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Type: Article
Published: 2009-02-11
Page range: 1–22
Abstract views: 181
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Genetic identification and color descriptions of early life-history stages of Belizean Phaeoptyx and Astrapogon (Teleostei: Apogonidae) with Comments on identification of adult Phaeoptyx

National Museum of Natural History, Smithsonian Institution, P.O. Box 37012, Washington, DC 20013–7012
National Museum of Natural History, Smithsonian Institution, P.O. Box 37012, Washington, DC 20013–7012
National Museum of Natural History, Smithsonian Institution, P.O. Box 37012, Washington, DC 20013–7012
National Museum of Natural History, Smithsonian Institution, P.O. Box 37012, Washington, DC 20013–7012
Fish DNA Barcoding fish larvae chromatophores Belize

Abstract

Phaeoptyx and Astrapogon are represented in the Caribbean by six species (P. conklini, P. pigmentaria, P. xenus, A. alutus, A. stellatus, and A. puncticulatus). Species identification of larvae and juveniles is problematic because characters used to distinguish adults (e.g., patterns of pigmentation and numbers of gill rakers) are absent, incomplete, or difficult to discern in the young stages. Neighbor-joining trees derived from mitochondrial cytochrome oxidase 1 sequences (DNA Barcoding) were used to match early life stages and adults. Subsequent comparative analysis of preserved voucher specimens from which the DNA was extracted or digital color photographs of those specimens taken prior to preservation yielded sufficient information to separate all early life-history stages of Belizean Phaeoptyx and Astrapogon and provided additional information for field identification of adult Phaeoptyx. Patterns of chromatophores in fresh material, combined with patterns of melanophores, provide the easiest means of separating the life-history stages of Phaeoptyx. Larvae of Astrapogon species are morphologically very similar, and some differences in pigmentation detected among them may reflect different stages of development. Continued implementation of the DNA Barcoding methods and field protocol outlined herein should prove valuable in accurately identifying much more of the ichthyoplankton fauna of the Caribbean.

References

  1. Baldwin, C.C. & Smith, D.G. (2003) Larval Gobiidae (Teleostei: Perciformes) of Carrie Bow Cay, Belize, Central America. Bulletin of Marine Science, 72, 639–674.

    Böhlke, J.E. & Chaplin, C.C.G. (1968) Fishes of the Bahamas and Adjacent Tropical Waters. Second Edition. University of Texas Press, Austin, 771 pp.

    Böhlke, J.E. & Randall, J.E. (1968) A key to the shallow-water Atlantic cardinalfishes (Apogonidae), with descriptions of five new species. Proceedings of the Academy of Natural Sciences of Philadelphia, 120, 175–206.

    Gon, O. (2002) Apogonidae. In: Carpenter, K. (Ed.), The living marine resources of the Western Central North Atlantic. Vol. 3: Bony fishes part 2 (Opistognathidae to Molidae), sea turtles and marine mammals. FAO Species Identification Guide for Fishery Purposes and American Society of Ichthyologists and Herpetologists Special Publication No. 5, Rome, pp. 1386–1391.

    Kimura, M. (1980) A simple method for estimating evolutionary rates of base substitutions through comparative studies of nucleotide sequences. Journal of Molecular Evolution, 16, 111–120.

    Lara, M.R. (2006) Apogonidae: Cardinalfishes. In: Richards, W.J. (Ed.), Early stages of Atlantic fishes: an identification guide for western central North Atlantic. CRC Press, Boca Raton, pp. 1363–1399.

    Richards, W.J. (Ed., 2006) Early stages of Atlantic fishes: an identification guide for western central North Atlantic. CRC Press, Boca Raton, 2640 pp.

    Saitou, N. & Nei, M. (1987) The neighbor-joining method: a new method for reconstructing phylogenetic trees. Molecular Biology and Evolution, 4, 406–425.

    Seutin, G., White, B.N. & Boag, P.T. (1990) Preservation of avian blood and tissue samples for DNA analysis. Canadian Journal of Zoology, 69, 82–90.

    Smith, D.G. (1995) Preservation of color in larval fishes. Curation Newsletter No. 11, American Society of Ichthyologists and Herpetologists, May 4, 1995, pp. 5–6.

    Smith, D.G & Thacker, C.E. (2000) Late-stage larvae of the Family Microdesmidae (Teleostei, Gobioidei) from Belize, with notes on systematics and biogeography in the western Atlantic. Bulletin of Marine Science, 67, 997–1012.

    Swofford, D.L. (2002) PAUP*. Phylogenetic Analysis Using Parsimony (*and other methods), version 4beta10. Sinauer, Sunderland, MA.

    Victor, B. (2008) A photographic guide to the larvae of coral reef fishes. Available from: http://www.coralreeffish.com/larvae.html/ (accessed14 February 2008)