يعرض 1 - 10 نتائج من 17 نتيجة بحث عن '"Garcia Machado, E."', وقت الاستعلام: 0.82s تنقيح النتائج
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    دورية أكاديمية

    المساهمون: Natural Sciences and Engineering Research Council of Canada

    المصدر: Environmental DNA ; volume 5, issue 6, page 1527-1540 ; ISSN 2637-4943 2637-4943

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    دورية أكاديمية
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    كتاب

    مصطلحات موضوعية: Genetic diversity, mtDNA

    العلاقة: http://www.cim.uh.cu/rimTest; Álvarez-Alemán, A. (2012) Trichechus manatus Linnaeus, 1758. En H. Gonzáles Alonso, L. Rodríguez Schettino, A. Rodríguez, C.A. Mancina y I. Ramos García, (Eds.), Libro Rojo de los vertebrados de Cuba (pp. 289-291), La Habana, Editorial Academia. Álvarez-Alemán, A., Beck, C.A., Powell, J.A. (2010) First Report of a Florida Manatee (Trichechus manatus latirostris) in Cuba. Aquatic Mammals 36(2), 148-153. Castañeda, A., Morales, B. (2005) Informe técnico sobre los análisis de DNA de las muestras de sangre de los manatíes de Quintana Roo, Tabasco y Campeche. ECOSUR, Chetumal. Cantanhede, A.M., Silva, V.M., Farias, I.P., Hrbek, T., Lazzarini, S.M., Alves-Gomes, J. (2005) Phylo- geography and population genetics of the endangered Amazonian manatee, Trichechus inunguis, Natterer, 1883 (Mammalia, Sirenia). Molecular Ecology 14, 401–413. Deutsch, C.J., Self-Sullivan, C., Mignucci-Giannoni, A. (2008) Trichechus manatus. En The IUCN Red List of Threatened Species Version 2009.1. International Union for Conservation of Nature and Natural Resources. Disponible en Internet, http://www.iucnredlist.orgTest. Excoffier, L., Lischer, H.E. (2010) Arlequin suite ver.3.5: A new series of programs to perform population genetics analyses under Linux and Windows Molecular Ecology Resources 10, 564-567. García-Rodríguez, A.I., Bowen, B.W., Domning, D., Mignucci-Giannoni, A.A., Marmontel, M., Montoya-Ospina, R., Morales-Vela, B., Ruden, M., Bonde, R.K., McGuire, P.M. (1998) Phylo- geography of the West Indian manatee (Triche- chus manatus): how many populations and how many taxa? Molecular Ecology 7, 1137-1149. Hall, T.A. (1999) BioEdit: a user-friendly biological se- quence alignment editor and analysis program for Windows 95/98/NT. Nucl. Acids. Symp. Ser. 41, 95-98. Hunter, M.E., Auil-Gomez, N.E., Tucker, K.P., Bonde, R.K., Powell, J., McGuire, P.M. (2010) Low ge- netic variation and evidence of limited disper- sal in the regionally important Belize manatee. Anim. Conserv. 13, 592–602. Kocher, T.D., Thomas, W.K., Meyer, A., Edwards, S.V., Pääbo, S. (1989) Dynamics of mitochondrial DNA evolution in animals: amplification and sequencing with conserved primers. Proc. Natl. Acad. Sci. USA 86, 6196–6200. Luna, F.O., Bonde, R.K., Attademo, F.L.N., Saunders, J.W., Meigs-Friend, G., Passavante, J.Z.O., Hunter, M. (2012). Phylogeographic implica- tions for release of critically endangered mana- tee calves rescued in Northeast Brazil. Aquatic Conserv: Mar. Freshw. Ecosyst. 22, 665–672. Nourisson, C. (2011) Estructura genética de los mana- tíes en México. Tesis de doctorado, El Colegio de la Frontera Sur, Chetumal, Quintana Roo, México. 124 pp. Nourisson, C., Morales-Vela, B., Padilla-Saldívar, J., Tucker, K. P., Clark, A., Olivera-Gómez, L.D., Bonde, R., McGuire, P. (2011) Evidence of two genetic clusters of manatees with low genetic diversity in Mexico and implications for their conservation. Genetica 139(7), 833-842. Ochoa, J., Sheinbaum, H., Badan, A., Candela, J., Wilson, D. (2001) Geostrophy via potential vorticity inversion in the Yucatan Channel. J. Mar. Research 59, 725-747. Ruiz-Urquiola, A., Riverón-Giró, F.B., Pérez-Bermúdez, E., Abreu-Grobois, F.A., González-Pumariega, M., James-Petric, B.L., Díaz-Fernández, R., Álvarez-Castro, J.M., Jager, M., Azanza-Ricardo, J., Espinosa-López, G. (2010) Population ge- netic structure of Greater Caribbean green turtle (Chelonia mydas) based on mitochon- drial DNA sequences, with an emphasis on rookeries from southwestern Cuba. Rev. Invest. Mar. 31(1), 33-52. Vianna, J.A., Bonde, R.K., Caballero, S., Giraldo, J.P., Lima, R.P., Clark, A., Marmontel, M., Morales- Vela, B., de Souza, M.J., Parr, L., Rodríguez- López, M., Mignucci-Giannoni, A.A., Powell, J.A., Santos, F.R. (2006) Phylogeography, phy- logeny and hybridization in trichechid sire- nians: implications for manatee conservation. Molecular Ecology 15,433–447.; Rev. Invest. Mar., 33 (2), p. 58-61; http://hdl.handle.net/1834/5252Test

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    كتاب

    مصطلحات موضوعية: Habitat diversity, Check lists, Fishes

    العلاقة: Aguilar, C., González-Sansón, G., de la Guardia, E., Suárez, A.M., Trilles, J. y Angulo J. (2000) Inventario de los componentes más comunes de la flora y la fauna del arrecife de coral costero de la Caleta de San Lázaro, región Noroccidental de Cuba, en el período de 1996 a 1998. Rev. Invest. Mar., 21(1-3), 53– 59. Báez, M. y Álvarez-Lajonchere, L. (1980) Edad y crecimiento del caballerote, Lutjanus griseus (Linné), en Tunas de Zaza, Cuba. Rev. Invest. Mar. 1(2-3), 135-159. Baisre, J.A. (2004) La pesca marítima en Cuba. Editorial Científico – Técnica, 372 pp. Bölke, J.E. & Chaplin, C.C. (1993) Fishes of Bahamas and adjacent tropical waters. University of Texas Press, Austin, 2nd Edition, 771 pp. Carles, C. (1967) Algunos datos de la biología del banano, Elops saurus L. (Telostomi: Elopidae). Centr. Invest. Pesq., Inst. Nacl. Pesca Cuba, Contrib., 32, 1-51. Claro, R. (ed.) (1994) Ecología de los peces marinos de Cuba. Instituto de Oceanología y Centro de Investigaciones de Quintana Roo, 525 pp. Claro, R. y García–Arteaga, J.P. (1993) Estructura de las comunidades de peces asociados a los manglares del grupo insular Sabana– Camagüey, Cuba. Avicennia 0, 60-83. Claro, R. y García–Arteaga, J.P. (1994) Estructura de las comunidades de peces en los arrecifes del grupo insular Sabana–Camagüey, Cuba. Avicennia 2, 83-107. Eschmeyer, W.N. (Ed.) (1990) Catalog of the genera of recent fishes. California. Acad. Sci. i-v + 1- 697. Eschmeyer, W.N. (Ed.) (1998) Catalog of Fishes. Special Pub. No. 1 of the Center for Biodi- versity Research and Information, California Acad. Sci., San Francisco, CA, vols 1-3, 2905 pp. Espinosa, L. y Pozo, E. (1982) Edad y crecimiento del sesí (Lutjanus bucanella Cuvier, 1828) en la plataforma suroriental de Cuba. Rev. Cub. Inv. Pesq., 7(1) ,80-100. González–Sansón, de la Guardia, E., Aguilar, C., González, C. y Ortiz, M. (1997) Inventario de los componentes más comunes de la fauna en un arrecife de coral costero de la región noroccidental de Cuba. Rev. Invest. Mar. 18(3) ,193–197. Guitart, D. (1985) Sinopsis de los peces marinos de Cuba. Editorial Científico–Técnica, La Haba- na, 308 + 562 pp. Humann, P. (1994) Reef Fish Identification. Florida, Caribbean, Bahamas. New World Publica- tions, Inc. 2da ed., 396 pp. Jones, R.S. & Thompson, M.J. (1978) Comparison of Florida reef fish assemblages using a rapid visual technique. Bulletin of Marine Science. 28,159-172. Kimmel, J.J. (1985) A new species-time method for visual assessment of fishes and its compa- rison with established methods. Enviro- nmental Biology of Fishes, 12, 23-32. Kleijnen, S. (2001) Dependence of Caribbean Ref. Fishes on mangroves and seagrass beds as nursery habitat: a comparison of fish fauna between bays with and without man- grove/seagrass beds. Mar. Ecol. Prog. Ser., 214, 225-235. León, M.E. y Guardiola, M. (1984) Caracterización biológico-pesquera del género Scomberomorus de la zona suroriental de Cuba. Rev. Cub. Inv. Pesq., 9(3-4), 1-26. 53 Nelson, J.S., Crossman, E.J., Espinosa-Pérez, H., Findley, L.T., Gilbert, C.R., Lea, R.N. & Williams, J.D. (2004) Common and scientific names of fishes from the United States, Canada and Mexico. Am. Fish. Soc. Sixth Edition, Special Publ. 29, 386 pp. Páez, J. (1997) Las pesquerías de camarón en la plataforma cubana. FAO Fish. Rep. 544 (Suppl.), 155-179. Pina-Amargós, F. (2008) Efectividad de la Reserva Marina de Jardines de la Reina para la conservación de la ictiofauna. Tesis de Doctorado.Universidad de La Habana, 92 pp. Pina-Amargós, F., Claro, R., García-Arteaga, J.P., López-Fernández, N. y González-Sansón, G. (2007) Ictiofauna del archipiélago Jardines de la Reina, Cuba. Rev. Invest. Mar. 28(3), 217-224. Randall, J.E. (1996). Caribbean reef fishes. T.F.H. Publications, 3ra ed., Jersey City, 318 pp. Renán, X., Cervera-Cervera, K. & Brulé, T. (2003) Probable nursery areas for juvenile groupers along the northern coast of the Yucatan Peninsula, Mexico. Proceedings 54th GCFI. 496-505. Robins, C.R. & Ray, G.C. (1986) A field guide to Atlantic coastal fishes of North America. Houghton Mifflin, Boston, xi + 354 pp. Rogers, C.S., Garrison, G., Grober, R., Hillis, Z-M. & Franke, M.A. (2001) Manual para el Monitoreo de Arrecifes de Coral en el Caribe y el Atlántico Occidental. US National Park Service. 96 pp. Valdés, E. y Sotolongo, M. (1983) Algunos aspectos de la biología y pesquería del machuelo (Opisthonema oglinum) de la plataforma sur- oriental cubana. Rev. Cub. Inv. Pesq., 8(1), 66-96. Vergara, R. (1992) Principales características de la ictiofauna dulceacuícola cubana. Informa- ción adicional I: Factores causales de su composición y diferenciación. Mem. Soc. Cienc. Nat. La Salle. 52(138), 57-80.; Revista de Investigaciones Marinas, 32 (2), p. 45-53; http://hdl.handle.net/1834/4637Test

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    كتاب

    مصطلحات موضوعية: mtDNA, Marine fish, Genetic diversity

    العلاقة: Acero A, Garzó n J (1994) Descripción de una nueva especie de Hypoplectrus (Pisces: Serranidae) del Caribe occidental y comentarios sobre las especies colombianas del ge´nero. An Inst Invest Mar Punta Betı´n 23:4–14 Albertson RC, Markert JA, Danley PD, Kocher TD (1999) Phylogeny of a rapidly evolving clade: the cichlid fishes of Lake Malawi, East Africa. Proc Natl Acad Sci USA 96:5107–5110 Beebe W, Tee-Van J (1933) Field book of the shore fishes of Bermuda. Putnam, New York , pp 134–135 Breder ChM (1929) Field book of marine fishes of the Atlantic coast from Labrador to Texas. Putnam, New York , pp 164– 165 Clark E (1959) Functional hermaphroditism and self-fertilization in serranid fish. Science 129:215–216 Clement M, Posada D, Crandall KA (2000) TCR: a computer program to estimate gene genealogies. Mol Ecol 9:1657–1660 Cole KS, Noakes DLG (1997) Gonadal development and sexual allocation in mangrove killifish Rivulus marmoratus (Pisces, Atherinomorpha) Copeia 1997:596–600 Doi M, Matsuda M, Tomaru M, Matsubayashi H, Oguma Y (2001) A locus for female discrimination behavior causing sexual isolation in Drosophila. Proc Natl Acad Sci USA 98:6714–6719 Domeier ML (1994) Speciation in the serranid fish Hypoplectrus. Bull Mar Sci 54:103–141 Graves JE, Rosenblatt RH (1980) Genetic relationships of the color morphs of the serranid fish Hypoplectrus unicolor. Evolution 34:240–245 Guitart D (1977) Sinopsis de los peces marinos de Cuba, vol III. Acad Cienc Cuba Humman P (1994) Reef fish identification, 2nd edn. New World Publications, Jacksonville, Fla., pp 111–125 Jordan DS, Everman BW (1896) The fishes of north and middle America, vol 1. Smithsonian Institution, United States National Museum, Washington, D.C., pp 1189–1194 Kimura M (1980) A simple method for estimating evolutionary rate of base substitution through comparative studies of nucleotide sequences. J Mol Evol 16:111–120 Kocher TD, Thomas WK, Meyer A, Edwards SV, Pa¨ a¨bo S, Villablanca FX, Wilson AC (1989) Dynamics of mitochondrial DNA evolution in animals: amplification and sequencing with conserved primers. Proc Natl Acad Sci USA 86:6196–6200 Kumar S, Tamura K, Jakobsen IB, Nei M (2001) MEGA2: molecular evolutionary genetics analysis software. Bioinformatics 17:1244–1245 Mallet J, Joron M (1999) Evolution of diversity in warning color and mimicry: polymorphisms, shifting balance, and speciation. Annu Rev Ecol Syst 30:201–233 McMillan WO, Palumbi SR (1997) Rapid rate of control–region evolution in Pacific butterflyfishes (Chaetodontidae). J Mol Evol 45:473–84 McMillan WO, Weight LA, Palumbi SR (1999) Color pattern evolution, assortative mating, and genetic differentiation in brightly colored butterflyfishes (Chaetodontidae). Evolution 53:247–260 Meyer A, Kocher TD, Basasibwaki P, Wilson AC (1990) Monophyletic origin of Lake Victoria cichlid fishes suggested by mitochondrial DNA sequences. Nature 347:550–553 Moran P, Kornfield I (1993) Retention of ancestral polymorphism in the Mbuna species flock (Teleostei: Cichlidae) of Lake Malawi. Mol Biol Evol 10:1015–1029 Nei M (1987) Molecular evolutionary genetics. Columbia University Press, New York Nei M, Kumar S (2000) Molecular evolution and phylogenetics. Oxford University Press, New York Palumbi SR, Martin AP, Romano S, McMillan WO, Stice L, Grabowsqui G (1991) The simple fool’s guide to PCR. ver. 2.0. University of Hawaii, Honolulu, HI Parker A, Kornfield I (1997) Evolution of the mitochondrial DNA control region in the mbuna (Cichlidae) species flock of the Lake Malawi, East Africa. J Mol Evol 45:70–83 Poey F (2000) Ictiologı´a cubana, vol I. Imagen contempora´ nea, Coleccio´ n Biblioteca de Cla´ sicos Cubanos, No. 7 Posada D., Crandall KA, Templeton AR (2000) GEODIS: a program for the cladistic nested analysis of the geographical distribution of genetic haplotypes. Mol Ecol 9:487–488 Randall JE (1967) Food habits of the reef fishes of the West Indies. Stud Trop Oceanogr 5:665–847 Randall JE (1968) Caribbean reef fishes. Trop Fish Hobbyist, N. J. Rocha-Olivares A, Kimbrell CA, Eitner BJ, Vetter RD (1999) Evolution of a mitochondrial cytochrome b gene sequence in the species-rich genus Sebastes (Teleostei, Scorpaenidae) and its utility in testing the monophyly of the subgenus Sebastomus. Mol Phylogenet Evol 11:426–440 Rosenthal E, Coutelle O, CraxtonM(1993) Large-scale production of DNA sequencing templates by microtitre format PCR. Nucleic Acids Res 21:173–174 Schneider S, Roessli D, Excoffier L (2000) Arlequin ver 2.000: a software for population genetics data analysis. Genetics and Biometry Laboratory, University of Geneva, Switzerland Soto CG, Leatherland JF, Noakes DLG (1992) Gonadal histology in the self-fertilizing hermaphroditic fish Rivulus marmoratus Pisces Cyprinodontidae. Can J Zool 70:2338–2347 Takahata N, Slatkin M (1984) Mitochondrial gene flow. Proc Natl Acad Sci USA 81:1764–1767 1Templeton AR, Crandall KA, Sing CF (1992) A cladistic analysis of phenotypic associations with haplotypes inferred from restriction endonuclease mapping and DNA sequence data. III. Cladogram estimation. Genetics 132:619–633 Templeton AR, Routman E, Phillips CA (1995) Separating population structure from population history: a cladistic analysis of the geographical distribution of mitochondrial DNA haplotypes in the tiger salamander, Amblystoma tigrinum. Genetics 140:767–782 Thompson JD, Gibson TJ, Plewniak F, Jeanmougin F, Higgins DG (1997) The ClustalX windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools. Nucleic Acids Res 24:4876–4882 Thresher R (1978) Polymorphism, mimicry and evolution of the hamlets (Hypoplectrus, Serranidae). Bull Mar Sci 28:345–353 Via S (2001) Sympatric speciation in animals: the ugly duckling grows up. Trends Ecol Evol 16:381–390; Marine Biology, 144, p. 147-152; http://hdl.handle.net/1834/4569Test

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    دورية أكاديمية
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    دورية أكاديمية
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    دورية أكاديمية
  9. 9
    دورية أكاديمية
  10. 10
    رسالة جامعية

    المؤلفون: Lara Lorenzo, A.

    المساهمون: García Machado, E., Ponce de León García, J. L., Centro de Investigaciones Marinas Universidad de La Habana

    مصطلحات موضوعية: cDNA, Genes, Fishes, Fish wastes

    العلاقة: 1. Alayo, P., 1973. Lista de peces fluviatiles de Cuba. Torreia. Nueva serie (29): 53pp. 2. Alayo, P., 1974. Guía elemental de las aguas dulces de Cuba. Torreia. Nueva serie (37): 66-68. 3. Anónimo, 2007. How DNA Barcoding Can Help Science. http://www.sciencedaily.comTest/ 4. Avise, J.C., 1994. Molecular markers, natural history and evolution. Chapman and Hall, edits. N. Y. London. 5. Avise, J.C.; J. Arnold; M. R. Ball; E. Berminghan; T. Lamb; J.E. Neigel; C.A Reeb and N.C. Saunders, 1987. Intraspecific Phylogeography: the mitochondrial DNA Bridge between population genetics and systematics. Annual Review of Ecology and Systematics 18: 489-522. 6. Ayala, F.J., 1997. Vagaries of the molecular clock. Proc. Natl. Acad. Sci. USA 94: 7776–7783. 7. Ballard, J.W.O. and M.C. Whitlock, 2004. The incomplete natural history of mitochondria. Mol Ecol 13: 729-744. 8. Barber P. and S.L. Boyce, 2006. Estimating diversity of Indo-Pacific coral reef stomatopod larvae. Proc. R. Soc. B. doi:10.1098/rspb.2006.3540. 9. Barus, V.; J. Liborsvársky and F. G. Padron, 1981. Notes on Toxus creolus (Poeciliidae) from Cuba. Folia Zoologica. 30 (4): 363-370. 10. Barus, V. and J. Liborsvársky, 1987. Observations on Glaridichthys uninotatus and G. falcatus (Poeciliidae) from Cuba. Folia Zoologica 37(2): 167-182. 11. Bellwood, D. R.; T.P. Hughes; C. Folke and M. Nystron, 2004. Confronting the coral reef crisis. Nature 429: 827-833. . Bensasson D, D-X Zhang; D.L. Hartl and G.M. Hewitt, 2001. Mitochondrial pseudogenes: Evolution's misplaced witnesses. Trends Ecol Evol 16: 314-321. 13. Bhadury, P.; M.C. Austen; D.T. Bilton; P.J.D. Lambshead; A.D. Rogers and G.R. Smerdon, 2006. Development and evaluation of a DNA-barcoding approach for the rapid identification of nematodes. Marine Ecology Progress Series 320: 1-9. 14. Blaxter, M.; J. Mann; T. Chapman; F. Thomas; C. Whitton; R. Floyd and Eyualem- Abebe, 2005. Defining operational taxonomic units using DNA barcode data. Phil. Trans. R. Soc. B. 360 (1462): 1935-1943. 15. Boore, J. L., 1999. Animal mitochondrial genomes. Nucleic Acids Res 27(8): 1767- 1780. 16. Bourlat, S.J.; H. Nakano; M. Akerman; M.J. Telford; M.C. Thorndyke and M. Obst, 2008. Feeding ecology of Xenoturbella bocki (phylum Xenoturbellida) revealed by genetic barcoding. Molecular Ecology Resources 8(1): 18-22. . Brower, A. V. Z., 2006. Problems with DNA barcodes for species delimitation: ¨ten species¨of Astraptes fugerator reassessed (Lepidoptera: Hesperiidae). Systematics and Biodiversity 4: 127-132. 18. Bucklin, A.; P.H. Wiebe; S.B. Smolenack; N.J.Copley; J.G. Beaudet; K.G. Bonner; J. Färber-Lorda and J.J. Pierson, 2007. DNA barcodes for species identification of euphausiids (Euphausiacea, Crustacea). Journal of Plankton Research 29(6): 483-493. 19. Burgess, G. H. y R. Franz 1989. Zoogeography of the Antillean freshwater fish fauna. En Biogeography of the West Indies: past, present and future, Charles A. Woods (ed.), Sand hill Crane Press, Gainesville, Florida, pp: 263-304. 20. Bussing, W. A., 2002. Peces de las aguas continentales de Costa Rica. Segunda edición. Editorial de la Universidad de Costa Rica, Costa Rica. 504 pp. 21. Chang,Y.S.; F.L. Huang and T.B. Lo, 1994. The complete nucleotide sequence and gene organization of carp (Cyprinus carpio) mitochondrial genome. J. Mol. Evol. 38 (2): 138-155. 22. Damas, T., 1999. Biología de los peces vivíparos. Mar y Pesca 321: 57-58. 23. Davis, J. I. y K. C. Nixon, 1992. Populations, genetic variation, and the delimitation of phylogenetic species. Syst. Bio. 41 (4): 421-435. 24. de la Cruz, J. y A. M Dubitsky, 1976. Dos nuevas especies de peces dulceacuícolas del género Rivulus, Poey (Cyprinodontidae) de Cuba e Isla de Pinos. Poeyana (Ser. A) 1- 6. 25. DeSalle, R., M. G Egan and M. Siddall, 2005. The unholy trinity: taxonomy, species delimitation, and DNA barcoding. Phil. Trans. R. Soc. B. 360 (1462): 1905 -1916. 26. DeSalle, R., 2006. Species discovery versus species identification in DNA barcoding efforts: response to Rubinoff. Conservation Biology 20 (5): 1545-1547. 27. Ebach, M. C. and C. Holdrege, 2005. DNA barcoding is no substitute for taxonomy. Nature 434 697 doi:10.1038/434697b. 28. Echelle, A. A.; L. Fuselier; R. A. Van Den Bussche; C. M. L. Rodríguez and M. L. Smith, 2005. Molecular systematics of Hispaniolan pupWshes (Cyprinodontidae: Cyprinodon): Implications for the biogeography of insular Caribbean Wshes. Molecular Phylogenetics and Evolution 39 (2006): 855–864. 29. Eigenmann, C. H., 1903. The fresh-water fishes of western Cuba. Bulletin of the U. S. Fish Commission 22: 211-236. 30. Elvira, B. and A. Almodóvar, 2001. Freshwater fish introductions in Spain: facts and figures at the beginning of the 21st century. Journal of Fish Biology, 59: 323-331. 31. Felsenstein, J., 1981. Evolutionary trees from DNA sequences: A maximun likelihood approach. J. Mol. Evol. 17: 368-376. 32. Franz, R. and G. H. Burgess, 1983. A new Poeciliid killifish, Limia rivasi, from Haiti. Northeast Gulf Science 6 (1): 51-54. 3. Funk, D. J and K. E Omland, 2003. Species-level paraphyly and polyphyly: frequency, causes and consequences, with insights from animal mitonchondria DNA. Annual Review of Ecology, Evolution and Systematics 34: 397-423. 34. García, I. y L. Koldenkova, 1990. Clave pictórica para las principales especies de peces larvívoros de Cuba. Instituto de Medicina Tropical Pedro Kourí, Cuba 1-55. 35. García-Debrás, A.; A. Pérez y J. Yanger, 1999. Distribución geográfica de los peces ciegos (Ophidiiformes, Bythitidae). Troglobio, 4: 2-3. 36. Graur, D. and W. H. Li, 2000. In Fundamentals of Molecular Evolution, pp. 1-481. USA: Sinaurer Asociates. 37. Hajibabaei, M.; G. A. C. Singer and D. A Hickey, 2006. Benchmarking DNA barcodes: an assessment using available primate sequences. Genome 49(7): 851-854. 38. Hajibabaei, M.; D. H. Janzen; J.M. Burns; W. Hallwachs and P. D. N. Hebert, 2006b. DNA barcodes distinguish species of tropical Lepidoptera. PNAS 103(4): 968–971. 39. Hall, T. A., 1999. BioEdit: A user- friendly biological sequences alignment editor and analysis program for Windows 95/98/NT. Nucl. Acids. Symp. Ser. 41:95-98. 40. Hebert, P.D.N; A. Cywinska; S.L. Ball and J.R. deWaard, 2003a. Biological identifications through DNA barcodes. Proc. R. Soc. Lond. B. 270: 313-322. 41. Hebert, P. D. N.; S. Ratnasingham, and J. R. deWaard, 2003b. Barcoding animal life: cytochrome c oxidase subunit 1 divergences among closely related species. Proc. R. Soc. B. 270: S96–S99. 42. Hebert, P. D. N.; E. H Penton; J. M Burns; D. H. Janzen and W Hallwachs, 2004a. Ten Species in One: DNA Barcoding Reveals Cryptic Species in the Neotropical Skipper Butterfly Astraptes fulgerator. Proc. Natl. Acad. Sci. USA 101(41): 14812-14817. 43. Hebert, P. D. N.; Stoeckle M. Y.; Zemlak T. S.and Francis C. M., 2004b. Identification of Birds through DNA Barcodes. PLoS Biology 2(10): 1657- 1663. 44. Hill, J. E., 2002. Exotic fishes in Florida. Florida fishes. Lakeline. 39-41. 45. Hubert. N, R. Hanner, E. Holm, N. Mandrak, E. Taylor, M. Burridge, D. Watkinson, A. Curry, P. Bentzen P, Zhang, J. April and L. Bernatchez, 2008. Identifying Canadian freshwater fishes through DNA barcodes. PloS ONE (en prensa). 46. John, G. C. and J. C. Avise, 1998. A comparative summary of genetic distances in the vertebrates from the mitochondrial cytochromo b gene. Mol. Biol. Evol. 15(11): 1481- 1490. 47. Kimura, M., 1980. A simole method for stimateg evolutionary rate of base susbstitutions trough comparative statisc of nucleotides sequences. J. Mol. Evol. 16: 111-120. 48. Kingman, J.F.C., 1982. The coalescent. Stochastic Process and their Applications 13: 245-248. 49. Koldenkova, L. y I. García, 1987. Nota sobre la resistencia a la desecación de los huevos de Rivulus cylindraceus (Teleostei, Cyprinodontidae). Miscelánea Zoológica 29: 4-5. Bibliografía 50. Kressk, W. J. and D. L. Erickson, 2008. DNA barcodes: Genes, genomics, and bioinformatics. PNAS 105 (8): 2761–2762. 51. Kumar, S.; K. Tamura and M. Nei, 2004. MEGA3: Integrated software for Molecular Evolutionary Genetics Analysis and sequence alignment. Briefings in Bioinformatics 5:150-163. 52. Kumar Pradeep, N.; A.R. Rajavel; R. Natarajan and P. Jambulingam, 2007. DNA Barcodes Can Distinguish Species of Indian Mosquitoes (Diptera: Culicidae). Journal of Medical Entomology 44(1): 1-7. 53. Lambert, D. M.; A. Baker; L Huynen; O. Haddrath; P. D. N. Hebert and C. D. Millar, 2005. Is a Large-Scale DNA-Based Inventory of Ancient Life Possible? Journal of Heredity 96(3): 279-284. 54. Landry, J.F., 2007. Taxonomic review of the leek moth genus Acrolepiopsis (Lepidoptera: Acrolepiidae) in North America. The Canadian Entomologist 139(3): 319-353. 55. La Roche, J.; M. Snyder; D. I. Cook; K. Fuller and E. Zouros, 1990. Molecular caracterization of a repeat element causing large-scale size variation in the mitochondrial DNAof the sea Scallop Placopecten magellanicus. Mol. Biol Evol. 7(1): 45-64. 56. Lee, D.S.; S.P. Platania and G.H. Burgess, 1983. Atlas of North American freshwater fishes, supplement. Occasional Papers of the North Carolina Biological Survey no. 1983-6. North Carolina State Museum of Natural History, Raleigh, N.C. 67 pp. 57. Lemera S.; D. Aurelle; L. Vigliola; J.D. Durand and P. Borsa, 2007. Cytochrome b barcoding, molecular systematics and geographic differentiation in rabbitfishes (Siganidae). Comptes Rendus Biologies 330(1): 86-94. 58. Lucinda, P.H.F., 2003. Checklist of the Freshwater Fishes of South and Central America. Porto Alegre: EDIPUCRS, Brazil. p. 555-581. 59. Menéndez, Z.; E. Manso; M. Castex; O. Fuentes; N. Hernández; I. García, 2007. Algunos aspectos ecológicos de la ictiofauna larvífaga presente en Cayo Santa María, Cuba. Rev. Cubana Med. Trop., 59(3): 73-76. 60. Meyer,C. P. and G. Paulay, 2005. DNA Barcoding: Error Rates Based on Comprehensive Sampling. PLoS Biol 3(12): e422. 61. Moritz, C. and C. Cicero, 2004. DNA Barcoding: Promise and Pitfalls. PLoS Biol 2(10): e354. 62. Moura, C. J.; D. J. Harris; M. R Cunha; and A. D. Rogers, 2008. DNA barcoding reveals cryptic diversity in marine hydroids (Cnidaria, Hydrozoa) from coastal and deep-sea environments. Zoologica Scripta 37(1): 93-108. 63. Mullis, K. and F. Faloona, 1987. Specific synthesis of DNA invitro via a polymerase- catalyzed chain reaction. Methods in Enzymology 155: 335–350. 64. Myers, S., 1938: Fresh-water fishes and West Indian Zoogeography. En: Annual Report of the Board of Regents of the Smithsonian Institution, 92 (1938 for the year 1937): 339-364. Bibliografía 65. Nelson, L.A.; J.F. Wallman and M. Dowton, 2007. Using COI barcodes to identify forensically and medically important blowflies. Medical and Veterinary Entomology 21(1): 44-52. 66. Newmaster, S.G.; A.J. Fazekas; R.A.D. Steeves and J. Janovec, 2007. Testing candidate plant barcode regions in the Myristicaceae. Molecular Ecology Notes. OnlineEarly. 67. Nielsen, J.G.; D.M. Cohen; D.F. Markle and C.R. Robins, 1999. FAO Species Catalogue. Ophidiiform Fishes of the World (Order Ophidiiformes). Vol 18, 178pp. 68. Okimoto, R.; J. L. MacFarlane; D. O. Clary and D. R. Wolstenholme, 1992. The mitochondrial genomes of two nematodes, Caenorhabditis elegans and Ascaris suum. Genetcs 130: 471-498. 69. Page, L.M. and B.M. Burr. 1991. A field guide to freshwater fishes of North America north of Mexico. Houghton Mifflin Company, Boston. 432 pp. 70. Poey, F., 1854. Los guajacones, pececillos de agua dulce. Memorias de la Historia Natural de la Isla de Cuba 1 (32): 374-390. 71. Rauchenberger, M., 1989. Systematics and Biogeography of the genus Gambusia (Cyprinodontiformes: Poecilidae). Novitataes. 74pp. 72. Rivas, L. R., 1944. Contributions to the study of the Poecilid fishes of Cuba. I. Descriptions of six new species of the subfamily Gambusiinae. Proceedings of the New England Zoölogical 23: 41-53. 73. Rivas, L. R., 1958. The origin, evolution, dispersal and geographical distribution of the Cuban poeciliid fishes of the tribe Girardinini. The American Philisophical Society 102 (3): 281-320. 74. Rivas, L. R. and G. S. Myers, 1950. A new genus of Poeciliid Fishes from Hispaniola, with Notes on genera allied to Poecilia and Mollienesia. Copeia 4: 288-294. 75. Rivero, L. H., 1951. Peces larvívoros. Boletín de historia natural de la Sociedad Zoológica Felipe Poey 2 (6): 90-97. 76. Rivero, L. H. and L. R. Rivas, 1944. Studies of Cyprinodont fishes. Two new genera of the tribe Girardinini, from Cuba. Torreia 12: 3-19. 77. Robins, C.R. and G.C. Ray, 1986. A field guide to Atlantic coast fishes of North America. Houghton Mifflin Company, Boston, U.S.A. 354 pp. 78. Rodríguez, C. M., 1997. Phylogenetic analysis of the Tribe Poeciliini (Cyprinodontiformes: Poeciliidae). Copeia 4:663-679. 79. Rodríguez, J.; E. González; N. Hernández; V. Capó y I. García, 2004. Comparación morfológica e histológica del tubo digestivo de Gambusia puncticulata y Girardinus metallicus, peces utilizados en el control biológico de mosquitos. Rev. Cubana Med. Trop. 56(1): 73-76. 80. Rodríguez, R., 2007. Ecología de los peces del arroyo Govea, Bejucal Provincia Habana. Tesis de diploma. 54 pp.; http://hdl.handle.net/1834/5514Test