Oil palm cultivars Elaeis guineensis Jacq. present cross-pollination, which implies that fertilization of the tricarpellary ovaries is carried out by insects such as Elaeidobius kamerunicus, E. subvittatus and Mystrops costaricensis, which transport the p
| dc.creator | Hernández Rendón, Diego Alejandro | |
| dc.creator | Mesa Fuquen, Eloína | |
| dc.creator | Zambrano, Jorge Efraín | |
| dc.creator | López Rojas, Fredy | |
| dc.creator | Murillo, Laura Sofía | |
| dc.creator | Mosquera Montoya, Mauricio | |
| dc.date | 2026-05-26 | |
| dc.date.accessioned | 2026-06-05T16:59:56Z | |
| dc.description | Oil palm cultivars Elaeis guineensis Jacq. present cross-pollination, which implies that fertilization of the tricarpellary ovaries is carried out by insects such as Elaeidobius kamerunicus, E. subvittatus and Mystrops costaricensis, which transport the pollen from the male to the female inflorescences. In order to reduce the dependence of the palm-insect interaction with respect to bunch formation and the achievement of higher oil to mesocarp contents in this type of cultivars, a study was carried out in the Eastern Zone of Colombia, under conditions of water deficit, in female inflorescences at phenological stage 609 (post-anthesis), with the objective of determining the effect of applications of 1-naphthaleneacetic acid (NAA), in liquid suspension (treatment 2), solid mixture (treatment 3) and natural pollination (treatment 1), on the different bunch components. | en-US |
| dc.description | Los cultivares de palma de aceite Elaeis guineensis Jacq. se caracterizan por presentar polinización cruzada, en la cual la fecundación de los ovarios tricarpelares ocurre principalmente mediante la acción de insectos polinizadores, como Elaeidobius kamerunicus, E. subvittatus y Mystrops costaricensis, que transportan el polen desde las inflorescencias masculinas hacia las femeninas. Con el fin de disminuir la dependencia de la interacción entre palma-insecto respecto a la formación de racimos y la consecución de mayores contenidos de aceite a mesocarpio en este tipo de cultivares, se desarrolló un estudio en la Zona Oriental colombiana, bajo condiciones de déficit hídrico, sobre inflorescencias femeninas en estadio fenológico 609 (postantesis). El objetivo fue determinar el efecto de las aplicaciones de ácido 1-naftalenacético (ANA), tanto en suspensión líquida (tratamiento 2) como en mezcla sólida (tratamiento 3), en comparación con la polinización natural (tratamiento 1), sobre las diversas variables del racimo. | es-ES |
| dc.format | application/pdf | |
| dc.identifier | 10.56866/01212923.14517 | |
| dc.identifier.uri | https://repositorio.fedepalma.org/handle/123456789/158332 | |
| dc.identifier.url | https://publicaciones.fedepalma.org/index.php/palmas/article/view/14517 | |
| dc.language | spa | |
| dc.publisher | Cenipalma | es-ES |
| dc.relation | https://publicaciones.fedepalma.org/index.php/palmas/article/view/14517/14451 | |
| dc.relation | /*ref*/Ajambang, W., Ardie, S. W., Volkaert, H., Galdima, M., & Sudarsono, S. (2015). Huge carbohydrate assimilates delay response to complete defoliation stress in oil palm (Elaeis guineensis Jacq.). Emirates Journal of Food and Agriculture, 27(1), 126-137. https://doi.org/10.9755/ejfa.v27i1.18734 | |
| dc.relation | /*ref*/Caicedo, A. F., Daza, E., Bayona, C., Ayala, I., Ruiz, R., & Romero, H. M. 2022, 28 de septiembre). Uso de ácido naftalenacético en cultivares comerciales de Elaeis guineensis D×P [Conferencia]. XX Conferencia Internacional sobre Palma de Aceite, Cartagena de Indias, Colombia. | |
| dc.relation | /*ref*/Corley, R. & Tinker, P. (2015). Care and maintenance of oil palms. En R. Corley & P. Tinker (Eds). The oil palm (290-328). Blacwell Science. | |
| dc.relation | /*ref*/Daud, S. N. S. M., & Ghani, I. A. (2016). Population density of oil palm pollinator weevil Elaeidobius kamerunicus based on seasonal effect and age of oil palm. AIP Conference Proceedings, 1784, (1). AIP Publishing LLC. https://doi.org/10.1063/1.4966889 | |
| dc.relation | /*ref*/Daza, E., Ayala-Díaz, I., Ruiz-Romero, R., & Romero, H. M. (2021). Effect of the application of plant hormones on the formation of parthenocarpic fruits and oil production in oil palm interspecific hybrids (Elaeis oleifera Cortes × Elaeis guineensis Jacq.). Plant Production Science, 24(3), 354-362. https://doi.org/10.1080/1343943X.2020.1862681 | |
| dc.relation | /*ref*/Federación Nacional de Cultivadores de Palma de Aceite. (2025). Sistema de Información Estadística del Sector Palmero (SISPA): áreas sembradas, plantas de beneficio y su ubicación geográfica. https://sispaplus.fedepalma.org/Reportes/Reporte/73 | |
| dc.relation | /*ref*/Games, P. A., & Howell, J. F. (1976). Pairwise Multiple Comparison Procedures with Unequal n’s and/ or Variances: A Monte Carlo Study. Journal of Educational Statistics, 1(2),113-125. | |
| dc.relation | /*ref*/Gintoron, C. S., Mohammed, M. A., Sazali, S. N., Deka, E. Q., Ong, K. H., Shamsi, I. H., & King, P. J. H. (2023). Factors affecting pollination and pollinators in oil palm plantations: a review with an emphasis on the Elaeidobius kamerunicus Weevil (Coleoptera: Curculionidae). Insects, 14(5), 454. https://doi.org/10.3390/insects14050454 | |
| dc.relation | /*ref*/Hormaza, P. & Romero, H. M. (2012). Escala BBCH para la descripción del desarrollo reproductivo del híbrido O×G. En H. M. Romero (Ed.). Generalidades sobre la morfología y fenología de la palma de aceite (105-120). Cenipalma. | |
| dc.relation | /*ref*/Instituto de Hidrología, Metereología y Estudios Ambientales. (2023). Estudio Nacional del Agua 2022. https://www.ideam.gov.co/sala-de-prensa/informes/publicacion-jue-23032023-1200 | |
| dc.relation | /*ref*/Keong, W. C. (1987). Development of parthenocarpic fruits in oil palm (Elaeis guineensis Jacq.) due to application of herbicides. Planter, 63(732), 90-95. | |
| dc.relation | /*ref*/Krishnan, K. T., & Pimid, M. (2024). Understanding the Effects of Climate Change on Elaeidobius kamerunicus (Coleoptera: Curculionidea), An Important Oil Palm Pollinator in Malaysia: Predicting Future Distribution for the Year 2050 Under Different Climate Pathways. Malaysian Applied Biology, 53(6), 167-177. https://doi.org/10.55230/mabjournal.v53i6.11 | |
| dc.relation | /*ref*/Labarca, M., Portillo, E., Portillo, A., & Morales, E. (2009). Estructuras reproductivas y polinización entomófila en tres lotes comerciales de palma aceitera (Elaeis guineensis Jacq.) en el estado Zulia, Venezuela. Revista de la Facultad de Agronomía, 26(1), 1-22. | |
| dc.relation | /*ref*/Li, K., Grass, I., Fung, T. Y., Fardiansah, R., Rohlfs, M., Buchori, D., & Tscharntke, T. (2022). Adjacent forest moderates insect pollination of oil palm. Agriculture, Ecosystems & Environment, 338, 108108. https://doi.org/10.1016/j.agee.2022.108108 | |
| dc.relation | /*ref*/Littell, R. C., Milliken, G. A., Stroup, W. W., Wolfinger, R. D., & Schabenberger, O. (2006). SAS for Mixed Models. Segunda edición. Cary, SAS Institute. | |
| dc.relation | /*ref*/McAtee, P., Karim, S., Schaffer, R., & David, K. (2013). A dynamic interplay between phytohormones is required for fruit development, maturation, and ripening. Frontiers in plant science, 4, 79. https://doi.org/10.3389/fpls.2013.00079 | |
| dc.relation | /*ref*/Montes-Bazurto, L. G., Sánchez, L. Á., Prada, F., Daza, E. S., Bustillo, A. E., & Romero, H. M. (2018). Relationships Between Inflorescences and Pollinators and Their Effects on Bunch Components in Elaeis guineensis, in Colombia. Journal of Entomological Science, 53(4), 554-568. https://doi.org/10.18474/JES18-06.1 | |
| dc.relation | /*ref*/Mosquera-Montoya, M., Ruiz-Álvarez, E., Munévar-Martínez, D. E., Ardila-Badillo, C., Cala, S. L., Benavides, E., & Chávez, N. (2025). Costos de producción 2024 en la palmicultura colombiana: un análisis de empresas benchmark. Palmas, 46(1), 41-54. https://doi.org/10.56866/01212923.14473 | |
| dc.relation | /*ref*/Prada, F., & Romero, H. M. (2012). Muestreo y análisis de racimos en el cultivo de la palma de aceite. Tecnologías para la agroindustria de la palma de aceite, guía de facilitadores. Federación Nacional de Cultivadores de Palma de Aceite. http://repositorio.fedepalma.org/handle/123456789/107697 | |
| dc.relation | /*ref*/Rincón, S. M., Hormaza, P. A., Moreno, L. P., Prada, F., Portillo, D. J., García, J. A., & Romero, H. M. (2013). Use of phenological stages of the fruits and physicochemical characteristics of the oil to determine the optimal harvest time of oil palm interspecific O×G hybrid fruits. Industrial Crops and Products, 49, 204–210. https://doi.org/10.1016/j.indcrop.2013.04.035 | |
| dc.relation | /*ref*/Romero, H. M., Caicedo, A., & Ayala, I. (2020). Utilización de ácido 1-naftalenacético (ANA) para incrementar la producción de aceite en palma africana (Elaeis guineensis Jacq.). Boletín El Palmicultor (576), 14-16. http://repositorio.fedepalma.org/handle/123456789/138597 | |
| dc.relation | /*ref*/Romero, H. M., Daza, E., Ayala-Díaz, I., & Ruiz-Romero, R. (2021a). High-oleic palm oil (HOPO) production from parthenocarpic fruits in oil palm interspecific hybrids using naphthalene acetic acid. Agronomy, 11(2), 290. https://doi.org/10.3390/agronomy11020290 | |
| dc.relation | /*ref*/Romero, H. M., Forero, D., Hormaza, P., Moreno, L., & Ruiz, R. (2021b). Generalidades sobre la morfología y fenología de la palma de aceite. Cenipalma. | |
| dc.relation | /*ref*/Sukarman, Saidy, A. R., Rusmayadi, G., Adriani, D. E., Primananda, S., Suwardi, ... Darlan, N. H. (2025). Climate Stress Affects the Important Phases of Oil Palm Flower Development on Various Soil Types. IOP Conference Series: Earth and Environmental Science, 1463, 012004. | |
| dc.relation | /*ref*/Syed, R. (1984). Los insectos polinizadores de la palma africana. Palmas, 5(3), 19-64. https://publicaciones.fedepalma.org/index.php/palmas/article/view/72 | |
| dc.relation | /*ref*/Tandon, R., Manohara, T. N., Nijalingappa, B. H. M., & Shivanna, K. R. (2001). Pollination and pollen-pistil interaction in oil palm, Elaeis guineensis. Annals of Botany, 87(6), 831-838. https://doi.org/10.1006/anbo.2001.1421 | |
| dc.relation | /*ref*/Taufika, R., Erawati, D. N., Fisdiana, U., Humaida, S., & Harlianingtyas, I. (2025). Assessment of insect population abundance and its effect on the production value of fresh fruit bunches of oil palm (Elaeis guineensis Jacq.). IOP Conference Series: Earth and Environmental Science, 1446, 012026. | |
| dc.relation | /*ref*/Tejeda, G., Barrios, C., Aldana, R., Florián, L., Castillo, N. & Morales, A. (2024). Reconocimiento de los principales insectos polinizadores en el cultivo de palma de aceite en Colombia. Boletín Técnico 46. Cenipalma. https://doi.org/10.56866/9786287711020 | |
| dc.relation | /*ref*/Thomas, R. L., Seth, A. K., Chan, K. W. & Ooi, S. C. (1973). Induced parthenocarpy in the oil palm. | |
| dc.relation | /*ref*/Annals of Botany, 37(151), 447-452. http://www.jstor.org/stable/42759421 | |
| dc.rights | Derechos de autor 2026 Palmas | es-ES |
| dc.rights | https://creativecommons.org/licenses/by-nc-nd/4.0 | es-ES |
| dc.source | Palmas; Vol. 47 Núm. 1 (2026): Palmas; 7-17 | es-ES |
| dc.source | 2744-8266 | |
| dc.subject | componentes del racimo | es-ES |
| dc.subject | Elaeis guineensis | es-ES |
| dc.subject | polinización artificial | es-ES |
| dc.subject | tasa de extracción de aceite | es-ES |
| dc.subject | artificial pollination | en-US |
| dc.subject | bunch components | en-US |
| dc.subject | Elaeis guineensis | en-US |
| dc.subject | oil extraction rate | en-US |
| dc.title | Oil palm cultivars Elaeis guineensis Jacq. present cross-pollination, which implies that fertilization of the tricarpellary ovaries is carried out by insects such as Elaeidobius kamerunicus, E. subvittatus and Mystrops costaricensis, which transport the p | en-US |
| dc.title | Evaluación de la polinización artificial con ácido 1-naftalenacético (ANA) frente a la polinización natural en cultivares de palma de aceite Elaeis guineensis Jacq. | es-ES |
| dc.type | info:eu-repo/semantics/article | |
| dc.type | info:eu-repo/semantics/publishedVersion |