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Type: Correspondence
Published: 2010-12-06
Page range: 52–54
Abstract views: 45
PDF downloaded: 13

Carybdea alata auct. (Cubozoa): rediscovery of the Alatina grandis type

Department of Ecology and Evolutionary Biology, The University of Kansas, 1200 Sunnyside Avenue, Lawrence, KS 66045, USA NMFS, National Systematics Laboratory, National Museum of Natural History, MRC-153, Smithsonian Institution, PO Box 37012, Washington, DC 20013-7012, USA
Coelenterata Cubozoa

Abstract

Numerous nominal species have been considered synonymous with Carybdea alata Reynaud, 1830 (cf. Gershwin 2005). A recent revision concluded that several of the species collectively referred to as C. alata are valid and indeed separate species (Gershwin 2005; but see also Bentlage et al. 2010). Additionally, these species (including C. alata) were moved into the genus Alatina Gershwin 2005 (family Alatinidae Gershwin, 2005) because of stark morphological differences they display compared to the other species of Carybdea. In particular, Alatina species possess crescentic phacellae and a rhopaliar niche ostium that is covered by a single upper and two lateral scales (t-shaped sensu Gershwin 2005; cf. Bigelow 1938) compared to a single upper covering scale (heart-shaped sensu Gershwin 2005; cf. Bigelow 1938) and epaulette-like or linear phacellae in the corners of the stomach in Carybdea species. Recent molecular phylogenetic analyses support the separation of Carybdea and Alatina (Bentlage et al. 2010). Alatina grandis posed a problem in Gershwin's (2005) revision, as the type of this species appeared to be lost to science, preventing a closer investigation of its identity. I located a type specimen of the species in the collections of the National Museum of Natural History, Smithsonian Institution (USNM). The purpose of this letter is to draw attention to this important specimen, and highlight directions for future studies on the evolutionary history of the genus Alatina.

References

  1. Agassiz, A. & Mayer, A.G. (1902) Reports on the scientific results of the expedition to the tropical Pacific, in charge of Alexander Agassiz, by the U.S. Fish Commission steamer “Albatross,” from August, 1899, to March, 1900, Commander Jefferson F. Moser, U. S. N., commanding. III. Medusae. Memoirs of the Museum of Comparative Zoölogy at Harvard College, 26, 139–176 (pl. 6).

    Bentlage, B., Cartwright, P., Yanagihara, A.A., Lewis, C., Richards, G.S. & Collins, A.G. (2010) Evolution of box jellyfish (Cnidaria: Cubozoa), a group of highly toxic invertebrates. Proceedings of the Royal Society B, 277, 493–501.

    Bigelow, H.B. (1938) Plankton of the Bermuda oceanographic expeditions. VII. Medusae taken during the years 1929 and 1930. Zoologica. Scientific contributions of the New York Zoological Society, 23, 99–189.

    Gershwin, L. (2005) Carybdea alata auct. and Manokia stiasnyi, reclassification to a new family with description of a new genus and two new species. Memoirs of the Queensland Museum, 51, 501–523.

    Mariscal, R.N. (1974) Nematocysts. In: Muscatine, L., & Lenhoff, H.M. (Eds.), Coelenterate biology – reviews and new perspectives. Academic Press, New York, pp. 129–178.

    Mayer, A.G. (1910) Medusae of the World. Volume III. The Scyphomedusae. Carnegie Institution of Washington Publication, 109(3), 499–735 pp.

    Östman, C. (2000) A guideline to nematocyst nomenclature and classification, and some notes on the systematic value of nematocysts. In: Mills, C.E., Boero, F., Migotto A., & Gili J.M. (Eds.), Trends in hydrozoan biology – IV. Scientia Marina, 64 (Supl. 1), 31–46.