Distribución de especies de la familia Lentibulariaceae en el territorio Colombiano: una revisión preliminar

datacite.rightshttp://purl.org/coar/access_right/c_16eceng
dc.contributor.advisorAranguren, Yani
dc.contributor.advisorMachado, Elwi
dc.contributor.authorGuerra Ospino, Abraham David
dc.date.accessioned2022-01-12T18:32:58Z
dc.date.available2022-01-12T18:32:58Z
dc.date.issued2021
dc.description.abstractLas características biogeográficas de Colombia permiten la existencia de una amplia diversidad de plantas. La familia Lentibulariaceae es un grupo de plantas carnívoras conformada por los géneros Pinguicula, Genlisea y Utricularia.. Sin embargo, en el territorio colombiano son muy pocos los estudios relacionados a esta la familia de plantas carnívolas. Además, usualmente se realizan estudios con un enfoque únicamente morfológico para la identificación en esta familia, que puede ocasionar una caracterización errónea, por lo tanto, es necesaria la implementación de métodos moleculares complementarios a los métodos tradicionales. El uso de marcadores moleculares es una alternativa viable para llevar a cabo la identificación y caracterización de especies de los géneros que componen la familia Lentibulariaceae. A través de una búsqueda sistemática de información se realizó una lista de las especies de la familia Lentibulariaceae registradas en Colombia y se construyó un mapa de distribución de las especies. Adicionalmente, haciendo uso de la información encontrada en la base de datos NCBI, se seleccionó el gen rps16 correspondientes a las especies encontradas en la base de datos de la familia Lentibulariaceae. Hasta el momento 36 especies de las 360 especies de la familia Lentibulariaceae, han sido registradas en Colombia. En 28 departamentos del territorio colombiano se han registrado especies de esta familia, con una abundancia significativa en los departamentos de Vichada, Vaupés y Guainía. Finalmente, la información existente en las bases de datos revisadas respecto a la familia Lentibulariaceae es muy escasa, por lo que es necesario realizar más exploración y estudios conocer a profundidad la diversidad y evolución de las especies de la familia en el territorio Colombiano.spa
dc.description.abstractIn Colombia, very few studies related to the Lentibulariaceae family have been carried out, mainly due to the lack of interest and information related to these genera. Since there is robust molecular information on the phylogeny of Lentibulariaceae in the literature, and resorting only to the morphological approach for identification in this family can lead to erroneous characterization, it is necessary to implement alternative and complementary methods to traditional methods. The use of molecular markers is a viable alternative to carry out an identification and characterization of species of the genus Pinguicula, Genlisea and Utricularia, which make up the Lentibulariaceae family. Through this work, the species of the Lentibulariaceae family registered in Colombia will be determined and an analysis of their distribution in the Colombian territory will be made. A species distribution map was made. So far 36 species of the 360 species of the Lentibulariaceae family have been registered in Colombia. In total, in 28 departments of the Colombian territory, species of this family have been registered, with a significant abundance in the departments of Vichada, Vaupés and Guainía. The information in the databases reviewed regarding the Lentibulariaceae family in the country is very scarce, therefore, more studies are necessary for the correct characterization of the species of the family in the Colombian territory.eng
dc.format.mimetypepdfspa
dc.identifier.urihttps://hdl.handle.net/20.500.12442/9268
dc.language.isospaspa
dc.publisherEdiciones Universidad Simón Bolivarspa
dc.publisherFacultad Ciencias Básicas y Biomédicasspa
dc.rightsAttribution-NonCommercial-NoDerivatives 4.0 Internacional
dc.rights.accessrightsinfo:eu-repo/semantics/restrictedAccesseng
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/
dc.subjectPlantas carnívorasspa
dc.subjectUtriculariaspa
dc.subjectGenliseaspa
dc.subjectPinguiculaspa
dc.subjectCarnivorous plantsspa
dc.subjectUtriculariaspa
dc.subjectGenliseaspa
dc.subjectPinguiculaspa
dc.titleDistribución de especies de la familia Lentibulariaceae en el territorio Colombiano: una revisión preliminarspa
dc.type.driverinfo:eu-repo/semantics/bachelorThesiseng
dc.type.spaTrabajo de grado - pregradospa
dcterms.referencesAchno, B. A. J. A. N. P., & Owski, K. O. W. O. (2008). ALGAE COMMENSAL COMMUNITY IN GENLISEA TRAPS. 77(1), 77–86.eng
dcterms.referencesAdlassnig, W., Peroutka, M., Lambers, H., & Lichtscheidl, I. K. (2005). The Roots of Carnivorous Plants. Plant and Soil, 274(1–2), 127–140. https://doi.org/10.1007/s11104-004-2754-2eng
dcterms.referencesAlcalá, R. E., & Domínguez, C. A. (2017). Biología de las plantas carnívoras: aspectos ecológicos y evolutivos. Botanical Sciences, 69(60), 59. https://doi.org/10.17129/botsci.1519eng
dcterms.referencesÁlvaro Azofeifa-Delgado. (2006). REVISIÓN BIBLIOGRÁFICA USO DE MARCADORES MOLECULARES EN PLANTAS ; APLICACIONES EN FRUTALES DEL TRÓPICO 1. 17(2).eng
dcterms.referencesBiology, G., & Access, E. A. (2015). Genome-wide analysis of adaptive molecular evolution in the carnivorous plant. https://doi.org/10.1093/gbe/evu288eng
dcterms.referencesCaravieri, F. A., Ferreira, A. J., Ferreira, A., Clivati, D., de Miranda, V. F. O., & Araújo, W. L. (2014). Bacterial community associated with traps of the carnivorous plants Utricularia hydrocarpa and Genlisea filiformis. Aquatic Botany, 116, 8–12. https://doi.org/10.1016/j.aquabot.2013.12.008eng
dcterms.referencesCook, C. D. K., & Taylor, P. (1991). The Genus Utricularia: A Taxonomic Monograph. Kew Bulletin Additional Series XIV. Kew Bulletin, 46(1), 183. https://doi.org/10.2307/4110760eng
dcterms.referencesCrespo, M. B., Martínez-azorín, M., Alonso-vargas, M. Á., Crespo, M. B., & Martínez-azorín, M. (2018). all Aspects of Plant Biology Morphological and molecular data support recognition of a new rupicolous species of Pinguicula ( Lentibulariaceae ) from the Iberian Peninsula of Pinguicula ( Lentibulariaceae ) from the Iberian Peninsula. Plant Biosystems - An International Journal Dealing with All Aspects of Plant Biology, 3504(May), 1–11. https://doi.org/10.1080/11263504.2018.1461702eng
dcterms.referencesDarwin C. 1875. Insectivorous Plants. John Murray, London.eng
dcterms.referencesDíaz, Y. C. A., Varani, A. M., Michael, T. P., & Miranda, V. F. O. (2017). Development of microsatellite markers for the carnivorous plant Genlisea aurea ( Lentibulariaceae ) using genomics data of NGS. Molecular Biology Reports, 0(0), 0. https://doi.org/10.1007/s11033-017-4140-1eng
dcterms.referencesEllison, A. M., & Gotelli, N. J. (2009). Energetics and the evolution of carnivorous plants - Darwin’s “most wonderful plants in the world.” In Journal of Experimental Botany (Vol. 60, Issue 1). https://doi.org/10.1093/jxb/ern179eng
dcterms.referencesEm, G., Malpighia, A., Fernanda, M., Salla, S., Ruas, C. D. E. F., Maurício, P., & Valéria, R. E. (2002). USO DE MARCADORES MOLECULARES NA ANÁLISE DA VARIABILIDADE. 1, 15–22.eng
dcterms.referencesFernández-Pérez, A. (1964). PLANTAS INSECTIVORAS, I: LENTIBULARIACEAS DE COLOMBIA Y PERU. Caldasia, 9(41), 5–79, 81– 84.spa
dcterms.referencesGreilhuber, J., Borsch, T., Müller, K., Worberg, A., Porembski, S., & Barthlott, W. (2006). Smallest angiosperm genomes found in Lentibulariaceae, with chromosomes of bacterial size. Plant Biology, 8(6), 770–777. https://doi.org/10.1055/s-2006-924101eng
dcterms.referencesHatcher, C. R., Ryves, D. B., & Millett, J. (2020). The function of secondary metabolites in plant carnivory. Annals of Botany, 125(3), 399–411. https://doi.org/10.1093/aob/mcz191eng
dcterms.referencesHrdina, A., & Romportl, D. (2017). Evaluating Global Biodiversity Hotspots- Very Rich and even More Endangered. Journal of Landscape Ecology(Czech Republic), 10(1), 108–115. https://doi.org/10.1515/jlecol- 2017-0013eng
dcterms.referencesIdrees, M., & Irshad, M. (2015). Molecular Markers in Plants for Analysis of Genetic Diversity : A Review Molecular Markers in Plants for Analysis of Genetic Diversity : A Review. March.eng
dcterms.referencesIgnal, A. V, & Ilan, D. M. (2002). A review on SNP and other types of molecular markers and their use in animal genetics. 34, 275–305. https://doi.org/10.1051/gseeng
dcterms.referencesLloyd, F. E. (1976). The Carnivorous Plants.eng
dcterms.referencesLustofin, K., Świątek, P., Miranda, V. F. O., & Płachno, B. J. (2020). Flower nectar trichome structure of carnivorous plants from the genus butterworts Pinguicula L. (Lentibulariaceae). Protoplasma, 257(1), 245–259. https://doi.org/10.1007/s00709-019-01433-8eng
dcterms.referencesMarris, E. (2010). Conservation: Biodiversity as a bonus prize. Nature, 468(7326), 895. https://doi.org/10.1038/468895aeng
dcterms.referencesMatías, E., Guzmán, M., & Inguicula, P. L. (2005). Embriología de las estructuras reproductoras masculinas del género Pinguicula L. (Lentibulariaceae).spa
dcterms.referencesMcPherson, S. (2010). Carnivorous Plants and Their Habitats: Volume One.eng
dcterms.referencesMüller, K., Borsch, T., Legendre, L., Porembski, S., Theisen, I., & Barthlott, W. (2004). Evolution of carnivory in lentibulariaceae and the lamiales. Plant Biology, 6(4), 477–490. https://doi.org/10.1055/s-2004-817909eng
dcterms.referencesOrsch, T. H. B., Arthlott, W. I. B., Teiger, J. U. S., Archant, A. D. A. M. M., & Egendre, L. A. L. (2005). Phylogenetic analysis of Pinguicula (Lentibulariaceae): chloroplast DNA sequences and morphology support several geographically distinct radiations. 92(10), 1723–1736.eng
dcterms.referencesPłachno, B. J., Adamec, L., Lichtscheidl, I. K., Peroutka, M., Adlassnig, W., & Vrba, J. (2006). Fluorescence Labelling of Phosphatase Activity in Digestive Glands of Carnivorous Plants. Plant Biology, 8(6), 813–820. https://doi.org/10.1055/s-2006-924177eng
dcterms.referencesProfile, S. E. E. (2014). MOLECULAR CHARACTERIZATION OF SOME CLOSELY RELATED SPECIES OF UTRICULARIA L . USING INTER-SSR MARKERS. December 2003.eng
dcterms.referencesSilva, Saura R., Alvarenga, D. O., Aranguren, Y., Penha, H. A., Fernandes, C. C., Pinheiro, D. G., Oliveira, M. T., Michael, T. P., Miranda, V. F. O., & Varani, A. M. (2017). The mitochondrial genome of the terrestrial carnivorous plant Utricularia reniformis (Lentibulariaceae): Structure, comparative analysis and evolutionary landmarks. PLoS ONE, 12(7), 1–26. https://doi.org/10.1371/journal.pone.0180484eng
dcterms.referencesSilva, Saura R., Pinheiro, D. G., Penha, H. A., Płachno, B. J., Michael, T. P., Meer, E. J., Miranda, V. F. O., & Varani, A. M. (2019). Intraspecific variation within the utricularia amethystina species morphotypes based on chloroplast genomes. International Journal of Molecular Sciences, 20(24), 1–19. https://doi.org/10.3390/ijms20246130eng
dcterms.referencesSilva, Saura Rodrigues, Płachno, B. J., Medeiros Carvalho, S. G., & Oliveira Miranda, V. F. (2020). Genlisea hawkingii (Lentibulariaceae), a new species from Serra da Canastra, Minas Gerais, Brazil. PLoS ONE, 15(1), 1–15. https://doi.org/10.1371/journal.pone.0226337eng
dcterms.referencesSirová, D., Borovec, J., Černá, B., Rejmánková, E., Adamec, L., & Vrba, J. (2009). Microbial community development in the traps of aquatic Utricularia species. Aquatic Botany, 90(2), 129–136. https://doi.org/10.1016/j.aquabot.2008.07.007eng
dcterms.referencesVu, G. T. H. (2015). Metatranscriptome analysis reveals host-microbiome interactions in traps of carnivorous Genlisea. 6(July), 1–15. https://doi.org/10.3389/fmicb.2015.00526eng
dcterms.referencesYoung, J., Watt, A., Nowicki, P., Alard, D., Clitherow, J., Henle, K., Johnson, R., Laczko, E., McCracken, D., Matouch, S., Niemela, J., & Richards, C. (2005). Towards sustainable land use: Identifying and managing the conflicts between human activities and biodiversity conservation in Europe. Biodiversity and Conservation, 14(7), 1641–1661. https://doi.org/10.1007/s10531-004-0536-zeng
oaire.versioninfo:eu-repo/semantics/acceptedVersioneng
sb.programaMicrobiologíaspa
sb.sedeSede Barranquillaspa

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