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Phylogeography of the blue land crab, Cardisoma guanhumi (Decapoda: Gecarcinidae) along the Brazilian coast

Published online by Cambridge University Press:  22 July 2008

José F. De Oliveira-Neto
Affiliation:
Departamento de Zoologia, Universidade Federal do Paraná, Curitiba, PR, Brazil Grupo Integrado de Aqüicultura e Estudos Ambientais, Universidade Federal do Paraná, Curitiba, PR, Brazil
Marcio R. Pie*
Affiliation:
Departamento de Zoologia, Universidade Federal do Paraná, Curitiba, PR, Brazil Grupo Integrado de Aqüicultura e Estudos Ambientais, Universidade Federal do Paraná, Curitiba, PR, Brazil
Marcelo A. Chammas
Affiliation:
Grupo Integrado de Aqüicultura e Estudos Ambientais, Universidade Federal do Paraná, Curitiba, PR, Brazil
Antonio Ostrensky
Affiliation:
Departamento de Zootecnia, Universidade Federal do Paraná, Curitiba, PR, Brazil Grupo Integrado de Aqüicultura e Estudos Ambientais, Universidade Federal do Paraná, Curitiba, PR, Brazil
Walter A. Boeger
Affiliation:
Departamento de Zoologia, Universidade Federal do Paraná, Curitiba, PR, Brazil Grupo Integrado de Aqüicultura e Estudos Ambientais, Universidade Federal do Paraná, Curitiba, PR, Brazil
*
Correspondence should be addressed to: Marcio R. Pie, Departamento de Zoologia, Caixa Postal 19073, Universidade Federal do Paraná. Curitiba, PR 81531–990, Brazil email: [email protected]

Abstract

Several crab species are important fishery resources in Brazil and their overexploitation has lead to severe population declines in some regions. The management of populations of these species should take into account the degree of gene flow among populations in different estuaries. The goal of the present study is to assess the degree of geographical structure in the genetic diversity of the blue land crab, Cardisoma guanhumi, along the Brazilian coast. A fragment of the control region of the mtDNA (750 bp) was sequenced for 95 specimens collected across 5 Brazilian states. Analyses using F-statistics failed to indicate any evidence of geographical structure, a result that was corroborated by a nested clade analysis of the same dataset. Mismatch distribution analyses indicated that populations of the blue land crab have experienced an expansion during their recent evolutionary past. The obtained results are similar to those recently described for another sympatric crab, Ucides cordatus, particularly with respect to the extensive degree of gene flow. However, populations of C. guanhumi seem to be older than those of U. cordatus and do not show the north–south expansion found in that species.

Type
Research Article
Copyright
Copyright © Marine Biological Association of the United Kingdom 2008

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References

REFERENCES

Amaral, A.C.Z. and Jablonski, S. (2005) Conservação da biodiversidade marinha e costeira no Brasil. Megadiversidade 1, 4351.Google Scholar
Avise, J.C., Neigel, J.E. and Arnold, J. (1984) Demographic influences on mitochondrial DNA lineage survivorship in animal populations. Journal of Molecular Evolution 20, 99105.CrossRefGoogle ScholarPubMed
Cassone, B.J. and Boulding, E.G. (2006) Genetic structure and phylogeography of the lined shore crab, Pachygrapsus crassipes, along the northeastern and western Pacific coasts. Marine Biology 149, 213226.CrossRefGoogle Scholar
Diniz, F.M., Maclean, N., Ogawa, M., Cintra, I.H.A. and Bentzen, P. (2005) The hypervariable domain of the mitochondrial region in Atlantic spiny lobsters and its potential as a marker for investigating phylogeographic structuring. Marine Biotechnology 7, 462473.CrossRefGoogle ScholarPubMed
Excoffier, L., Laval, G. and Schneider, S. (2005) Arlequin ver. 3.0: an integrated software package for population genetics data analysis. Evolutionary Bioinformatics Online 1, 4750.Google Scholar
Frankham, R., Ballou, J.D. and Briscoe, D.A. (2002) Introduction to conservation genetics. Cambridge: Cambridge University Press.CrossRefGoogle Scholar
Fratini, S. and Vannini, M. (2002) Genetic differentiation in the mud crab Scylla serrata (Decapoda: Portunidae) within the Indian Ocean. Journal of Experimental Marine Biology and Ecology 272, 103116.CrossRefGoogle Scholar
Fu, Y.X. (1997) Statistical tests of neutrality of mutations against population growth, hitchhiking and background selection. Genetics 147, 915925.CrossRefGoogle ScholarPubMed
Gifford, C.A. (1962) Some observations on the general biology of the land crab, Cardisoma guanhumi (Latneilla), in South Florida. Biological Bulletin. Marine Biological Laboratory, Woods Hole 123, 207223.CrossRefGoogle Scholar
Harpending, R.C. (1994) Signature of ancient population growth in low-resolution mitochondrial DNA mismatch distribution. Human Biology 66, 591600.Google ScholarPubMed
Hill, K. (2001) ‘Cardisoma guanhumi’ (On-line). Accessed 28 December 2008 at http://www.sms.si.edu/IRLSpec/Cardis_guanhu.htm.Google Scholar
McMillen-Jackson, L. and Bert, T.M. (2004) Mitochondrial DNA variation and population genetic structure of the blue crab Callinectes sapidus in the eastern United States. Marine Biology 145, 769777.Google Scholar
Melo, G.A.S. (1996) Manual de identificação dos brachyura (caranguejos e siris) do litoral Brasileiro. São Paulo: Plêiade/FAPESP, 604 pp.Google Scholar
Mesquita, A.R. and Harari, J. (1977) Variações sazonais em águas costeiras: Brasil Lat 24. Parte II. Boletim do Instituto Oceanográfico de São Paulo 26, 339365.CrossRefGoogle Scholar
Ministério do Meio Ambiente. (2004) Lista Nacional das espécies de invertebrados aquáticos e peixes sobreexplotadas ou ameaçadas de sobreexplotacão. Instrução Normativa No. 5 de 21 de Maio de 2004. http://www.ibama.gov.br/sisbio/legislacao.php?id_arq=28.Google Scholar
Ministério do Meio Ambiente. (2005) Boletim estatístico da pesca marítima e estuarina do nordeste do Brasil—2004. Centro de Pesquisa e Gestão de Recursos Pesqueiros do Litoral Nordeste—2004—Tamandaré, PE: CEPENE, 2004. http://www.ibama.gov.br/cepene/download.php?id_download=316Google Scholar
Miranda, L.B. (1970) Flutuações da Corrente do Brasil e variações da distribuição horizontal da temperatura na região costeira entre Cabo de São Tomé e Ilha de São Sebastião em Janeiro e Fevereiro e Abril de 1970. Caderno de Ciências da Terra 3, 1314.Google Scholar
Moritz, C. (1994) Defining ‘evolutionarily significant units’ for conservation. Trends in Ecology and Evolution 9, 373375.CrossRefGoogle ScholarPubMed
Oliveira, L.P.H. (1946) Estudos ecológicos dos crustáceos comestíveis Uçá e Guaiamú, Cardisoma guanhumi Latreille e Ucides cordatus (L). Gecarcinidae, Brachyura. Memórias do Instituto Oswaldo Cruz 44, 395–322.CrossRefGoogle Scholar
Oliveira-Neto, J.F., Boeger, W.A., Pie, M.R., Ostrensky, A. and Hungria, D.B. (2007) Genetic structure of populations of the mangrove crab Ucides cordatus (Decapoda: Ocypodidae) at local and regional scales. Hydrobiologia 583, 6976. doi 10.1007/s10750.CrossRefGoogle Scholar
Oliveira-Neto, J.F., Pie, M.R., Boeger, W.A., Ostrensky, A. and Baggio, R.A. (2008) Population genetics and evolutionary demography of Ucides cordatus (Decapoda: Ocypodidae). Marine Ecology 28, 110.Google Scholar
Pfeiler, E., Hurtado, L.A., Knowles, L.L., Torre-Cosío, J., Bourillón-Moreno, L., Márquez-Farías, J.F. and Montemayor-López, G. (2005) Population genetics of the swimming crab Callinectes bellicosus (Brachyura: Portunidae) from the eastern Pacific Ocean. Marine Biology 146, 14321793.CrossRefGoogle Scholar
Posada, D., Crandall, K.A. and Templeton, A.R. (2000) GEODIS: a program for the cladistic nested analysis of the geographical distribution of genetic haplotypes. Molecular Ecology 9, 487488.CrossRefGoogle ScholarPubMed
Rogers, A.J. and Harpending, H. (1992) Population growth makes waves in the distribution of pairwise genetic differences. Molecular Biology and Evolution 9, 552569.Google ScholarPubMed
Roman, J. and Palumbi, S.R. (2004) A global invader at home: population structure of the green crab, Carcinus maenas, in Europe. Molecular Ecology 13, 28912898. doi: 10.1111/j.1365-294X.2004.02255.x.CrossRefGoogle ScholarPubMed
Schneider, S. and Excoffier, L. (1999) Estimation of demographic parameters from distribution of pairwise differences when the mutation rates vary among sites: application to human mitochondrial DNA. Genetics 152, 10721089.CrossRefGoogle ScholarPubMed
Seutin, G., White, B.N. and Boag, P.T. (1991) Preservation of avian blood and tissues samples for DNA analysis. Canadian Journal of Zoology 69, 8290.CrossRefGoogle Scholar
Silva, A.C., Araújo, M. and Bourlès, B. (2005) Variação sazonal da estrutura de massas de água na plataforma continental do amazonas e área oceânica adjacente. Revista Brasileira de Geofísica 23, 145157.CrossRefGoogle Scholar
Slatkin, M. and Hudson, R.R. (1999) Pairwise comparisons of mitochondrial DNA sequences in stable and exponentially growing populations. Genetics 129, 555562.CrossRefGoogle Scholar
Tajima, F. (1989) Statistical method for testing the neutral mutation hypothesis by DNA polymorphism. Genetics 123, 585595.CrossRefGoogle ScholarPubMed
Templeton, A.R., Routman, E. and Phillips, C.A. (1995) Separating population structure from population history: a cladistic analysis of the geographical distribution of mitochondrial DNA haplotypes in the tiger salamander, Ambystoma tigrinum. Genetics 140, 767782.CrossRefGoogle ScholarPubMed
Weber, L.I. and Levy, J.A. (2000) Genetic population structure of the swimming crab Callinectes danae (Crustacea: Decapoda) in southern Brazil. Hydrobiolobia 420, 203210.CrossRefGoogle Scholar
Weinberg, J.R., Dahlgren, T.G., Trowbridge, N. and Halanych, K.M. (2003) Genetic differences within and between species of deep-sea crabs (Chaceon) from the north Atlantic ocean. Biological Bulletin. Marine Biological Laboratory, Woods Hole 204, 318326.CrossRefGoogle ScholarPubMed
Weisstein, E.W. ‘Bonferroni Correction.’ In MathWorld—A Wolfram Web Resource. http://mathworld.wolfram.com/BonferroniCorrection.htmlGoogle Scholar
Wilson, G.A. and Rannala, B. (2003) Bayesian inference of recent migration rates using multilocus genotypes. Genetics 163, 11771191.CrossRefGoogle ScholarPubMed