يعرض 1 - 10 نتائج من 42 نتيجة بحث عن '"Pseudopimelodus"', وقت الاستعلام: 0.91s تنقيح النتائج
  1. 1
    دورية أكاديمية
  2. 2
    تقرير

    المؤلفون: Rangel Medrano, José David

    المساهمون: Márquez Fernández, Edna Judith, Acero Pizarro, Arturo, Álzate Restrepo, Juan Fernando, Arango Isaza, Rafael Eduardo, Grupo de Investigación en Biotecnología Animal (GIBA)

    وصف الملف: application/pdf

    العلاقة: Allendorf FW, Hohenlohe PA, Luikart G. 2010. Genomics and the future of conservation genetics. Nature Reviews Genetics 11(10): 697–709. https://doi.org/10.1038/nrg2844Test.; Batista JDS, Alves-Gomes JA. 2006. Phylogeography of Brachyplatystoma rousseauxii (Siluriformes - Pimelodidae) in the Amazon Basin offers preliminary evidence for the first case of “homing” for an Amazonian migratory catfish. Genetics and Molecular Research 5(4): pp.723–740.; Boseman M. 1972. Notes on South American catfishes, including remarks on Valenciennes and Bleeker types in the Leiden Museum. Zoologische Mededelingen (Leiden) v. 47 (no. 23): 293-320, Pls. 1-2.; Colletta B, Hebrard F, Letouzey J, Werner P, Rudkiewicz JL. 1990. Tectonic and crustal structure of the Eastern Cordillera (Colombia) from a balanced cross-section. In: Letouzey, J. (Ed.): Petroleum and Tectonics in Mobile Belts. Editions Technip, Paris, France, pp. 80–100.; Cooper MA, Addison FT, Alvarez R, Coral M, Graham RH, Hayward AB, Howe S, Martinez J, Naar J, Penas R, Pulham AJ, Taborda A. 1995. Basin development and tectonic history of the Ilanos basin, Eastern Cordillera, and Middle Magdalena valley, Colombia. Bulletin of the American Association of Petroleum Geologists 79:1421–1443; DoNascimiento C, Herrera-Collazos EE, Herrera-R GA, Ortega-Lara A, Villa-Navarro FA, Usma Oviedo JS, Maldonado Ocampo JA. 2017. Checklist of the freshwater fishes of Colombia: a Darwin Core alternative to the updating problem. Zookeys 708:25–138 DOI 10.3897/zookeys.708.13897; Do Prado FD, Fernandez-Cebrián R, Foresti F, Oliveira C, Martínez P, Porto-Foresti F. 2017. Genetic structure and evidence of anthropogenic effects on wild populations of two Neotropical catfishes: baselines for conservation. Journal of Fish Biology 1–18. https://doi.org/10.1111/jfb.13486Test.; Duque-Caro H. 1990. The Choco Block in the northwestern corner of South America: structural, tectonostratigraphic and paleogeographic implications. Journal of South American Earth Sciences 3, 71–84.; Kellogg JN, Vega V. 1995. Vega Tectonic development of Panama, Costa Rica, and the Colombian Andes: Constraints from Global Positioning System geodetic studies and gravity. Geological Society of America Special Paper 295: 75–90.; López-Casas S, Jiménez-Segura LF, Agostinho AA, Pérez CM. 2016. Potamodromous migrations in the Magdalena River basin: bimodal reproductive patterns in neotropical rivers. Journal of fish Biology 89, 157–171.; Mojica JI, Usma JS, Álvarez-León R, Lasso CA (Eds). 2012. Libro rojo de peces dulceacuícolas de Colombia 2012. Instituto de Investigación de Recursos Biológicos Alexander von Humboldt Instituto de Ciencias Naturales de la Universidad Nacional de Colombia, WWF Colombia y Universidad de Manizales, Bogotá, 319 pp.; Ramella M, Kroth M. 2006. Genetic variability in four fish species (Pimelodus maculatus, Prochilodus lineatus, Salminus brasiliensis and Steindachneridion scripta) from Uruguay River. Brazilian Archives of Biology and Technology 49: 589–598.; Restrepo-Moreno SA, Foster DA, Stockli DF, Parra-Sánchez LN. 2009. Long-term erosion and exhumation of the “Altiplano Antioqueño”, Northern Andes (Colombia) from apatite (U-Th)/He thermochronology. Earth and Planetary Science Letters 278(2009) 1–12. https://doi.org/10.1016/j.epsl.2008.09.037Test.; Ribolli J, de Melo CM, Zaniboni-Filho E. 2012. Genetic characterization of the Neotropical catfish Pimelodus maculatus (Pimelodidae, Siluriformes) in the Upper Uruguay River. Genetics and Molecular Biology 35(4): 761–769. https://doi.org/10.1590/S1415-47572012005000060Test.; Ríos N, Bouza C, Gutiérrez V, García G. 2017. Species complex delimitation and patterns of population structure at different geographic scales in Neotropical silver catfish (Rhamdia: Heptapteridae). Environmental Biology of Fishes 100(9): 1047–1067. https://doi.org/10.1007/s10641-017-0622-1Test.; Sekine ES, Prioli AJ, Prioli MA, Ferreira HA, Júlio HF. 2008. Genetic differentiation among populations of Pseudoplatystoma corruscans (Agassiz,1829) ( Osteichthyes , Pimelodidae ) isolated by the Guaíra Falls in the Paraná River. Acta Scientiarum 24: 507–512.; Shibatta OA, Vari RP. 2017. A new genus of Neotropical rheophilic catfishes, with four new species (Teleostei: Siluriformes: Pseudopimelodidae). Neotropical Ichthyology 15(2): 1–30. https://doi.org/10.1590/1982-0224-20160132Test; Sullivan JP, Lundberg JG, Hardman M. 2006. A phylogenetic analysis of the major groups of catfishes (Teleostei: Siluriformes) using rag1 and rag2 nuclear gene sequences. Molecular Phylogenetics and Evolution 41(3): 636–662. https://doi.org/10.1016/j.ympev.2006.05.044Test.; Telles MPC, Collevatti RG, Braga RS, Castro TG, Costa MC, Barthem RB. 1855. Geographical genetics of Pseudoplatystoma punctifer (Castelnau, 1855) (Siluriformes, Pimelodidae) in the Amazon Basin. Genetics and Molecular Research 13(2): 3656–3666. https://doi.org/http://dx.doi.org/10.4238/2014Test.; Usma JS, Valderrama M, Escobar MD, Ajiaco-Martínez RE, Villa-Navarro F, Castro F, Ramírez-Gil H, Sanabria AI, Ortega-Lara A, Maldonado-Ocampo J, Alonso JC, Cipamocha C. 2009. Peces dulceacuícolas migratorios en Colombia. In: Amaya JD, Naranjo LG (Eds) Plan nacional de las especies migratorias: diagnóstico e identificación de acciones para la conservación y el manejo sostenible de las especies migratorias de la biodiversidad en Colombia. Ministerio de Ambiente, Vivienda y Desarrollo Territorial, WWF Colombia, Bogotá, 103–131; Vaini JO, do Amaral Crispim B, dos Santos Silva DB, Benites C, Russo MR, Grisolia AB. 2016. Genetic variability of pure Pseudoplatystoma corruscans and Pseudoplatystoma reticulatum individuals in the Paraná and Paraguay River basins. Fisheries Science 82(4): 605–611. https://doi.org/10.1007/s12562-016-0999-3Test.; Abdul-Muneer PM. 2014. Application of microsatellite markers in conservation genetics and fisheries management: Recent advances in population structure analysis and conservation strategies. Genetics Research International 2014: 1–11.; Armbruster JW. 2004. Phylogenetic relationships of the suckermouth armored catfishes (Loricariidae) with emphasis on the Hypostominae and the Ancistrinae. Zoological Journal of the Linnean Society 141: 1-80; Arias LA. 1995. El relieve de la zona central de Antioquia: un palimpsesto de eventos tectónicos y climáticos. Revista Faculta de Ingeniería Universidad de Antioquia pp. 9–24.; Bacon CD, Velásquez-Puentes FJ, Hoorn C, Antonelli A. 2018. Iriarteeae palms tracked the uplift of Andean Cordilleras. Journal of Biogeography 45(7):1653–1663 DOI 10.1111/jbi.13350.; Bermingham E, Martin AP. 1998. Comparative mtDNA phylogeography of neotropical freshwater fishes: testing shared history to infer the evolutionary landscape of lower Central America. Molecular Ecology 7: 499–517.; Chazot N, Willmott KR, Condamine FL, De-Silva DL, Freitas AVL, Lamas G, Morlon H, Giraldo CE, Jiggins CD, Joron M, Mallet J, Uribe S, Elias M. 2016. Into the Andes: multiple independent colonizations drive montane diversity in the Neotropical clearwing butterflies Godyridina. Molecular Ecology 25(22):5765–5784 DOI 10.1111/mec.13773; Coronel JS, Maes GE, Claus S, Van Damme PA, Volckaert FAM. 2004. Differential population history in the migratory catfishes Brachyplatystoma flavicans and Pseudoplatystoma fasciatum (Pimelodidae) from the Bolivian Amazon assessed with nuclear and mitochondrial DNA markers. Journal of Fish Biology 65(3): 859–868 https://doi.org/10.1111/j.1095-8649.2004.00498.xTest.; Cruz-Neto AP, Garland T, Abe AS. 2001. Diet, phylogeny, and basal metabolic rate inphyllostomid bats. Zoology 104(1):49–58 DOI 10.1078/0944-2006-00006.; De Abreu MM, De Henrique L, Pereira G, Vila VB, Foresti F, Oliveira C. 2009. Genetic variability of two populations of Pseudoplatystoma reticulatum from the Upper Paraguay River Basin. Genetics and Molecular Biology 32, 4, 868-873873: 868–873.; De Pinna MCC. 1993. Higher-level phylogeny of Siluriformes, with a new classification of the order (Teleostei, Ostariophysi). Ph.D. thesis, City University of New York, New York.; De Pinna MCC. 1998. Phylogenetic relationships of Neotropical Siluriformes: History, overview and synthesis of hypotheses, pp. 279–330. In: Malabarba LR, Reis RE, Vari RP, Lucena ZM Lucena CAS. [eds.]. Phylogeny and Classification of Neotropical Fishes. Edipucrs, Porto Alegre, Brazil.; Diogo RM, Chardon M, Vandewalle P. 2004. Osteology and myology of the cephalic region and pectoral girdle of Batrochoglanis raninus, with a discussion on the synapomorphies and phylogenetic relationships of the Pseudopimelodinae and Pimelodidae (Teleostei: Siluriformes). Animal Biology 54(3): 261-280.; Do Prado FD, Fernandez-Cebrián R, Foresti F, Oliveira C, Martínez P, Porto-Foresti F. 2017. Genetic structure and evidence of anthropogenic effects on wild populations of two Neotropical catfishes: baselines for conservation. Journal of Fish Biology 1–18 https://doi.org/10.1111/jfb.13486Test.; Fricke R, Eschmeyer WN, Van der Laan R. (eds) 2019. Catalog of fishes: genera, species, References. (http://researcharchive.calacademy.org/research/ichthyology/catalog/fishcatmain.aspTest). Electronic version accessed 19-03-2019.; Fonseca FS, Domingues RR, Hallerman EM, Hilsdorf AWS. 2017. Genetic diversity of an imperiled neotropical catfish and recommendations for its restoration. Frontiers in Genetics 8: 1–12 https://doi.org/10.3389/fgene.2017.00196Test.; Hardman M. 2005. The phylogenetic relationships among non-diplomystid catfishes as inferred from mitochondrial cytochrome b sequences; the search for the ictalurid sister taxon (Otophysi: Siluriformes). Molecular Phylogenetics and0 Evolution 37: 700–720.; Henríques Esguícero AL, Arcifa MS. 2010. Biology and population features of a rare species of Pseudopimelodidae from the Upper Paraná River Basin. Biota Neotropica 10(3): 161–167 https://doi.org/10.1590/S1676-06032010000300018Test.; Kellogg JN, Vega V. 1995. Vega Tectonic development of Panama, Costa Rica, and the Colombian Andes: Constraints from Global Positioning System geodetic studies and gravity. Geological Society of America Special Paper 295, 75–90.; Lundberg JG. 1998. The Temporal Context for Diversification of Neotropical Fishes. Chapter 2:49-68. In Malabarba LR, Reis RE, Vari RP, Lucena CAS, ZMS Lucena eds. Phylogeny and Classification of Neotropical Fishes. Museu de Ciências e Tecnologia, PUCRS. Porto Alegre, Brazil.; Malabarba MCSL. 1998. Phylogeny of fossil Characiformes and palaeobiogeography of the Tremembe formation, Sao Paulo, Brazil. Phylogeny and classification of Neotropical fishes (ed. by Malabarba LR, Reis RE, Vari RP, Lucena ZM & Lucena CAS), pp. 69–84. Edipucrs Porto Alegre.; Mojica JI, Usma JS, Álvarez-León R, Lasso CA (Eds). 2012. Libro rojo de peces dulceacuícolas de Colombia 2012. Instituto de Investigación de Recursos Biológicos Alexander von Humboldt Instituto de Ciencias Naturales de la Universidad Nacional de Colombia, WWF Colombia y Universidad de Manizales, Bogotá, 319 pp; Montoya-Burgos JI. 2003. Historical biogeography of the catfish genus Hypostomus (Siluriformes: Loricariidae), with implications on the diversification of Neotropical ichthyofauna. Molecular Ecology 12: 1855–1867 DOI 10.1046/j.1365-294X.2003.01857.x; Pimentel JSM, Carmo AO, Rosse IC, MartinsnAPV, Ludwig S, Facchin, S, Pereira AH, Brandão-Dias PFP, Abreu NL, Kalapothakis E. 2018. High-throughput sequencing strategy for microsatellite genotyping using neotropical fish as a model. Frontiers in Genetics 9: 1–8 https://doi.org/10.3389/fgene.2018.0007Test.; Poulsen CJ, Ehlers TA, Insel N, 2010. Onset of convective rainfall during gradual late Miocene rise of the Central Andes. Science 328: 490–493. http://dx.doi.org/10.1126/science.1185078Test.; Ríos N, Bouza C, Gutiérrez V, García G. 2017. Species complex delimitation and patterns of population structure at different geographic scales in Neotropical silver catfish (Rhamdia: Heptapteridae). Environmental Biology of Fishes 100(9): 1047–1067 https://doi.org/10.1007/s10641-017-0622Test-; Rivas-Lara TS, Lozano-Largacha Y, Casas-Agualimpia JY, Mena-García D, Guerrero-Rentería SP. 2007. Peces. Pp. 47 – 73. En: Jimenez-Ortega AM, Rengifo-Mosquera JT, Asprilla-Perea J y Abella-Sanclemente CS (Eds.). Guía de las 50 especies de fauna silvestre más comunes en la cabecera municipal de Quibdó y sus alrededores. Universidad Tecnológica del Chocó. Quibdó, Colombia.; Shibatta OA. 1998. Sistemática e evolução da família Pseudopimelodidae (Ostariophysi, Siluriformes), com a revisão taxonômica do gênero Pseudopimelodus [Ph.D. dissertation]. São Carlos: Universidade Federal de São Carlos. 353 p.; Sullivan JP, Muriel-Cunha J, Lundberg JG. 2013. Phylogenetic Relationships and Molecular Dating of the Major Groups of Catfishes of the Neotropical Superfamily Pimelodoidea (Teleostei, Siluriformes). Proceedings of the Academy of Natural Sciences of Philadelphia 162 (1): 89-110.; Usma JS, Valderrama M, Escobar MD, Ajiaco-Martínez RE, Villa-Navarro F, Castro F, Ramírez-Gil H, Sanabria AI, Ortega-Lara A, Maldonado-Ocampo J, Alonso JC, Cipamocha C. 2009. Peces dulceacuícolas migratorios en Colombia. In: Amaya JD, Naranjo LG (Eds) Plan nacional de las especies migratorias: diagnóstico e identificación de acciones para la conservación y el manejo sostenible de las especies migratorias de la biodiversidad en Colombia. Ministerio de Ambiente, Vivienda y Desarrollo Territorial, WWF Colombia, Bogotá, 103–131.; Vaini JO, do Amaral Crispim B, dos Santos Silva DB, Benites C, Russo MR, Grisolia AB. 2016. Genetic variability of pure Pseudoplatystoma corruscans and Pseudoplatystoma reticulatum individuals in the Paraná and Paraguay River basins. Fisheries Science 82(4): 605–611 https://doi.org/10.1007/s12562-016-0999-3Test.; Zalapa JE, Cuevas H, Zhu H, Steffan S, Senalik D, Zeldin E, McCown B, Harbut R, Simon P. 2012. Using Next-generation Sequencing approaches to isolate simple sequence repeat (SSR) loci in the plant sciences. American Journal of Botany 99:193–208.; Anderson VJ, Horton BK, Saylor JE, Mora A, Tesón E, Breecker DO, Ketcham RA. 2016. Andean topographic growth and basement uplift in southern Colombia: Implications for the evolution of the Magdalena, Orinoco, and Amazon river systems. Geosphere 12(4): 1235–1256 https://doi.org/10.1130/GES01294.1Test.; Brown SDJ, Collins RA, Boyer S, Lefort M, Malumbres-olarte J, Vink CO, Cruickshank RH. 2012. SPIDER: An R package for the analysis of species identity and evolution, with particular reference to DNA barcoding. Molecular Ecology Resources 12:562–565 https://doi.org/10.1111/j.1755-0998.2011.03108.xTest.; Fricke R, Eschmeyer WN, Van der Laan R. (eds). 2019. Eschmeyer's Catalog of Fishes: Geneta, Species, References. (http://researcharchive.calacademy.org/research/ichthyology/catalog/fishcatmain.aspTest). Electronic version accessed 02-10-2019.; Hoorn C, Guerrero J, Sarmiento GA, Lorente MA. 1995. Andean Tectonics as a Cause for Changing Drainage Patterns in Miocene Northern South-America. Geology 23:237–240 https://doi.org/10.1130/0091-7613Test.; Lundberg JG, Sullivan JP, Hardman M. 2011. Phylogenetics of the South American Catfish Family Pimelodidae (Teleostei: Siluriformes) using Nuclear and Mitochondrial Gene Sequences. Proceedings of the Academy of Natural Sciences of Philadelphia 161(1): 153–189 https://doi.org/10.1635/053.161.0110Test.; Machado CB, Galetti PM, Carnaval AC. 2018. Bayesian analyses detect a history of both vicariance and geodispersal in Neotropical freshwater fishes. Journal of Biogeography 45(6):1313–1325 https://doi.org/10.1111/jbi.13207Test.; Richardson JE, Madriñán S, Gómez-Gutiérrez MC, Valderrama E, Luna J, Banda-R K, Serrano J, Torres MF, Jara OA, Aldana AM, Cortés-B R, Sánchez D, Montes C. 2018. Using dated molecular phylogenies to help reconstruct geological, climatic, and biological history: Examples from Colombia. Geological Journal 53(6): 2935–2943 https://doi.org/10.1002/gj.3133Test.; Ronquist F, Teslenko M, Van Der Mark P, Ayres DL, Darling A, Höhna S, Huelsenbeck JP. 2012. Mrbayes 3.2: Efficient Bayesian phylogenetic inference and model choice across a large model space. Systematic Biology 61(3):539–542 https://doi.org/10.1093/sysbio/sys029Test.; Vaidya G, Lohman DJ, Meier R. 2011. SequenceMatrix: concatenation software for the fast assembly of multi-gene datasets with character set and codon information. Cladistics 27(2): 171–180 https://doi.org/10.1111/j.1096-0031.2010.00329.xTest.; Yu G, Smith DK, Zhu H, Guan Y, Lam TTY. 2016. GGTREE: An R package for visualization and annotation of phylogenetic trees with their covariates and other associated data. Methods in Ecology and Evolution 8:28–36 https://doi.org/10.1111/2041-210X.12628Test; Jiménez-Segura LF, Ortega-Lara A. Pseudopimelodus cf. bufonius (Valenciennes 1840). Chapter 7. Pp. 544 – 546. in: Lasso CA, Agudelo Córdoba E, Jiménez-Segura LF, Ramírez-Gil H, Morales-Betancourt M, Ajiaco-Martínez RE, de Paula Gutiérrez F, Usma Oviedo JS, Muñoz Torres SE, Sanabria Ochoa AI (Eds). 2011. I. Catálogo de los recursos pesqueros continentales de Colombia. Serie Editorial Recursos Hidrobiológicos y Pesqueros Continentales de Colombia. Instituto de Investigación de los Recursos Biológicos Alexander von Humboldt (IAvH). Bogotá, D.C., Colombia, 715p.; Ronquist F, Teslenko M, Van Der Mark P, Ayres DL, Darling A, Hohna S, Larget B, Liu L, Suchard MA, Huelsenbeck JP. 2012. Mrbayes 3.2: Efficient Bayesian phylogenetic inference and model choice across a large model space. Systematic Biology 61:539–542. doi:10.1093/sysbio/sys029.; Wilcox TP, Zwickl DJ, Heath TA, Hillis DM. 2002. Phylogenetic relationships of the dwarf boas and a comparison of Bayesian and bootstrap measures of phylogenetic support. Molecular Phylogenetic and Evolution 25:361–371. doi:10.1016/S1055-7903(02)00244-0.; Do Prado FD, Fernandez-Cebrián R, Foresti F, Oliveira C, Martínez P, Porto-Foresti F. 2017. Genetic structure and evidence of anthropogenic effects on wild populations of two Neotropical catfishes: baselines for conservation. Journal of Fish Biology 92(1):55-72. DOI 10.1111/jfb.13486; Vaini JO, do Amaral Crispim B, dos Santos Silva DB, Benites C, Russo MR, Grisolia AB. 2016. Genetic variability of pure Pseudoplatystoma corruscans and Pseudoplatystoma reticulatum individuals in the Paraná and Paraguay River basins. Fisheries Science 82(4): 605–611 https://doi.org/10.1007/s12562-016-0999-3Test; https://repositorio.unal.edu.co/handle/unal/75711Test

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    دورية أكاديمية

    المصدر: JOURNAL OF NEOTROPICAL BIODIVERSITY; Vol. 9 No. 1 (2019): Revista Biodiversidad Neotropical; 1-13 ; Revista Biodiversidad Neotropical; Vol. 9 Núm. 1 (2019): Revista Biodiversidad Neotropical; 1-13 ; 2256-5426 ; 2027-8918 ; 10.18636/bioneotropical.v9i1

    وصف الملف: application/pdf; text/html

    العلاقة: https://revistas.utch.edu.co/index.php/Bioneotropical/article/view/544/883Test; https://revistas.utch.edu.co/index.php/Bioneotropical/article/view/544/878Test; Bagenal TB, Tesch FW. 1978. Age and growth. In: Bagenal TB (ed.). Methods for assessment of fish production in fresh waters. IBP Handbook No. 3. Oxford: Blackwell Scientific Publications: 101-136.; Cala P. 1995. Trophic levels of the abundant fishes of the Betania reservoir, upper río Magdalena, Colombia. Acta Biologica Venezuelica 16 (1): 47-53.; Duarte CM. and M. Alcaraz. 1989. To produce many small or few large eggs: a size-independent reproductive tactic of fish. Oecologia 80:401-404. Echeverria TW. 1987. Thirty-four species of California rockfishes: maturity and seasonality of reproduction. Fish. Bull. 85: 229-250. Flórez P. & Montoya P. 1985. Aspectos Bioecológico y Pesquero de tres especies de peces nativos en el Embalse de Salvajina, Suárez Cauca. CVC. Congreso Nacional Sobre Biodiversidad. 191 – 198p.; García de Jalón D, Mayo M, Hervella F, Barceló E, Fernández T. 1993. Principios y técnicas de gestión de la pesca en aguas continentales. Ediciones Mundi-Prensa. Madrid, España; 247. Goulding M. 1979. Ecología da pesca do río Madeira. CNPq / INPA. Manaus, 172 p. Gulland J. 1983. Fish stock assessment: a manual of basic methods. V. 1 (series on Food and Agriculture). FAO/Wiley and Sons, New York. 223 pp. Hilborn R. y CJ. Walters. 1992. Quantitative fisheries stock assessment. Choice, dynamics and uncertainty. Chapman & Hall, New York. Holdridge LL. 1996. Ecología basada en zonas de vida. Instituto interamericano de cooperación para la agricultura (IICA), San José, Costa Rica. Hyslop EJ. 1980. Stomach contents analysis, a review of methods and their application. J Fish Biol. 17: 411-429.; Instituto Geográfico Agustín Codazzi- IGAC. 1997. Zonificación Ambiental para el plan modelo colombiano-breasileño (eje Apaporis-Tabatinga). Ed. Linitipia Bolivar. Bogotá, Colombia. 410 pp. www.igac.gov.co Kaiser C. 1973. Gonadal maturation and fecundity of horse mackerel, Trachurus murphyi Nichols off the coast of the Chile. Trans. Amer. Fish. Soc., 102(1):101-108. Laevastu T. 1980. Manual de métodos de biología pesquera. Editorial Acribia. Zaragoza, España. 243p.; Lagler K, Bardach J, Miller R, May-Passino DR. 1984. Ictiología. AGT. Mexico D.F. Mexico; 489.; Maldonado-Ocampo JA, Vari RP y Usma JS. 2008. “Checklist of the freshwater fishes of Colombia”. En: Biota colombiana 9 (2): 143- 237.; Marrero C. 1994. Métodos para cuantificar contenidos estomacales en peces. Caracas: Universidad Nacional Experimental de los Llanos Ezequiel Zamora-Unellez.; Maturin M, J. A. Palacios y Casas, Y. Lozano-Largacha, H. Mosquera y T. Rivas. 2005. Biología reproductiva del bagre sapo Pseudopimelodus zungaro (Peces: Pimelodidae); en el río Atrato-Colombia. pp. 132-135. En: Rivas T, C. Rincón y H. Mosquera (Eds.). Memorias VIII Simposio Colombiano de Ictiología. Universidad Tecnológica del Chocó “Diego Luis Córdoba”, Acictios. Quibdó, Colombia. Nelson JS. 1994. Fish of the World. John wiley and. Sons, N. y. 600 p. Nikolsky GV. 1963. The ecology of fishes. Acad. Press, London and New York. 352p. Ortega-Lara A, Rivas-Lara TS. & Rincón-López CE. 2011. Pseudopimelodus schultzi. Pp. 547. En: Lasso, C. A., E. Agudelo Córdoba, L. F. Jiménez-Segura, H. Ramírez-Gil, M. Morales-Betancourt, R. E. Ajiaco-Martínez, F. de Paula Gutiérrez, J. S. Usma, S. E. Muños Torres y A. I. Sanabria Ochoa (Eds.). I. Catálogo de los recursos pesqueros continentales de Colombia. Serie Editorial Recursos Hidrobiológicos y Pesqueros Continentales de Colombia. Instituto de Investigación de Recursos Biológicos Alexander von Humboldt (IAvH). Bogotá, D. C., Colombia. Ortega-Lara A. 2012. Pseudopimelodus schultzi. Pp. 246. En: Mojica, J. I.; J. S. Usma; R. Álvarez-León y C. A. Lasso (Eds.) 2012. 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    المساهمون: Universidade Estadual Paulista (Unesp), Natl Ctr Res & Conservat Continental Fish, AES Tiete, Dept Vet Med FZEA

    المصدر: Latin american journal of aquatic research v.48 n.3 2020
    SciELO Chile
    CONICYT Chile
    instacron:CONICYT
    Web of Science
    Repositório Institucional da UNESP
    Universidade Estadual Paulista (UNESP)
    instacron:UNESP

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