dc.contributorHerrera Jacquelin, Herrera, François
dc.contributorhttps://orcid.org/0000-0001-7427-0298
dc.contributorhttps://scholar.google.es/citations?user=kGpZGHwAAAAJ&hl=es
dc.contributorhttp://scienti.colciencias.gov.co:8081/cvlac/visualizador/generarCurriculoCv.do?cod_rh=0001341603
dc.creatorGómez Vargas, Daniel
dc.date.accessioned2020-02-11T00:08:22Z
dc.date.available2020-02-11T00:08:22Z
dc.date.created2020-02-11T00:08:22Z
dc.date.issued2019-12-02
dc.identifierGómez, D. (2019). Evaluación de la eficacia reproductiva y patogénica de dos medios artificiales para el cultivo de nematodos entomopatógenos del género heterorhabditis spp (Tesis de pregrado de Ingeniería Ambiental). Universidad Santo Tomás. Bogotá, Colombia.
dc.identifierhttp://hdl.handle.net/11634/21579
dc.identifierreponame:Repositorio Institucional Universidad Santo Tomás
dc.identifierinstname:Universidad Santo Tomás
dc.identifierrepourl:https://repository.usta.edu.co
dc.description.abstractThe present study is in regards of the evaluation of two different culture mediums and its production and yield of entomopathogenic nematodes, with the aim for its utilization as biological control, meaning the substitution of chemical pesticides which suppose a dangerous environmental and human health impact. This study was performed with a culture of nematodes from the Heterorhabditis gender, specially taking into account the efficiency of the reproduction and recovery of nematodes in its juvenile phase. Two artificial culture mediums, solid and liquid, were assessed creating a monoxenic culture (the nematodes are just related with its symbiont bacteria), in order to compare the amount of EPNs produced by volume unit and it pathogenicity, which means the velocity the EPNs perform its metabolic process with the support from the symbiont bacteria inside the host’s body, therefore, the speed of the invasion of the host organisms that may affect crops is determined. The assessed solid culture medium generated reproduction of EPNs according to previous studies, however, it was not possible to make the comparison between the efficiency and yields of both culture mediums, due to the fact that the liquid culture did not register an offspring and a raise in the number of individuals. As a matter of fact, an analysis of the factors that affected the successful yield and recovery of nematodes was performed in order to future to generate the maximum yield and offspring of the nematodes in different liquid culture medium in future studies, such parameters were the oxygen production and demand, temperature, contamination by external agents and the mobility of the nematodes inside the culture media.
dc.languagespa
dc.publisherUniversidad Santo Tomás
dc.publisherPregrado de Ingeniería Ambiental
dc.publisherFacultad de Ingeniería Ambiental
dc.relationS. Rahman, «Pesticide consumption and productivity and the potential of IPM in Bangladesh,» Science of the Total Environment, pp. 48-56, 2012.
dc.relationG. J. Devine, D. Eza, E. Ogusuku y M. J. Furlong, «Uso de insecticidas: contexto y consecuencias ecológicas,» Revista Peruana de Medicina Experimental y Salud Publica, vol. 1, nº 25, pp. 74-100, 2008.
dc.relationA. Peters, R. Han , X. Yan y L. Leite, «Production of Entomopathogenic Nematodes,» de Microbial Control of Insect and Mite Pests, Elsevier, 2017, pp. 157-170.
dc.relationI. Grijalva Terán, «Evaluacion de cuatro medios sólidos de crecimiento para la producción in-vitro del nematodo entomopatógeno Heterorhabditis bacteriophora,» Escuela agrícola panamericana, Zamorano, 2014.
dc.relationY. Suarez Cárdenas, L. Marrero Artabe y J. Orrely Rodriguez, «NEMÁTODOS ENTOMOPATÓGENOS: UNA ALTERNATIVA PROMISORIA PARA EL CONTROL BIOLÒGICO DE CHINCHES PENTATOMORPHAS PLAGAS DE LA SOYA.,» Universidad de Matanzas, Matanzas, 2011.
dc.relationH. K. Kaya, «Entomogenous nematodes for insect control in IPM systems,» de Biological Control in Agricultural IPM Systems, Elsevier Inc, 1985, pp. 283-302.
dc.relationE. Lewis, J. Campbell, C. Griffin, H. Kaya y A. Peters, «Behavioral ecology of entomopathogenic nematodes,» Biological control, nº 38, pp. 66-79, 2006.
dc.relationS. Subramanian y M. Muthulakshmi, «Entomopathogenic Nematodes,» de Ecofriendly pest management for food security, Omkar, 2016, pp. 368-411.
dc.relationA. Saenz, «Importancia de los nematodos entomopatógenos para el control biológico de plagas en palma de aceite,» PALMAS, 2005.
dc.relationY. Flores Lara y G. Fimbres Cubillas, «Potencialidad y Retos del Uso de Nematodos Entomopatógenos para el Control Biológico de plagas. I: Control biológico mediante una asociación simbiótica NEP-Bacteria,» Universidad de Sonora, Sonora, 2016.
dc.relationA. R. Dillman y P. W. Sternberg, «Quick Guide: Enthomopathogenic Nematodes,» Current Biology, vol. 22, nº 11, pp. R430-R431, 2012.
dc.relationR. H. D. C. Shapiro-Ilan D.I., «Entomopathogenic nematode production and application technology,» Journal of Nematology, pp. 206-217, 2012.
dc.relationB. N. Akhurst R.J., «Biology and Taxonomy of Xenorhabdus,» de Entomopathogenic nematodes in Biological Control, Florida ,USA, CRC press, 1990, p. 365 pp.
dc.relationE. E. Lewis y D. J. Clarke, «Nematode Parasites and Entomopathogens,» de Insect Pathology, California, 2012, pp. 395-417.
dc.relationF. Ferrer, M. Trelles., G. Palencia, M. Navarro y R. Colmenares, «Posibilidades del uso de nematodos entomopatógenos para el control de Aeneolamia varia en caña de azúcar.,» Manejo Integrado de Plagas y Agroecología, nº 72, pp. 39-43, 2004.
dc.relationM. Rosero Guerrero, «Guerrero y M. Rosero, Evaluación de la virulencia de nematodos entopatógenos para el control del salivazo de la caña de azúca Aeneolamiavaria (F) (HEMIPTERA: CERCOPIDAE),» Universidad Nacional de Colombia, Palmira, 2011.
dc.relationL. Leite, L. Machado, R. M. Goulart, F. M. Tavares y A. Batista-Filho, «Screening of entomopathogenic nematodes (Nemata: Rhabditida) and the efficiency of Heterorhabditis sp. against the sugar cane root spittlebug Mahanarva fimbriolata (Fabr.) (Hemiptera: Cercopidae).,» Neotropical Entomology., vol. 35, pp. 785-790, 2005.
dc.relationA. Morton y F. García del Pino, «Effectiveness of different species of entomopathogenic nematodes for biocontrol of the Mediterranean flatheaded rootborer, Capnodis tenebrionis (Linne) (Coleoptera : Buprestidae) in potted peach tree,» Journal of Invertebrate Pathology, vol. 97, nº 2, pp. 128-133, 2008.
dc.relationK. Benitez y A. Duarte, «PROSPECCIÓN DE PATÓGENOS CON POTENCIAL PARA EL CONTROL BIOLÓGICO DE LA POLILLA GUATEMALTECA DE LA PAPA (Tecia solanivora, FAM Gelechiidae),» Universidad Santo Tomas, Bogotá, 2016.
dc.relationJ. Parada, «Steinernematidae en Cundinamarca y sur de Boyacá, Colombia.,» Nematodos entomoparásitos: experiencias y perspectivas, pp. 10-27, 2006.
dc.relationN. Lopez, «Nematodos para el control de insectos plagas.,» Los insectos y su manejo en la caficultura colombiana. FNC –Cenicafé, Chinchiná (Colombia). Manizales., vol. 10, nº 466, pp. 150-183, 2008.
dc.relationY. P. Baquero Barragan y C. N. Suarez Quintero, «DETERMINACIÓN DEL POTENCIAL DE USO DE LOS NEMATODOS ENTOMOFAGOS Steinernema feltiae (Steinernematidae) y Heterorhabditis sp. (Heterorhabditidae) COMO CONTROLADOR BIOLÓGICO DE LA POLILLA GUATEMALTECA DE LA PAPA Tecia solanivora (Gelechiidae) COMO UNA ALTER,» Universidad Santo Tomas, Bogotá, 2013.
dc.relationD. Shapiro-Ilan, S. Hazir y I. Glazer, «Basic and Applied Research: Entomopathogenic Nematodes,» de Microbial Control of Insect and Mite Pests, Academic Press, 2017, pp. 91-108.
dc.relationD. Shapiro-Ilan, S. Hazir y I. Glazer, «Basic and Applied Research: Entomopathogenic Nematodes,» de Microbial Control of Insect and Mite Pests, Academic Press, 2017, pp. 91-108.
dc.relationR. Georgis y R. Gaugler, «Predictability in biological control using entomopathogenic nematodes,» J. Econ. Entomol, pp. 713-720, 1991.
dc.relationY. Valdés Vázquez, A. Lobaina Audevert, M. E. Márquez Gutiérrez y M. Gómez Pacheco, «INFLUENCIA DE LA COMPOSICIÓN DE DIFERENTES MEDIOS DE CULTIVO EN LA REPRODUCCIÓN DE PHOTORHABDUS LUMINESCENS,» Fitosanidad, vol. 9, nº 2, pp. 25-28, 2005.
dc.relationJ. G. McMullen y P. Stock, «In vivo and In vitro Rearing of Entomopathogenic Nematodes (Steinernematidae and Heterorhabditidae),» Journal of Visualized Experiments, vol. 1, nº 91, pp. 52-96, 2014.
dc.relationI. Glazer y E. Lewis, «Bioassays for Entomopathogenic Nematodes,» de Bioassays of entomopathogenic microbes and nematodes, Wallingford, UK, CABI, 2000, pp. 229-247.
dc.relationR. Han y R.-U. Ehlers, «Effect of Photorhabdus luminescens phase variants on the in vivo and in vitro development and reproduction of the entomopathogenic nematodes Heterorhabditis bacteriophora and Steinernema carpocapsae,» FEMS Microbiology Ecology, vol. 35, nº 3, pp. 239-247, 2001.
dc.relationR. U. Ehlers y R. C. Han, «Cultivation of Axenic Heterorhabditis Spp. Dauer Juveniles and Their Response To Non-Specific Photorhabdus Luminescens Food Signals,» Nematologica, vol. 44, nº 4, pp. 425-435, 1998.
dc.relationD. I. Shapiro-Ilan, R. Han y X. Qiu, «Production of Entomopathogenic Nematodes,» de Mass Production of Beneficial Organisms, Academic Press, 2014, pp. 321-355.
dc.relationO. Strauch, S. Stoessel y R. Ehlers, «Culture conditions define automictic or amphimictic reproduction in entomopathogenic rhabditid nematodes of the genus Heterorhabditis,» Fundaments of applied nematology, nº 17, pp. 575-582, 1994.
dc.relationO. Strauch y R. U. Ehlers, «Food signal production of Photorhabdus luminescens inducing the recovery of ento-,» Applied Microbiology and Biotechnology, vol. 50, pp. 369-374, 1998.
dc.relationS. Johnigk, F. Ecke, M. Poehling y R. Ehlers, «Liquid culture mass production of biocontrol nematodes, Heterorhabditis bacteriophora (Nematoda: Rhabditida): improved timing of dauer juvenile inoculation,» Applied microbiology and biotechnology, vol. 64, nº 5, pp. 651-658, 2004.
dc.relationR. Ehlers y O. Strauch, «Influence of the aeration rate on the yields of the biocontrol nematode Heterorhabditis megidis in monoxenic liquid cultures.,» Applied Microbiology and Biotechnology, nº 54, pp. 9-13, 2000.
dc.relationC. Cho, K. Whang, R. Gaugler y S. Yoo, «Submerged monoxenic culture medium development for Heterorhabditis bacteriophora and its symbiotic bacterium Photorhabdus luminescens: protein sources.,» J. Microbiol. Biotechnol, nº 21, pp. 869-873, 2011.
dc.relation«Influence of cell density and phase variants of bacterial symbionts (Xenorhabdus spp.) on dauer juvenile recovery and development of biocontrol nematodes Steinernema carpocapsae and S. feltiae (Nematoda: Rhabditida).,» Applied Microbiology and Biotechnology, vol. 84, pp. 77-85, 2009.
dc.relationP. Jessen, O. Strauch, U. Wyss, R. Luttmann y R. Ehlers, «Carbon dioxide triggers dauer juve- nile recovery of entomopathogenic nematodes (Heterorhabditis spp).,» Nematology, vol. 2, nº 1, pp. 319-324, 2000.
dc.relationE. L. Melo, C. A. Ortega, A. Gailgl y A. Bellotti, «Evaluación de nematodos entomopatógenos para el manejo de Phyllophaga bicolor (Coleoptera: Melolonthidae),» Revista Colombiana de Entomología, pp. 207-212, 2010.
dc.relationY. Pérez Bocourt, M. E. Márquez Gutiérrez y M. Gómez, «CARACTERIZACIÓN DE LA FASE PRIMARIA DE LAS BACTERIASSIMBIONTES DE LOS NEMATODOS ENTOMOPATÓGENOSSTEINERNEMA CUBANUM, HETERORHABDITIS INDICAY H. BACTERIOPHORA,» Fitosanidad, vol. 10, nº 3, pp. 193-195, 2006.
dc.rightshttp://creativecommons.org/licenses/by/2.5/co/
dc.rightsAbierto (Texto Completo)
dc.rightsinfo:eu-repo/semantics/openAccess
dc.rightshttp://purl.org/coar/access_right/c_abf2
dc.rightsAtribución 2.5 Colombia
dc.rightsAtribución 2.5 Colombia
dc.titleEvaluación de la eficacia reproductiva y patogénica de dos medios artificiales para el cultivo de nematodos entomopatógenos del género heterorhabditis spp


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