يعرض 1 - 20 نتائج من 64 نتيجة بحث عن '"fenología floral"', وقت الاستعلام: 0.59s تنقيح النتائج
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    المؤلفون: Sánchez Rubiano, Mariana

    المساهمون: Manrique Garzón, Laura Milena, Lasso De Paulis, Eloísa, Madriñán Restrepo, Santiago, Sánchez Muñoz, Juan Armando, Facultad de Ciencias

    وصف الملف: 18 páginas; application/pdf

    Relation: Ayarza-Páez, A., Garzon-Lopez, C. X., & Lasso, E. (2022). Habitat preference and vulnerability to drought of three Hypericum species of the páramo. Plant Ecology & Diversity, 15(5-6), 281-295.; Biella, P., Ollerton, J., Barcella, M., & Assini, S. (2017). Network analysis of phenological units to detect important species in plant–pollinator assemblages: Can it inform conservation strategies? Community Ecology, 18(1), 1–10. https://doi.org/10.1556/168.2017.18.1.1; Benadi G, Pauw A (2018) Frequency dependence of pollinator visitation rates suggests that pollination niches can allow plant species coexistence. J Ecol 106:1892–1901. https://doi.org/10. 1111/1365-2745.13025; Benzing, D. H. (2000). Bromeliaceae Profile of Adaptive Radiation. Cambridge University Press.; Brody, A. (1997). Effects of pollinators, herbivores, and seed predators on flowering phenology. Ecology, 78(6), 1624-1631.; Chaparro H. 2005. Biología reproductiva de la bromelia terrestre Puya trianae en el Parque Chingaza. En: Bonilla, M. A. (Ed.). Estrategias adaptativas de plantas del páramo y del bosque altoandino en la cordillera oriental de Colombia. Universidad Nacional de Colombia. Bogotá.; Cavender-Bares, J., Kozak, K. H., Fine, P. V. A., & Kembel, S. W. (2009). The merging of community ecology and phylogenetic biology. Ecology Letters, 12(7), 693–715. doi:10.1111/j.1461-0248.2009.01314.x; Chesson, P. (2000). Mechanisms of maintenance of species diversity. Annual Review of Ecology, Evolution, and Systematics, 31, 343-366.; Diverse Pollination Networks Key to Ecosystem Sustainability. (2005). PLOS Biology, 4(1), null. https://doi.org/10.1371/journal.pbio.0040012; Dudgeon, S. R., Steneck, R. S., Davison, I. R., & Vadas, R. L. (1999). Coexistence of similar species in a space-limited intertidal zone. Ecological Monographs, 69(3), 331-352.; Franco-Saldarriaga, A., & Bonilla-Gómez, M. A. (2020). Sexual reproductive strategies of Puya nitida (Bromeliaceae) in a Colombian paramo, a tropical high-elevation ecosystem. Journal of Tropical Ecology, 36(6), 258–266. doi:10.1017/s0266467420000218; Gérard, M., Vanderplanck, M., Wood, T., & Michez, D. (2020). Global warming and plant – pollinator mismatches. 0, 77–86.; Ha, M. K., Schneider, S. A., & Adler, L. S. (2020). Facilitative pollinator sharing decreases with floral similarity in multiple systems. Oecologia. doi:10.1007/s00442-020-04770-1; Hofstede, R., Segarra, P & Mena, P. (2003). Los Páramos del Mundo. Proyecto Atlas Mundial de los Páramos. Global Peatland Initiative/NC-IUCN/EcoCiencia. Quito; Hofstede, R. et. al. (2014). Los Páramos Andinos ¿Qué sabemos? Estado de conocimiento sobre el impacto del cambio climático en el ecosistema páramo. UICN, Quito, Ecuador.; Johnson, S. D., et al. (2003). Pollination success in a deceptive orchid is enhanced by co-occurring rewarding magnet plants. Ecology, 84, 2919-2927.; Kearns, C. A., & Inouye, D. W. (1993). Techniques for pollination biologists. Boulder, CO: University Press of Colorado.; Krömer, T., Kessler, M., Lohaus, G., & Schmidt-Lebuhn, A. (2008). Nectar sugar composition and concentration in relation to pollination syndromes in Bromeliaceae. Plant Biology (Stuttgart, Germany), 10, 502–511. https://doi.org/10.1111/j.1438-8677.2008.00058.x; Lara, C., Lumbreras, K., & González, M. (2009). Niche partitioning among hummingbirds foraging on Penstemon roseus (Plantaginaceae) in central Mexico. Ornitol Neotropical, 20, 81–91.; Laverty, T. M. (1992). Plant interactions for pollinator visits: a test of the magnet species effect. Oecologia, 89, 502-508.; Lázaro, A., Gómez-Martínez, C., Alomar, D., González-Estévez, M. A., & Traveset, A. (2020). Linking species–level network metrics to flower traits and plant fitness. Journal of Ecology, 108(4), 1287– 1298. https://doi.org/10.1111/1365-2745.13334; Leon-Garcia IV, Lasso E. 2019. High heat tolerance in plants from the Andean highlands: Implications for páramos in a warmer world. PLoS ONE 14:e0224218. doi:10.1371/journal.pone.0224218; Levin, D. (1971). The origin of reproductive isolating mechanisms in flowering plants. Taxon, 20(1), 91–113.; Levin, D., & Anderson, W. (1970). Competition for Pollinators between Simultaneously Flowering Species. The American Naturalist, 104(939), 455-467.; Renvoize, S., Luteyn, J., Churchill, S., Iii, D., Gradstein, S., Sipman, H., & A., M. (2000). Paramos: A Checklist of Plant Diversity, Geographical Distribution, and Botanical Literature (Memoirs of the New York Botanical Garden Volume 84). Kew Bulletin, 55, 1017. https://doi.org/10.2307/4113659; Madriñán, S. (2015). Una nueva especie de Puya (Bromeliaceae) de los páramos cercanos a Bogotá, Colombia. Revista de la Academia Colombiana de Ciencias Exactas, Físicas y Naturales, 39(152), 389–398. https://doi.org/10.18257/raccefyn.223; Manzanares, J. M. (2020). Puya BROMELIACEAE BT - Monocotyledons (U. Eggli & R. Nyffeler, eds.). https://doi.org/10.1007/978-3-662-56486-8_94; Marín, C. (Ed.) (2021). Bitácora de flora. Guía visual de plantas de páramo. Segunda edición. Bogotá: Instituto de Investigación de Recursos Biológicos Alexander von Humboldt. 296 p.; Mitchell, R.J., Flanagan, R.J., Brown, B.J., Waser, N.M. & Karron, J.D. (2009) Newfrontiers in competition for pollination.Annals of Botany,103,1403–1413.; Moeller, D. A. (2004). Facilitative interactions among plants via shared pollinators. Ecology, 85(12), 3289–3301. doi:10.1890/03-0810; Morales, C., & Traveset, A. (2008). Interespecific pollen transfer: Magnitude, prevalence and consequences for plant fitness. Critical Reviews in Plant Sciences, 27, 221–238.; Nieto, A., Wüest, R. O., Graham, C. H., & Varassin, I. G. (2023). Diel niche partitioning of a plant-hummingbird network in the Atlantic forest of Brazil. Oecologia, 201(4), 1025–1037. https://doi.org/10.1007/s00442-023-05347-4.; Ohnson, S. T. D. J., Eter, C. R. I. P., & Ilsson, L. A. N. N. (2003). Co-Occurring Rewarding Magnet Plants. America, 84(11), 2919–2927.; Rathcke, B. (1983). Competition and facilitation among plants for pollinators. En L. Real (Ed.), Pollination biology (pp. 305-329). Nueva York: Academic Press.; Restrepo Chica, M. (2015). Mecanismos de la reproducción sexual relacionados con la coexistencia de Puya trianae y Puya nitida (Bromeliaceae) en el Parque Nacional Natural Chingaza. 114. Retrieved from http://www.bdigital.unal.edu.co/51733/; Salinas, L., Arana, C., & Suni, M. (2007). El nectar de especies de Puya como recurso para picaflores Altoandinos de Ancash, Peru. Revista Peruana de Biología\-A, 14, 129–134.; Santos, V. L. dos, Nievola, C. C., Fidalgo, A. de O., Kanashiro, S., Wanderley, M. das G. L., Gomes, E. P. C., & da Luz, C. F. P. (2021). Floral morphology and pollen viability of an endangered and endemic Bromeliaceae species from the Atlantic Forest. Grana, 60(5), 327–346. doi:10.1080/00173134.2021.1882; Sargent, R. D., & Ackerly, D. D. (2008). Plant–pollinator interactions and the assembly of plant communities. Trends in Ecology & Evolution, 23(3), 123–130. doi:10.1016/j.tree.2007.11.003; Schmidt, N. M., J. B. Mosbacher, P. S. Nielsen, C. Rasmussen, T. T. Høye, and T. Roslin. 2016. An ecological function in crisis? The temporal overlap between plant flowering and pollinator function shrinks as the Arctic warms. Ecography 39:1250–1252.; Silverton, J. (2004). Plant coexistence and the niche. Trends in Ecology and Evolution, 19(11).; Steinacher, G. y Wagner, J. (2010). Flower longevity and duration of pistil receptivity in high mountain plants. Flora, 205, 376–387.; Stiles, F. G. (1975). Ecology, flowering phenology, and hummingbird pollination of some Costa Rican Heliconia species. Ecology, 56(2), 285-301.; Temeles, E. J., Newman, J. T., Newman, J. H., Cho, S. Y., Mazzotta, A. R., & Kress, W. J. (2016). Pollinator competition as a driver of floral divergence: An experimental test. PLoS ONE, 11(1), 1–17. https://doi.org/10.1371/journal.pone.0146431; Tur, C., Castro-Urgal, R., & Traveset, A. (2013). Linking plant specialization to dependence in interactions for seed set in pollination networks. PLoS ONE, 8(10), e78294. https://doi.org/10.1371/journ al.pone.0078294; Velásquez-Noriega, P., Cuba, C. M. E., E., E. G., & Krömer, F. M.-C. (2016). Ecología floral y visitantes florales de Puya atra (Bromeliaceae), una planta endémica boliviana. 55(1), 1–23.; Waser, N.M. and Real, L.A. (1979) Effective mutualism between sequentially flowering plant-species. Nature 281, 670–672; Watts, S., Dormann, C. F., Martín González, A. M., & Ollerton, J. (2016). The influence of floral traits on specialization and modularity of plant–pollinator networks in a biodiversity hotspot in the Peruvian Andes. Annals of Botany, 118(3), 415–429. https://doi.org/10.1093/ aob/mcw114; Wolf, L.L., Stiles, F.G. & Hainsworth, F.R. (1976) Ecological organization of a tropical, highland hummingbird community. Journal of Animal Ecology,45,349–379.; Wolowski, M., Carvalheiro, L.G. & Freitas, L. (2016) Data from: Influence of plant-pollinator interactions on the assembly of plant and hummingbird communities. Dryad Digital Repository, https://doi.org/10.5061/dryad.fn921; https://hdl.handle.net/1992/74821; instname:Universidad de los Andes; reponame:Repositorio Institucional Séneca; repourl:https://repositorio.uniandes.edu.co/

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    المؤلفون: Cuartas, Sandra

    مصطلحات موضوعية: Fenología, Variantes genéticas, Fenología floral

    جغرافية الموضوع: Colombia

    وصف الملف: 28 minutos; video/avi; video/mp4

    Relation: http://hdl.handle.net/20.500.12010/2228; 17; http://expeditiorepositorio.utadeo.edu.co; instname:Universidad de Bogotá Jorge Tadeo Lozano; reponame:Repositorio Institucional de la Universidad de Bogotá Jorge Tadeo Lozano

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    المؤلفون: Myers, Ronald L.

    المصدر: Revista de Biología Tropical; Vol. 61 No. S1 (2013): Volume 61 – Supplement 1 – September 2013: Yolillales: The forgotten wetlands; 35-45 ; Revista de Biología Tropical; Vol. 61 Núm. S1 (2013): Volumen 61 – Suplemento 1 – Setiembre 2013: Yolillales: Los humedales olvidados; 35-45 ; Revista Biología Tropical; Vol. 61 N.º S1 (2013): Volumen 61 – Suplemento 1 – Setiembre 2013: Yolillales: Los humedales olvidados; 35-45 ; 2215-2075 ; 0034-7744 ; 10.15517/rbt.v61i1

    وصف الملف: application/pdf

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