic Prophase (Gonoid
Thelytoky) 117
F A Premeiotic Doubling of Chromosome Number Is Reduced Through
_Meiosis 117
IV Observations on-Natural Populations 117
A Gamete Duplication 118
1 Bacillus rossius 118
2 Diplolepis rosae 118
B Terminal Fusion 119
1 Aphytis mytilaspidis 119
C Central Fusion 119
1 Solenobia triquetrella 119
2 Lonchoptera dubia 122
D The First Polar Nucleus Fuses With the Nucleus of the Secondary
Oocyte 123
1 Artemia 123
2 Solenobia lichenella 123
E Premeiotic Doubling and Apomixis 123
V Parthenogenesis in Drosophila 123
A Cytology of Drosophila Parthenogenesis 124
B Production of Males 124
C The Genetic Basis of Parthenogenesis 124
D Decay of Sexual Behavior Under Parthenogenesis 124
E Selection Experiments 124
F Bearing of Drosophila Work on the Origin of Parthenogenesis 125
VI A Comment on Terminology 125
References 125
Chapter 6
Artificial Parthenogenesis 129
I Introduction 129
II Insects 129
A Androgenesis 130
B Polyploidy in Artificial Parthenogenesis 130
C Formation of an Allopolyploid Silkworm 130
III Echinoderms 131
IV Amphibians 131
V Birds 132
VI Mammals 133
A Egg Types in Parthenogenetic Activation 133
B Artificial Polyploidization 133
References 134
Chapter 7
Cyclical Parthenogenesis 139
I Introduction 139
II Alternation of Bisexual and Parthenogenetic Generations 139
A Trematoda 139
B Rotifera 141
1 Mictic-Female Production 142
2 The Life Cycle of Rotifers in Nature 143
3 Patterns of Variation 144
4 Aspects of Evolution of Rotifer Parthenogenesis 144
C Cladocera 145
1 Studies on Sexual Reproduction 146
2 Studies on Parthenogenetic Reproduction 146
3 Synopsis of Cladoceran Life History 147
D Aphidoidea 148
1 Life Histories 148
2 Permanent Thelytoky 150
3 Genetic Structure of Aphid Populations 152
4 Effects of Selection in Aphid Lineages 154
5 Synopsis 154
E Cecidomyiidae 155
F Cynipidae 156
G Micromalthus 158
III Synopsis 160
A Components of Fitness 162
1 Rate of Embryonic Development 162
2 Fecundity 163
3 Evolutionary Consequences of Periodic Sex 163
References 164
Chapter 8
Evolution of Parthenogenetic Animals 169
I Introduction 169
II Representative Cases 169
A Protozoa 169
B Coelenterata: Anthozoa 169
C Platyhelminthes: Trematoda 169
D Nematoda 170
E Rotifera 170
F Gastrotricha: Chaetonotoidea 170
G Mollusca: Gastropoda 170
H Annelida: Oligochaeta 173
1 Enchytraeidae 173
2 Lumbricidae 173
I Arthropoda: Crustacea 174
1 Branchiopoda: Anostraca: Artemia salina 174
2 Ostracoda 175
3 Cladocera 175
4 Copepoda 175
5 Isopoda 175
J Arthropoda: Insecta 175
1 Thysanura 175
2 Collembola 175
3 Ephemeroptera 176
4 Orthoptera 176
a Acrididae 176
b Eumastacidae: Warramaba virgo 176
c Tetrigidae 177
d Phasmoidea 177
e Rhaphidophoridae 177
f Blattaria 178
5 Psocoptera 178
6 Thysanoptera 178
7 Homoptera 178
8 Lepidoptera 178
9 Diptera 179
a Phytomyza crassiseta 179
b Cnephia mutata 179
c Psychoda parthenogenetica 180
10 Coleoptera 180
a Chrysomelidae: Bromius obscurus 180
b Curculionidae: Otiorhynchus scaber 181
c Curculionidae: Otiorhynchus salicis 183
d Curculionidae: Polydrusus mollis 1
e Curculionidae: Synopsis lo^
f Scolytidae 187
11 Hymenoptera 187
K Arthropoda: Diplopoda 189
L Arthropoda: Arachnida: Acarina 190
M Vertebrata 190
1 Pisces: Atherinidae 190
2 Pisces: Poeciliidae 191
a Hybrid Intermediacy 191
b Frozen Niche 192
3 Amphibia 192
4 Reptilia 193
a Cnemidophorus 194
b Social Behavior 195
III Fecundity 195
A Collembola 196
B Phasmids 196
C Lizards 196
IV Synopsis 196
A Origin of Parthenogenesis 197 •
B Environmental Attributes of Parthenogenesis 197
References 199
Index 207
|
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spelling | Suomalainen, Esko 1910-1995 Verfasser (DE-588)130333859 aut Cytology and evolution in parthenogenesis authors: Esko Suomalainen ; Anssi Saura ; Juhani Lokki Boca Raton, Fla. CRC Pr. 1987 216 S. Ill., Kt. txt rdacontent n rdamedia nc rdacarrier eläimet ysa lisääntyminen ysa solubiologia ysa Evolution (DE-588)4071050-6 gnd rswk-swf Jungfernzeugung (DE-588)4298865-2 gnd rswk-swf Cytologie (DE-588)4070177-3 gnd rswk-swf Jungfernzeugung (DE-588)4298865-2 s Evolution (DE-588)4071050-6 s DE-604 Cytologie (DE-588)4070177-3 s Saura, Anssi Verfasser aut Lokki, Juhani Verfasser aut HEBIS Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=000477429&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Suomalainen, Esko 1910-1995 Saura, Anssi Lokki, Juhani Cytology and evolution in parthenogenesis eläimet ysa lisääntyminen ysa solubiologia ysa Evolution (DE-588)4071050-6 gnd Jungfernzeugung (DE-588)4298865-2 gnd Cytologie (DE-588)4070177-3 gnd |
subject_GND | (DE-588)4071050-6 (DE-588)4298865-2 (DE-588)4070177-3 |
title | Cytology and evolution in parthenogenesis |
title_auth | Cytology and evolution in parthenogenesis |
title_exact_search | Cytology and evolution in parthenogenesis |
title_full | Cytology and evolution in parthenogenesis authors: Esko Suomalainen ; Anssi Saura ; Juhani Lokki |
title_fullStr | Cytology and evolution in parthenogenesis authors: Esko Suomalainen ; Anssi Saura ; Juhani Lokki |
title_full_unstemmed | Cytology and evolution in parthenogenesis authors: Esko Suomalainen ; Anssi Saura ; Juhani Lokki |
title_short | Cytology and evolution in parthenogenesis |
title_sort | cytology and evolution in parthenogenesis |
topic | eläimet ysa lisääntyminen ysa solubiologia ysa Evolution (DE-588)4071050-6 gnd Jungfernzeugung (DE-588)4298865-2 gnd Cytologie (DE-588)4070177-3 gnd |
topic_facet | eläimet lisääntyminen solubiologia Evolution Jungfernzeugung Cytologie |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=000477429&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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