Recent developments in insect neurohormones:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
New York u.a.
Plenum Press
1989
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XXII, 503 S. Ill. |
ISBN: | 0306431750 |
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adam_text | Recent Developments in
Insect Neurohormones
Marie jteabe
National Center for Scientific Research
Pierre and Marie Curie University
Paris, France
Illustrated by Colette Montmory
Plenum Press • New York and London
Contents
Abbreviations ix
Chapter 1
Synthesis and Release Sites of Neurohormones l
1 1 From the Original Concept of Neurosecretion to Contemporary
Views 2
111 The Concept of Neurosecretion 2
112 The Blood Pathway—Neurohemal Organs 4
113 Developmental Phase of the Investigations 5
114 New Problems 7
115 The Neuroeffector Junctions 7
116 Nonconventional Neurosecretory Cells 8
117 Aminergic Neurosecretory Cells 8
118 Endorphins 10
119 Characterization of Peptidergic Neurohormones 11
1 1 10 Extensive Localization of Neuropeptides 11
1 1 11 Colocalization 13
1 1 12 Neuromodulation 16
1 1 13 Regulation of Peptidergic Neuron Activity 17
1 1 14 Conclusion 18
1 2 Classical Insect Neurosecretory Cells 18
121 General Features 19
122 Neurosecretory Cell Diversity 22
123 Anatomy of the Neurosecretory System 27
1 3 Neurosecretory Pathways 35
131 Neuropil Arborization of Brain Neurosecretory Cells 35
A132 Pathways to the Corpora Cardiaca and Corpora Allata 36
133 Pathways to the Prothoracic Gland 37
134 Pathways in the Central Nervous System 37
xiii
xiv CONTENTS
1 4 Release Sites 38
141 The Corpora Cardiaca 39
142 Perisympathetic Organs 41
143 Neurohemal Areas 45
144 Neuroeffector Junctions 48
145 Embryonic Formation of Perisympathetic Neurohemal
Areas 49
146 Discussion 50
1 5 Regulation of Neurohormone Production and Release 51
151 Environmental Factors 52
152 Internal Factors 53
153 Orcadian Activity—Autoregulation 53
154 Neurosecretory Cell Interrelationships 53
155 Substances Involved 54
156 Control of the Release of Neurosecretory Products 54
157 Hormonal Feedback 54
1 6 Aminergic Neurons 55
161 Methods 55
162 Occurrence in the Central Nervous System 56
163 Quantitative Determinations 57
164 Distribution in Central Nervous System 60
165 Sympathetic Nervous System 63
166 Corpora Cardiaca 64
167 Perisympathetic Organs 64
168 Serotonergic Networks 65
169 Mode of Action 65
1 6 10 Conclusion 66
1 7 Concluding Remarks 68
Chapter 2
Vertebrate and Invertebrate Neuropeptides in Insects 69
2 1 Insect Neurons Immunoreactive to Vertebrate Peptide Antisera 72
211 Neurophysins—Vasopressin—Oxytocin 72
212 Opioids and Related Molecules 73
213 Gastroenteropancreatic Peptides 79
214 Miscellaneous 87
2 2 Insect Neurons Immunoreactive to Invertebrate Neurohormones 91
2 3 Insect Neurons Immunoreactive to Insect Neurohormones 92
231 Proctolin r 92
232 Adipokinetic Hormone 94
CONTENTS xv
233 Eclosion Hormone 95
234 Neuroparsins A and B 95
2 4 Distribution of Immunoreactive Products 95
241 Nervous and Neuroendocrine System 95
242 Midgut 96
2 5 Immunoreactive Neurons and Neurosecretory Cells 98
2 6 Cross-Reactions-Colocation of Immunoreactive Peptides 99
2 7 Concluding Remarks 100
Chapter 3
Control of Prothoracic Gland Activity 103
3 1 Prothoracic Gland Innervation and Ultrastructure 105
311 Prothoracic Gland Innervation 105
312 Perisympathetic Organs 105
313 Origin Cells 106
314 Prothoracic Gland Structure—Variations 106
315 Ultrastructural Data 106
316 Ultrastructural and Immunocytochemical Data 107
3 2 Prothoracic Gland Degeneration 107
3 3 PTTH Assays 108
331 In Vivo Assays 108
332 In Vitro Assays 110
3 4 Timing of PTTH Release 112
341 Hyalophora 112
342 Manduca 113
343 Bombyx 116
344 Galleria and Ephestia 116
345 Rhodnius 116
346 Concluding Remarks 117
3 5 PTTH Production and Release Sites 117
351 Production Sites 117
352 Release Sites 118
3 6 Purification of PTTH 119
361 Bombyx PTTH 120
362 Manduca PTTH 123
363 Embryonic PTTH 125
364 EDNH versus PTTH 125
365 InterspecifiCjjActivity of PTTH 126
3 7 PTTH Action Mechanism 127
3 8 Is PG Regulated by Factors Other Than PTTH? 128
xvi CONTENTS
381 Ventral Nerve Cord 128
382 Nerve Connections 128
383 Ecdysone and 20-HE feedback 129
384 Juvenile Hormone Feedback 130
385 Hemolymph Stimulatory Factor 132
386 Prothoracic Gland Activation in Debrained Insects 134
3 9 Conclusion 135
Chapter 4
Regulation of Corpora Allata Activity and Juvenile Hormone Titer 137
Introduction 137
4 1 Juvenile Hormones, Their Esterases and Binding Proteins 138
411 Juvenile Hormone Molecular Structure 138
412 Juvenile Hormone Titer 138
413 Juvenile Hormone Esterases 139
414 Juvenile Hormone-Binding Proteins 139
415 Juvenile Hormone Analogs 140
416 Precocene—Azadirachtin—Antibodies 140
4 2 Juvenile Hormone Assays 141
421 Physicochemical Determination 141
422 Radioimmunoassay 142
423 Short-term Radiochemical in Vitro Assay 142
4 3 Corpora Allata Innervation and Structure 143
431 Corpora Allata Innervation 143
432 Structure and Ultrastructure 145
4 4 Neurohormonal versus Nervous Regulation 149
441 Cockroaches 150
442 Locusts and Other Orthopterans 154
443 Anisolabis and Labidura 156
444 Leptinotarsa 157
445 Moths 157
446 Bugs 160
4 5 Purification of Allatotropins 160
4 6 Recapitulation 161
461 Nervous Regulation 162
462 Allatotropins and Allatostatins 163
463 Role of the Ovary 163
464 Ecdysone and 20-HE 164
465 Juvenile Hormone 164
466 Esterase Regulation 165
4 7 Conclusions 165
CONTENTS xvii
Chapter 5
Diapause 169
5 1 Imaginal Diapause 170
5 2 Pupal Diapause 171
5 3 Larval Diapause 174
5 4 Embryonic Diapause 176
5 5 Purification of the Embryonic Diapause Factor 179
5 6 Conclusions 180
Chapter 6
Reproduction - 18i
Introduction 181
6 1 Sex Determination 182
611 Lampyris 182
612 Leptinotarsa 183
6 2 Oogenesis 183
621 Oogenesis: First Steps 183
622 Ovariole Differentiation 185
623 Previtellogenesis 186
624 Vitellogenesis 187
625 Chorionization 205
626 Vitellogenesis and Vitellogenin Synthesis in the Male 205
627 Concluding Remarks 205
6 3 Spermatogenesis , 206
631 Ecdysone 207
632 Macromolecular Factor 209
633 Juvenile Hormone 210
634 Neurohormones 211
635 Concluding Remarks 212
6 4 Accessory Glands 212
641 Morphogenesis of Accessory Glands and Ducts 212
642 Physiological Role of Accessory Glands 213
643 Accessory Gland Regulation 214
6 5 Mating 215
651 Cockroaches 216
652 Locusts and Crickets 216
653 Beetles 217
654 Lepidopterans 217
655 Dipterans 218
656 Bugs 218
657 Conclusion 218
xviii CONTENTS
6 6 Ovulation—Oviposition—Parturition 219
661 Overall Cephalic Control 219
662 Role of the Last Abdominal Ganglion 220
663 Neurohormones 220
664 Production Sites of the Neurohormones 224
665 Neurohormone Release Sites 225
666 Interspecificity of the Neurohormonal Factors 226
667 Proctolin and Other Myotropic Peptides 226
668 Biogenic Amines 227
669 Juvenile Hormone and Ecdysone 228
6 6 10 Mode of Action of the Neurohormones 229
6 7 Particular Modes of Reproduction 230
671 Social insects 230
672 Unusual Modes of Reproduction 231
6 8 Conclusion 232
Chapter 7
Muscle Activity 235
7 1 Visceral Muscles 235
711 Dorsal Vessel and Associated Structures 235
712 Gut 242
713 Oviducts 244
714 Malpighian Tubules 245
715 Body Wall Muscles and Blood Pressure 245
7 2 Skeletal Muscles 246
721 Proctolin 246
722 Other Peptides 247
723 Octopamine 247
7 3 Separation and Identification of Myotropic Peptides 248
731 Early Investigations 248
732 Proctolin 249
733 MI, Mil, CC1, and CC2, and Neurohormone D 254
734 Other Factors 258
7 4 Leucokinins, Leucopyrokinins, Leucomyosuppressins, and
Leucosulfakinins 258
7 5 Action Mechanism of Myotropic Factors 261
751 Neurohormones 261
752 Release at Effector Level 262
753 Cyclic Nucleotides 263
754 Ca2 + 264
CONTENTS xix
755 Receptors 264
756 Conclusion 264
Chapter 8
Ecdysis and Tanning 267
8 1 Eclosion—Molting 267
811 Eclosion Hormone 267
812 Eclosion Hormone Assays 268
813 Origin and Release Sites of Eclosion Hormone 269
814 Regulation of Eclosion Hormone Release by
Ecdysteroids 270
815 Eclosion Hormone and Muscle Degeneration 271
816 Neuron Death 272
817 Various Processes Regulated by Eclosion Hormone 272
818 Presence of Eclosion Hormone among Insects 272
8 2 Bursicon 273
821 The Sclerotization Process 274
822 Bioassays • 274
823 Demonstration of Neurohormonal Control of Tanning 274
824 Stimuli Involved in Bursicon Release 275
825 Production and Release Sites of Bursicon 275
826 Timing of Bursicon Synthesis and Release 277
827 Other Processes Associated with Tanning 279
8 3 Pupariation 280
8 4 Neurohormone Identification 283
841 Possible Identity of the Active Factors 283
842 Purification 283
843 Interspecific Activity 285
8 5 Mode of Action 285
8 6 Concluding Remarks 287
Chapter 9
Pigment Synthesis and Breakdown—Color Change 289
9 1 Pigment Synthesis and Breakdown 289
911 Factors Involved in Pigment Synthesis 289
912 Pigments 291
913 Locusts, Grasshoppers, and Stick Insects 292
914 Lepidopteran Larvae and Pupae 296
xx CONTENTS
915 Action Mechanism of Hormones and Neurohormones in
Pigmentation 302
916 Purification of MRCH 305
9 2 Pigment Migrations 305
921 Corethra 306
922 Dragonflies 307
923 Stick Insects 307
924 Interspecific Activity 309
925 Purification of the Neurohormones 310
926 Summary • 310
Chapter 10
Osmoregulation : 313
10 1 Methods 313
10 1 1 In Vivo Methods 314
10 1 2 In Vitro Methods 314
10 2 Diuretic Hormone 316
10 2 1 Production Sites 316
10 2 2 Release Sites 320
10 2 3 Diuretic Hormone Titers 321
10 3 Biogenic Amines 321
10 4 Antidiuretic Hormone 322
10 5 Ion Metabolism 322
10 6 Juvenile Hormone and Ecdysone 324
10 7 Purification of Hormones Involved in Osmoregulation 324
10 7 1 Diuretic Hormones 324
10 7 2 Chloride Transport-Stimulating Hormone 327
10 8 Mode of Action of Hormones Regulating Osmoregulation 327
10 9 Conclusions 329
Chapter 11
Metabolism 331
11 1 Lipid and Carbohydrate Metabolism 331
11 1 1 Adipokinetic and Hyperglycemic Hormones of the AKH
Family 332
11 1 2 Glycogenolytic and Glucosemic Factors 345
11 1 3 Hypolipemic and Hypoglycemic Factors 347
11 1 4 Insulin- and Glucagon-like Peptides 347
11 1 5 Octopamine and Other Biogenic Amines 349
CONTENTS xxi
11 1 6 Diapause Hormone 351
11 1 7 Juvenile Hormone 352
11 1 8 Ecdysone 352
11 2 Protein Metabolism 353
11 2 1 Ecdysteroids, Juvenile Hormone, and Protein
Metabolism 353
11 2 2 Neurohormones and Protein Metabolism 354
11 3 Proteases and Amylases 356
11 4 Respiratory Metabolism 357
11 5 Origin and Release Sites of Metabolic Hormones 358
11 5 1 Adipokinetic Hormone Origin Cells 358
11 5 2 Regulation of Adipokinetic Hormone Release 359
11 5 3 Source of Hypertrehalosemic Hormones 360
11 5 4 Control of Hypertrehalosemic Hormone Release 361
11 5 5 Origin of Octopamine, Hypolipemic, and Hypoglycemic
Factors 361
11 6 Mode of Action of Metabolic Hormones 362
11 7 Breakdown of Metabolic Hormones 364
11 8 Conclusion 364
Chapter 12
Miscellaneous 365
12 1 Locomotor Activity 365
12 1 1 Orcadian Rhythms 365
12 1 2 Activity Levels 366
12 2 Flight 367
12 3 Endogenous Nerve Activity—Stress 367
12 4 Polymorphism 368
12 4 1 Corpora Allata : 368
12 4 2 Neurohormones 369
Concluding Remarks 371
Addendum 377
A I Synthesis and Release Sites of Neurohormones 377
A11 Neuroanatomical Studies 377
A12 Peripheral ns Ganglia 377
A13 Biogenic Amines 377
A 2 Vertebrate and Invertebrate Neuropeptides in Insects 379
xxii CONTENTS
A21 Vertebrate Peptides 379
A22 Molluscan FMRFamide 379
A23 Insect Peptides 379
A 3 Control of Prothoracic Gland Activity 380
A31 Hemolymph Protein Factor—Juvenile Hormone 380
A32 Ecdysteroid Production Outside Prothoracic Gland 380
A33 Brain-Ring Gland Interrelationships 380
A 4 Control of Juvenile Hormone Activity 380
A41 Juvenile Hormone Diversity 380
A42 Azadirachtin 381
A43 Regulation by Octopamine of CA Synthetic Activity 381
A44 JH Binding Proteins and JH Esterases 381
A 5 Embryonic Diapause » 381
A 6 Reproduction : 382
A61 Vitellogenesis Regulation in Mosquitoes 382
A62 Vitellogenesis Regulation in Flies 382
A63 Vitellogenesis Regulation in Firebrats 382
A64 Embryonic Ecdysteroids 382
A65A New Function for Oostatic Hormone 383
A66 Spermatogenesis 383
A 7 Muscle Activity 383
A71 Hyperneural Muscle 383
A72 Modulatory Role of Proctolin 383
A 8 Pigment Synthesis and Breakdown 384
A 9 Osmoregulation 384
A91 Identification of Active Factors 384
A92 Biogenic Amines 384
A 10 Metabolism 384
A 10 1 AKH and Lipid Synthesis 384
A 10 2 New Members of the AKH Family 384
A 10 3 Other Metabolic Factors 385
A 10 4 Proteolytic Enzymes 385
A 10 5 Mode of Action of Metabolic Hormones 385
A 11 Miscellaneous 385
References , 387
Species Index 487
Subject Index 493
|
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spelling | Raabe, Marie Verfasser (DE-588)11631897X aut Neue Erkenntnisse über Neurohormone bei Insekten ger Recent developments in insect neurohormones New York u.a. Plenum Press 1989 XXII, 503 S. Ill. txt rdacontent n rdamedia nc rdacarrier Insectes - Hormones Insetos Em Geral (Biologia) larpcal Neurohormones Insect hormones Neurohormon (DE-588)4125626-8 gnd rswk-swf Insekten (DE-588)4027110-9 gnd rswk-swf Insekten (DE-588)4027110-9 s Neurohormon (DE-588)4125626-8 s DE-604 HEBIS Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=001639840&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Raabe, Marie Recent developments in insect neurohormones Insectes - Hormones Insetos Em Geral (Biologia) larpcal Neurohormones Insect hormones Neurohormon (DE-588)4125626-8 gnd Insekten (DE-588)4027110-9 gnd |
subject_GND | (DE-588)4125626-8 (DE-588)4027110-9 |
title | Recent developments in insect neurohormones |
title_auth | Recent developments in insect neurohormones |
title_exact_search | Recent developments in insect neurohormones |
title_full | Recent developments in insect neurohormones |
title_fullStr | Recent developments in insect neurohormones |
title_full_unstemmed | Recent developments in insect neurohormones |
title_short | Recent developments in insect neurohormones |
title_sort | recent developments in insect neurohormones |
topic | Insectes - Hormones Insetos Em Geral (Biologia) larpcal Neurohormones Insect hormones Neurohormon (DE-588)4125626-8 gnd Insekten (DE-588)4027110-9 gnd |
topic_facet | Insectes - Hormones Insetos Em Geral (Biologia) Neurohormones Insect hormones Neurohormon Insekten |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=001639840&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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