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Photoperiodic activation of brains in castrates and the role of the gonad in reproductive maturation ofLimax maximus

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Summary

Results obtained with castration and gonad implantation verify that a factor(s) from the gonad is required for development of the female accessory sex organs (ASO) inLimax maximus. In addition, they show that a gonadal factor promotes rapid gonadal growth and sperm production, and gradual or incomplete development of the penis. Although an immature slug that is castrated and then switched to inductive photoperiods fails to exhibit reproductive tract maturation, in two differently designed experimental tests, the brains of such animals were able to promote sexual maturation when subsequently paired with an immature gonad. We interpret the results of these experiments as evidence for photoperiodic induction of secretion of maturation-inducing factor (MH) by the brain in the absence of the gonad. One or more gonadal hormones appear to be both necessary and sufficient for production of sperm and for development of ASO, but they are not required for the photoperiodic stimulation of MH release.

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Abbreviations

ASO :

accessory sex organs

MH :

maturation hormone

References

  • Abeloos M (1943) Effets de la castration chez un mollusque,Umax maximus L. CR Acad Sci Paris 216:90–91

    Google Scholar 

  • Beck SD (1980) Insect photoperiodism, 2nd edn. Academic Press, New York

    Google Scholar 

  • Boer HH, Mohamed AM, Minnen J van, Jong-Brink M de (1976) Effects of castration on the activity of the freshwater pulmonate snailBulinus truncatus, intermediate host ofSchistosoma haematobium. Neth J Zool 26:94–105

    Google Scholar 

  • Brisson P (1967) La castration chirurgicale chezBulinus (contortus Michaud)truncatus (Audouin) (Mollusque gastéropode pulmoné). CR Acad Sci Paris 264D:131–133

    Google Scholar 

  • Bünning E (1973) The physiological clock; circadian rhythms and biological chronometry, 3rd edn. Springer, New York

    Google Scholar 

  • Conover WJ (1980) Practical nonparametric statistics, 2nd edn. John Wiley, New York

    Google Scholar 

  • de Jong-Brink M, Borg JP ter, Bergamin-Sassen MJM, Boer HH (1979) Histology and histochemistry of the reproductive tract of the pulmonate snail,Bulinus truncatus, with observations on the effects of castration on its growth and histology. Int J Inv Reprod 1:41–56

    Google Scholar 

  • Farner DS (1985) Annual rhythms. Annu Rev Physiol 47:65–85

    Google Scholar 

  • Farner DS, Wingfield JC (1980) Reproductive endocrinology of birds. Annu Rev Physiol 42:457–472

    Google Scholar 

  • Follett BK, Follett DE (eds) (1981) Biological clocks in seasonal reproductive cycles. John Wiley, New York

    Google Scholar 

  • Gomot L (1976) Ultrastructural changes in the multifid glands of the snailHelix aspersa following castration. Gen Comp Endocrinol 29:298

    Google Scholar 

  • Gomot L (1982) Endocrinologie de la sexualité et de la reproduction chez les pulmonés stylommatophores. Malacologia 22:115–119

    Google Scholar 

  • Gomot L, Colard L (1985) Étude du contrôle de l'activité sécrétrice des glandes multifides par castration et greffe chez l'escargotHelix aspersa. Gen Comp Endocrinol 58:159–168

    Google Scholar 

  • Hogg NAS, Wijdenes J (1979) A study of gonadal organogenesis, and the factors influencing regeneration following surgical castration inDeroceras reticulatum (Pulmonata: Limacidae). Cell Tissue Res 198:295–307

    Google Scholar 

  • Joosse J, Geraerts WPM (1983) Endocrinology. In: Saleuddin ASM, Wilbur KM (eds) The mollusca, vol 4, physiology, part 1. Academic Press, New York, pp 317–406

    Google Scholar 

  • Eaviolette P (1954a) Rôle de la gonade dans le déterminisme humoral de la maturité glandulaire du tractus génital chez quelques gastéropodes Arionidae et Limacidae. Bull Biol Fr Belg 88:310–332

    Google Scholar 

  • Laviolette P (1954b) Étude cytologique et expérimentale de la régénération germinale après castration chezArion rufus L. (Gastéropode Pulmoné). Ann Sci Nat Zool IIeme Ser 16:427–535

    Google Scholar 

  • Lever J, Boer HH (eds) (1983) Molluscan neuro-endocrinology. North Holland, Amsterdam

    Google Scholar 

  • McCrone EJ, Sokolove PG (1979) Brain-gonad axis and photoperiodically-stimulated sexual maturation in the slug,Limax maximus. J Comp Physiol 133:117–123

    Google Scholar 

  • McCrone EJ, Minnen J van, Sokolove PG (1981) Slug reproductive maturation hormone: In vivo evidence for long-day stimulation of secretion from brains and cerebral ganglia. J Comp Physiol 143:311–315

    Google Scholar 

  • Porter R, Collins GM (eds) (1984) Photoperiodic regulation of insect and molluscan hormones. Pittman, London (Ciba Foundation Symposium 104)

    Google Scholar 

  • Runham NW (1976) The effects of castration on maturation of the reproductive tract of the pulmonate slug,Agriolimax reticulatus. Gen Comp Endocrinol 29:293–294

    Google Scholar 

  • Runham NW (1978) Reproduction and its control inDeroceras reticulatum. Malacologia 17:341–350

    Google Scholar 

  • Runham NW, Hogg N (1979) The gonad and its development inDeroceras reticulatum (Pulmonata: Limacidae). Malacologia 18:391–399

    Google Scholar 

  • Runham NW, Bailey TG, Laryea AA (1973) Studies of the endocrine control of the reproductive tract of the grey field slugAgriolimax reticulatus. Malacologia 14:135–142

    Google Scholar 

  • Saunders DS (1981) Insect photoperiodism — the clock and the counter: a review. Physiol Entomol 6:99–116

    Google Scholar 

  • Sokolove PG, McCrone EJ (1978) Reproductive maturation in the slug,Limax maximus, and the effects of artificial photoperiod. J Comp Physiol 125:317–325

    Google Scholar 

  • Sokolove PG, McCrone EJ, Minnen J van, Duncan WC (1984) Reproductive endocrinology and photoperiodism in a terrestrial slug. In: Porter R, Collins GM (eds) Photoperiodic regulation of insect and molluscan hormones. Pittman, London (Ciba Foundation Symposium 104), pp 189–199

    Google Scholar 

  • Stamler JF, Kater SB, Murphy AD, Bulloch AGM (1982) Neuritic growth and neuroma formation by an isolated molluscan ganglion. J Neurobiol 13:85–89

    Google Scholar 

  • Takeda N (1980) Hormonal control of head-wart development in the snail,Euhadra peliomphala. J Embryol Exp Morphol 60:57–69

    Google Scholar 

  • Takeda N (1983) Endocrine regulation of reproduction in the snail,Euhadra peliomphala. In: Lever J, Boer HH (eds) Molluscan neuro-endocrinology. North Holland, Amsterdam, pp 106–111

    Google Scholar 

  • Takeda N, Tsuruoka H (1979) A sex pheromone secreting gland in the terrestrial snail,Euhadra peliomphala. J Exp Zool 207:17–26

    Google Scholar 

  • Turek FW, Campbell CS (1979) Photoperiodic regulation of neuroendocrine-gonadal activity. Biol Reprod 20:32–50

    Google Scholar 

  • Vianey-Liaud M (1979) Action de la castration partielle ou totale sur la croissance et le fonctionnement de l'appareil génital chez le planorbeBiomphalaria glabrata (gastéropode pulmoné). Experientia 35:188–190

    Google Scholar 

  • Wijdenes J (1981) Experiments on the endocrine control of penial complex maturation in the slugAgriolimax reticulatus (Pulmonata: Limacidae). Proc Kon Ned Akad Wet (C) 84:107–114

    Google Scholar 

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McCrone, E.J., Sokolove, P.G. Photoperiodic activation of brains in castrates and the role of the gonad in reproductive maturation ofLimax maximus . J. Comp. Physiol. 158, 151–158 (1986). https://doi.org/10.1007/BF01338558

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