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XV.—Hermaphroditism in the Herring (Clupea harengus L.)*

Published online by Cambridge University Press:  11 June 2012

F. G. T. Holliday
Affiliation:
Natural History Department, University of Aberdeen.
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Synopsis

Four specimens of hermaphrodite herring are described. In three, the male portion of the gonad was at a later stage of development than the female; in the fourth both portions were fully mature and eggs and sperm were being shed together. The additional muscle block characteristic of the cloacal region of the male herring was present, but much reduced, in the two hermaphrodite fish which were examined for this character. The time difference in the maturation rates of the male and female portions is discussed in relation to the pituitary control of gametogenesis.

Type
Research Article
Copyright
Copyright © Royal Society of Edinburgh 1962

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Footnotes

*

This paper was assisted in publication by a grant from the Carnegie Trust for the Universities of Scotland.

References

References to Literature

Atz, J. W., and Pickford, G. E., 1959. “The Use of Pituitary Hormones in Fish Culture”, Endeavour, 18, 125129.CrossRefGoogle Scholar
Bowers, A. B., and Holliday, F. G. T., 1961. “Histological Changes in the Gonad Associated with the Reproductive Cycle of the Herring (Clupea harengus L.)”, Mar. Res. Scot., 5.Google Scholar
Buchmann, H., 1940. “Hypophyse und Thyreoidea im Individualzyklus des Herings”, Zool.Jb., 66, 196223.Google Scholar
Bullough, W. S., 1940. “A Case of Hermaphroditism in the Herring (Clupea harengus, Linn.)”, Proc. Leeds Phil. Lit. Soc, 3, 638641.Google Scholar
D'ancona, U., 1945. “Sexual Differentiation of the Gonad and the Sexualization of the Germ Cells in Teleosts “, Nature, Lond., 156, 603604.CrossRefGoogle ScholarPubMed
D'ancona, U., 1949. “Ermafroditismo ed intersessualita nei teleostei”, Experientia, 5, 381389.CrossRefGoogle ScholarPubMed
Ehrenbaum, E., 1930. “Meeting of Herring Experts, held at Fisheries Laboratory, Lowestoft, England Nov. 4th–7th 1930”, Rapp. Cons. Explor. Mer., 74, 116120.Google Scholar
Essenberg, I. M., 1923. “Sex Differentiation in the Viviparous Teleost Xiphophorus helleri Heckel”, Biol. Bull., Wood's Hole, 45, 4697.CrossRefGoogle Scholar
Freund, L., 1909. “Hermaphroditismus bei Clupea harengus”, Lotos, 57, 9798.Google Scholar
Gabler, H., 1930. “Zwei Faelle von Zwittergonaden bei Clupea harengus L.”, Zool. Anz., 91, 7275.Google Scholar
Goldschmidt, R., 1931. Die sexuellen zwischenstuten (Berlin 1931).CrossRefGoogle Scholar
Gordon, M., 1957. Physiological Genetics of Fishes. In The Physiology of Fishes, 2, 431501. New York: Academic Press Inc. Ed. Brown, M. E..CrossRefGoogle Scholar
Grimpe, G., 1926. “Uebar eine merkwuerdige Zwittergonade des Herings (Clupea harengus L.) “, S.B. Naturf. Ges. Lpz., 49–52, 6070.Google Scholar
Holliday, F. G. T., 1959. “Aspects of the Spawning Behaviour of the Herring”, Rep. Challenger Soc, 23.Google Scholar
Holliday, F. G. T., 1960. “The Control of Maturation in the Herring”,I.C.E.S. Herring Committee CM., 39, 14.Google Scholar
Langrand, E., 1914. “Cas d'hermaphroditisme chez le hareng”, Feuill. Jeun. Nat., 44, 92.Google Scholar
Pigeon, D., 1898. “Hermaphroditism in the Herring”, Nature, Lond., 57, 271.CrossRefGoogle Scholar
Smith, J. A., 1870. “Notice of True Hermaphrodism in the Codfish (Morhua vulgaris) and in the Herring (Clupea harengus)”, J. Anat., Lond., 4, 256258.Google Scholar
Smitt, F. A., 1882. “Description d'un hareng hermophrodite”, Arch. Biol., 3, 259274Google Scholar
Southwell, T., 1903. “On a Hermaphrodite Example of the Herring (Clupea harengus)”, Ann. Mag. Nat. Hist., 9, 195196.CrossRefGoogle Scholar
Vogt, C, 1882. “Notice sur un hareng hermaphrodite”, Arch. Biol., 3, 255258.Google Scholar