Artigo Revisado por pares

Histophysiology of the neurosecretory system and retrocerebral endocrine glands of the alfalfa plant bug, Adelphocoris lineolatus (Goeze) (Hemiptera: Miridae),

1962; Wiley; Volume: 111; Issue: 3 Linguagem: Inglês

10.1002/jmor.1051110304

ISSN

1097-4687

Autores

Al B. Ewen,

Tópico(s)

Insect-Plant Interactions and Control

Resumo

Journal of MorphologyVolume 111, Issue 3 p. 255-273 Article Histophysiology of the neurosecretory system and retrocerebral endocrine glands of the alfalfa plant bug, Adelphocoris lineolatus (Goeze) (Hemiptera: Miridae)†,‡ A. B. Ewen, A. B. Ewen Canada Agriculture Research Station, University Sub Post Office, Saskatoon, SaskatchewanSearch for more papers by this author A. B. Ewen, A. B. Ewen Canada Agriculture Research Station, University Sub Post Office, Saskatoon, SaskatchewanSearch for more papers by this author First published: November 1962 https://doi.org/10.1002/jmor.1051110304Citations: 43 † Revision of a thesis submitted to the Department of Entomology. University of Alberta, Edmonton, in partial fulfillment of the requirements for the degree of Doctor of Philosophy. ‡ Contribution no. 125, Canada Department of Agriculture Research Station, Saskatoon, Saskatchewan. AboutPDF ToolsRequest permissionExport citationAdd to favoritesTrack citation ShareShare Give accessShare full text accessShare full-text accessPlease review our Terms and Conditions of Use and check box below to share full-text version of article.I have read and accept the Wiley Online Library Terms and Conditions of UseShareable LinkUse the link below to share a full-text version of this article with your friends and colleagues. Learn more.Copy URL Share a linkShare onEmailFacebookTwitterLinkedInRedditWechat Literature Cited Adams, C. W. M., and J. C. Sloper 1956 The hypothalamic elaboration of posterior pituitary principles in man, the rat and dog Histochemical evidence derived from a performic acid alcian — blue reaction for cystine. J. Endocrinol., 13: 221–228. Arvy, L., J.-J. Bounhiol, et M. Gabe 1953 Déroulement de la neuro-sécrétion protocérébrale chez Bombyx mori L au cours du développement postembryonnaire. C. R. Acad. Sci., Paris, 236: 627–629. Arvy, L., et M. Gabe 1952 Données histophysiologiques sur les formations endocrines retrocérébrales de quelques Odonates. Ann. Sci. nat. (Zool.), 14: 345–374. Arvy, L., et M. Gabe 1953a Données histophysiologiques sur la neuro-sécrétion chez quelques Ephéméroptères. Cellule, 55: 203–224. Arvy, L., et M. Gabe 1953b Particularités histophysiologiques des glandes endocrines céphaliques chez Tenebrio molitor. L. C. R. Acad. Sci., Paris, 237: 844–846. Arvy, L., et M. Gabe 1954 Données histophysiologiques sur la neuro-sécrétion chez les Insectes Paléoptères (Emphéméroptères et Odonates). Pubbl. Staz. zool. Napoli, suppl., 24: 54–55. Bodenstein, D. 1953 Studies on the humoral mechanisms in growth and metamorphosis of the cockroach, Periplaneta americana II. The function of the prothoracic gland and the corpora cardiaca. J. Exp. Zool., 123: 413–433. Bodenstein, D. 1954 Endocrine mechanisms in the life of insects. Recent Progr. Hormone Res., 10: 157–182. Bounhiol, J.-J., L. Arvy, et M. Gabe 1953 Données histophysiologiques sur la neuro-sécrétion chez Bombyx mori L., et sur ses rapports avec les glandes endocrines. Bull, biol., 87: 323–333. Bounhiol, J.-J., M. Gabe, et L. Arvy 1954 Données histophysiologiques sur la neuro-sécrétion chez Bombyx mori L et sur ses rapports avec les glandes endocrines. Pubbl. Staz. zool. Napoli, suppl., 24: 52–53. Brandenburg, J. 1956 Das endokrine System des Kopfes von Andrena vaga Pz (Ins. Hymenopt.) und Wirkung der Stylopisation (Stylops, Ins., Strepsipt.). Z. Morphol. Ökol. Tiere, 45: 343–364. Carlisle, D. B. 1953 Studies on Lysmata seticaudata Risso (Crustacea Decapoda) VI. Notes on the structure of the neurosecretory system of the eyestalk. Pubbl. Staz. zool. Napoli, 24: 434–446. Cazal, P. 1948 Les glandes endocrines rétrocérébrales des insectes (étude morphologique). Bull, biol., suppl., 32: 1–227. Clark, R. B. 1956 On the transformation of neurosecretory cells into ordinary nerve cells. K. fysiogr. Sällsk. Lund Förh., 26: 82–89. Day, M. F. 1940 Neurosecretory cells in the ganglia of Lepidoptera. Nature, Lond., 145: 264. Dupont-Raabe, M. 1951 Étude morphologique et cytologique du cerveau de quelques Phasmides. Bull. Soc. zool. Fr., 76: 386–397. Dupont-Raabe, M. 1954a Répartition des activités chromatiques dans le ganglion susoesophagien des Phasmides: mise en évidence d'une région sécrétoire dans la partie deuto et trito-cérébrale. C. R. Acad. Sci., Paris, 238: 950–951. Dupont-Raabe, M. 1954b Le role endocrine du cerveau dans la régulation des phénomènes d'adaptation chromatique et de la ponte chez les Phasmides. Pubbl. Staz. zool. Napoli, suppl., 24: 63–66. Dupont-Raabe, M. 1956 Mise en évidence, chez les Phasmides, d'une troisième paire de nervi corporis cardiaci, voie possible de cheminement de la substance chromactive tritocérébrale vers les corpora cardiaca. C. R. Acad. Sci., Paris, 243: 1240–1243. Engelmann, F. 1957 Die Steuerung der Ovarfunktion bei der Ovoviviparen Schabe Leucophaea maderae (Fabr.). J. Insect Physiol., 1: 257–278. Ewen, A. B. 1960 Gross anatomy of the nervous system and retrocerebral complex of adult Liocoris unctuosus Kelton (Hemiptera: Miridae). Canad. J. Zool., 38: 533–537. Ewen, A. B. 1962 An improved aldehyde fuchsin staining technique for neurosecretory products in insects. Trans. Amer. micr. Soc., 81: 94–96. Foot, N. C., 1933 The Masson trichrome staining methods in routine laboratory use. Stain Tech., 8: 101–110. Fraser, A. 1959 Neurosecretory cells in the abdominal ganglia of larvae of Lucilia caesar (Diptera). Quart. J. micr. Sci., 100: 395–399. Fukuda, S. 1951 The production of the diapause eggs by transplanting the subesophageal ganglion in the silkworm. Proc. Japan Acad., 27: 672–677. Fukuda, S. 1952 Function of the pupal brain and subesophageal ganglion in the production of non-diapause and diapause eggs in the silkworm. Annot. zool. jap., 25: 149–155. Fukuda, S. 1953a Determination of voltinism in the univoltine silkworm. Proc. Japan Acad., 29: 381–384. Fukuda, S. 1953b Determination of voltinism in the multivoltine silkworm. Proc. Japan Acad., 29: 385–388. Fukuda, S. 1953c Alteration of voltinism in the silkworm following transection of pupal esophageal connectives. Proc. Japan Acad., 29: 389–391. Gabe, M. 1954 La ncuro-sécrétion chez les Invertébrés. Année biol., 30: 5–62. Geldiay, S. 1959 Neurosecretory cells in ganglia of the roach, Blaberus craniifer. Biol. Bull., Wood's Hole, 117: 267–274. Gomori, G. 1941 Observations with differential stains on human islets of Langerhans. Amer. J. Path., 17: 395–406. Hanström, B. 1938 Zwei Probleme betreffs der hormonalen Lokalisation im Insektenkopf. Acta Univ. lund, N.F., Avd. 2, 34: 1–17. Hanström, B. 1940 Inkretorische Organe, Sinnesorgane und Nervensystem des Kopfes einiger niederer Insektordnungen. K. svenska Vetensk. Akad. Handl., 3 ser., 18: 266 pp. Hanström, B. 1949 Three principal incretory organs in the animal kingdom. Bull, biol., suppl., 33: 182–209. Hasegawa, K. 1951 Studies in voltinism in the silkworm, Bombyx mori L., with special reference to the organs concerning determination of voltinism (a preliminary note). Proc. Japan Acad., 27: 667–671. Herlant-Meewis, H., et L. Paquet 1956 Neurosécrétion et mue chez Carausius morosus Brdt. Ann. Sci. nat. (Zool.), 18: 163–169. Highnam, K. C. 1958 Activity of the brain/corpora cardiaca system during pupal diapause "break" in Mimas tiliae (Lepidoptera). Quart. J. micr. Sci., 99: 73–88. Highnam, K. C. 1961 The histology of the neurosecretory system of the adult female desert locust, Schistocerca gregaria Quart. J. micr. Sci., 102: 27–38. Imms, A. D. 1957 A General Textbook of Entomology, 9th ed. Methuen and Co., Ltd., London. Johansson, A. S. 1958 Relation of nutrition to endocrine-reproductive functions in the milk-weed bug Oncopeltus fasciatus (Dallas) (Heteroptera: Lygaeidae). Nytt Mag. Zool., 7: 132 pp. Karlson, P. 1956 Biochemical studies on insect hormones. Vitam. & Horm., 14: 227–266. Köpf, H. 1957 Über Neurosekretion bei Drosophila I. Zur Topographie und Morphologie neurosekretorischer Zentren bei der Imago von Drosophila. Biol. Zbl., 76: 28–42. Lee, H. Tsui-Ying 1948 A comparative morphological study of the prothoracic glandular bands of some lepidopterous larvae with special reference to their innervation. Ann. ent. Soc. Amer., 41: 200–205. Lees, A. D. 1952 The Physiology of Diapause in Arthropods. Cambridge University Press. Lhoste, J. 1953 Données histophysiologiques sur les cellules neurosécrétrices céphaliques et le complexe retrocérébrale de Forficula auricularia L. Arch. Zool. exp. gén., 89: 169–183. Matsumoto, K. 1956 Migration of the neurosecretory products in the thoracic ganglia of the crab, Chionoectes opilio. Biol. J. Okayama Univ., 2: 137–146. Nayar, K. K. 1953 Neurosecretion in Iphita limbata Stal. Curr. Sci., 22: 149. Nayar, K. K. 1954 Corpus allatum in Iphita limbata Stal. Curr. Sci., 23: 26–27. Nayar, K. K. 1955 Studies on the neurosecretory system of Iphita limbata Stal I. Distribution and structure of the neurosecretory cells of the nerve ring. Biol. Bull., Wood's Hole, 108: 296–307. Nayar, K. K. 1956 Studies on the neurosecretory system of Iphita limbata Stal (Hemiptera). Part III. The endocrine glands and the neurosecretory pathways in the adult. Z. Zellforsch., 44: 697–705. Nayar, K. K. 1957 Probable endocrine mechanism controlling oviposition in the insect Iphita limbata Stal. Zweites internationales Symposium über Neurosekretion, Lund, Springer-Verlag, Berlin, 1958, pp. 102–104. Nayar, K. K. 1958 Studies on the neurosecretory system of Iphita limbata Stal Part V. Probable endocrine basis of oviposition in the female insect. Proc. Indian Acad. Sci., B, 47: 233–251. Novák, V. J. A. 1959 Insektenhormone. Verlag der Tsechechoslowakischen Akademie der Wissenschaften, Prague, 283 pp. Pflugfelder, O. 1936 Vergleichend-anatomische, experimentelle und embryologische Untersuchungen über das Nerven-system und die Sinnesorgane der Rhynchoten. Zoologica, Stuttgart, 34: 102 pp. Pflugfelder, O. 1937 Bau, Entwicklung und Funktion der Corpora allata und cardiaca von Dixippus morosus Br. Z. wiss. Zool., 149: 477–512. Pflugfelder, O. 1947 Über die Ventraldrüsen und einige andere inkretorische Organe des Insektenkopfes. Biol. Zbl., 66: 211–235. Pflugfelder, O. 1952 Entwicklungsphysiologie der Insekten. Akademische Verlagsgesellschaft, Leipzig, Geest fie Portig K.-G., 332 pp. Possompès, B. 1953 Recherches expérimentales sur le déterminisme de la métamorphose de Calliphora erythrocephala Meig. Arch. Zool. exp. gén., 89: 203–364. Scharrer, B. 1948 The prothoracic glands of Leucophaea maderae (Orthoptera). Biol. Bull., Wood's Hole, 95: 186–198. Scharrer, B. 1952 Neurosecretion XI The effects of nerve section on the intercerebralis — cardiacum — allatum system of the insect Leucophaea maderae. Biol. Bull., Wood's Hole, 102: 261–272. Scharrer, B. 1955 Aberrations in the distribution of neurosecretory cells in the subesophageal ganglion of Leucophaea maderae (Blattaria). Anat. Rec., 122: 489–490. Scharrer, E., and B. Scharrer 1945 Neurosecretion. Physiol. Rev., 25: 171–181. Scharrer, E., and B. Scharrer 1954 Hormones produced by neurosecretory cells. Recent Progr. Hormone Res., 10: 183–240. Sloper, J. C. 1957 Presence of a substance rich in protein-bound cystine or cysteine in the neurosecretory system of an insect. Nature, Lond., 179: 148–149. Thomsen, E. 1948 Effect of removal of neurosecretory cells in the brain of adult Calliphora erythrocephala Meig. Nature, Lond., 161: 439–440. Thomsen, E. 1952 Functional significance of the neurosecretory brain cells and the corpus cardiacum in the female blow-fly, Calliphora erythrocephala Meig. J. exp. Biol., 29: 137–172. Thomsen, M. 1954 Neurosecretion in some Hymenoptera. K. danske vidensk. Selsk., 7: 1–24. van der Kloot, W. G. 1960 Neurosecretion in insects. Annu. Rev. Ent., 5: 35–52. Wells, M. J. 1954 The thoracic glands of Hemiptera Heteroptera. Quart. J. micr. Sci., 95: 231–244. Wigglesworth, V. B. 1934 The physiology of ecdysis in Rhodnius prolixus (Hemiptera) II. Factors controlling moulting and "metamorphosis.". Quart. J. micr. Sci., 77: 191–222. Wigglesworth, V. B. 1952 The thoracic gland in Rhodnius prolixus (Hemiptera) and its role in moulting. J. exp. Biol., 29: 561–570. Wigglesworth, V. B. 1954 The Physiology of Insect Metamorphosis. Cambridge University Press. Wigglesworth, V. B. 1956 The haemocytes and connective tissue formation in an insect, Rhodnius prolixus (Hemiptera). Quart, J. micr. Sci., 97: 89–98. Williams, C. M. 1947a Physiology of insect diapause II Interaction between the pupal brain and prothoracic glands in the metamorphosis of the giant silkworm, Platysamia cecropia. Biol. Bull., Wood's Hole, 93: 89–98. Williams, C. M. 1947b The endocrinology of diapause. Bull, biol., suppl., 33: 52–56. Williams, C. M. 1948 Extrinsic control of morphogenesis as illustrated in the metamorphosis of insects. Growth, suppl., 12: 61–74. Citing Literature Volume111, Issue3November 1962Pages 255-273 ReferencesRelatedInformation

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