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The role of controlled propagation on an endangered species: demographic effects of habitat heterogeneity among captive and native populations of the socorro isopod (Crustacea: Flabellifera)

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Abstract

The Socorro isopod, Thermosphaeroma thermophilum, became the focus of a novel conservation strategy when apparent extirpation of the species from the wild prompted construction of the Socorro Isopod Propagation Facility (SIPF) near the native spring in Socorro, New Mexico, USA. We subjected captive populations to 4 habitat treatments over 2 consecutive 50-month experimental trials. Native populations of T. thermophilum remained significantly more abundant than captive subpopulations during the 100-month study. Population trends among artificial habitats differed slightly between the trials, but the magnitude of this difference was independent of linear flow within either pool series, suggesting that captive isopods responded to habitat quality. Isopod age structure was most heterogeneous in pools with plants suggesting that vertical structural diversity is necessary to maintain long-term viability of T. thermophilum in captivity. Observations of `breeding huddles' in the SIPF pools implied that controlled propagation may affect the social basis of the species' mating system. This could be a behavioral response to selection on body size that may reduce predation risks from larger male cannibals, or to increase fitness of both sexes under spatially altered sex ratios of artificial environments. Our results accentuate the need for continued research on species-specific management practices for geographically restricted invertebrate taxa such as the endangered Socorro isopod.

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References

  • Bowman T.E. 1981. Thermosphaeroma milleri and T. smithi, new sphaeromatid isopod crustaceans from hot springs in Chihuahua, Mexico, with a review of the genus. J. Crustacean Biol. 1: 105–122.

    Article  Google Scholar 

  • Bowman T.E. 1985. Thermosphaeroma cavicauda and T. macrura, new sphareromatid isopods from Mexican hot springs. Proceedings of the Biological Society of Washington 98(4): 1042–1047.

    Google Scholar 

  • Caughley G. and Gunn A. (1996). Conservation Biology in Theory and practice. Blackwell Science, Cambridge, Massachusetts, USA, 459

    Google Scholar 

  • Conway W.G. (1980). An overview of captive propagation. In: Soulé, M.E. and Wilcox, B.A. (eds) Conservation Biology: An Evolutionary-Ecological Prospective, pp 198–208. Sinauer Associates Inc., Sunderland Massachusetts USA

    Google Scholar 

  • Davis G. 1996. Molecular systematics of Theromsphaeroma isopods and the calibration of a molecular clock. M.S. Thesis, Northern Arizona University, Flagstaff.

  • Federal Register 1978. Endangered and threatened wildlife and plants; final rule to list the Alamosa Springsnail and Socorro Isopod 56: 50646–50650.

  • Federal Register 2000. Policy regarding controlled propagation of species listed under the Endangered Species Act 6556916–56922.

  • Hurlbert S.H. (1984). Pseudoreplication and the design of ecological field experiments. Ecol. Monogr. 54(2): 187–212

    Article  Google Scholar 

  • Jormalainen V. and Shuster S.M. 1997. Microhabitat segregation and cannibalism in an endangered freshwater isopod, Thermosphaeroma thermophilum. Oecologia 111: 271–279.

    Article  Google Scholar 

  • Jormalainen V. and Shuster S.M. (1999). Female reproductive cycles and sexual conflict over precopulatory mate-guarding in Thermosphaeroma isopods. Ethology 105: 233–246

    Article  Google Scholar 

  • Jormalainen V., Shuster S.M. and Wildey H.C. 1999. Reproductive anatomy, precopulatory mate guarding, and paternity in the Socorro isopod, Thermosphaeroma thermophilum. Mar. Freshwater Behav. Physiol. 32: 39–56.

    Article  Google Scholar 

  • Ketner R.L., Shuster S.M. and Lang B.K. (2002). The effects of cannibalism on life history characteristics in the endangered Socorro IsopodThermosphaeroma thermophilum (Crustacea: Isopoda). J. Arizona-Nevada Acad. Sci. 37: 6–7

    Google Scholar 

  • Lang B.K. 2001. New Mexico Endangered Invertebrates: Monitoring and Management. New Mexico Department of Game and Fish. Completion Report to the Division of Federal Aid, U.S. Fish and Wildlife Service, Albuquerque, New Mexico.

  • Loftin R. (1995). Captive breeding of endangered species. In: Norton, B.G., Hutchins, M., Stevens, E.F. and Maple, T.L. (eds) Ethics on the Ark: Zoos, Animal Welfareand Wildlife Conservation, pp 164–183. Smithsonian Institution Press, Washington, DC, USA

    Google Scholar 

  • Meffe G.K. and Carroll C.R. (1997). Principles of Conservation Biology. Sinauer Associates, Sunderland, Massachusetts

    Google Scholar 

  • Primack R.B. (1998). Essentials of Conservation Biology. Sinauer Associates, Sunderland, Massachusetts

    Google Scholar 

  • Richardson H. (1897). Description of a new crustacean of the genus Sphaeroma from a warm spring in New Mexico. Proceedings of the United States National Museum 20: 465–707

    Google Scholar 

  • Schotte M. 2001. Thermosphaeroma mendozai, a new species from hot springs in northern Chihuahua, Mexico (Crustacea: Isopoda: Sphaeromatidae). Proc. Biol. Soc. Washington 113(4): 989–995.

    Google Scholar 

  • Shuster S.M. (1981a). Life history characteristics of Thermosphaeroma thermophilumthe Socorro isopod (Crustacea: Peracarida). Biol. Bull. 161: 291–302

    Google Scholar 

  • Shuster S.M. 1981b. Sexual Selection in the Socorro isopod, Thermosphaeroma and thermophilum (Cole) (Crustacea: Peracarida). Anim. Behav. 29: 698–707.

    Article  Google Scholar 

  • Shuster S.M., Miller M.P., Lang B.K., Zorich N., Huynh L. and Keim P. (2005). The effects of controlled propagation on an endangered species: genetic differentiation and divergence in body size among native and captive populations of the Socorro isopod (Crustacea: Flabellifera). Conserv. Genet. 6: 355–368

    Article  Google Scholar 

  • Soulé M.E. and Wilcox B.A. (1980). Conservation Biology: An Evolutionary-Ecological Perspective. Sinauer Associates, Inc. Sunderland, MA, USA

    Google Scholar 

  • Summers W.K. 1976. Catalog of thermal waters in New Mexico. New Mexico Bureau of Mines and Mineral Resources. Hydrologic Report 4.

  • United States Fish and Wildlife Service (1982). Socorro Isopod (Thermosphaeroma thermophilum) Recovery Plan. Albuquerque, New Mexico

    Google Scholar 

  • Zar J.H. (1999). Biostatistical Analysis, 4th edition. Prentice Hall, Upper Saddle RiverNew Jersey, USA

    Google Scholar 

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Correspondence to Brian K. Lang.

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Lang, B.K., Kelt, D.A. & Shuster, S.M. The role of controlled propagation on an endangered species: demographic effects of habitat heterogeneity among captive and native populations of the socorro isopod (Crustacea: Flabellifera). Biodivers Conserv 15, 3909–3935 (2006). https://doi.org/10.1007/s10531-005-2094-4

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  • DOI: https://doi.org/10.1007/s10531-005-2094-4

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