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Research Article

Relieving dormancy and improving germination of Piquín chili pepper (Capsicum annuum var. glabriusculum) by priming techniques

ORCID Icon, , ORCID Icon, , , ORCID Icon & ORCID Icon | (Reviewing editor) show all
Article: 1550275 | Received 16 Oct 2018, Accepted 11 Nov 2018, Published online: 27 Nov 2018

References

  • Aloui, H., Souguir, M., & Hannachi, C. (2014). Determination of an optimal priming duration and concentration protocol for pepper seeds (Capsicum annuum L.). Acta Agriculturae Slovenica, 103(2), 213–221. doi:10.14720/aas
  • Araiza Lizarde, N., Araiza Lizarde, E., & Martínez Martinez, J. G. (2011). Evaluación de la Germinación y Crecimiento de Plántula de Chiltepín (Capsicum annuum L. var. glabriusculum) en invernadero. Revista Colombiana de Biotecnología, 13(2), 170–175.
  • Arcia González, D. I. (1985). Evaluación financiera y económica de un sistema agroforestal en el estado de Quintana Roo. Montecillo, Mex: Tesis Maestría. Colegio de Postgraduados.
  • Bañuelos, N., Salido, P. L., & Gardea, A. (2008). Etnobotánica del Chiltepín. Pequeño gran señor en la cultura de los sonorenses. Estudios Sociales: Revista de Investigación Científica, 16(32), 177–206.
  • Barchenger, D. W., & Bosland, P. W. (2016). Exogenous applications of capsaicin inhibits seed germination of Capsicum annuum. Scientia horticulturae, 203, 29–31. doi:10.1016/j.scienta.2016.03.009
  • Bose, B., Kumar, M., Singhal, R. K., & Mondal, S. (2018). Impact of seed priming on the modulation of physico-chemical and molecular processes during germination, growth, and development of crops. In Advances in seed priming (pp. 23–40). Singapore: Springer Singapore. doi:10.1007/978-981-13-0032-5_2
  • Cano-Vazquez, A., Lopez-Peralta, M., Zavaleta-Mancera, H. A., Cruz-Huerta, N., Ramirez, R. I., Gardea, B. A., & Gonzalez, H. V. A. (2015). Variation in seed dormancy among accessions of chile piquin (Capsicum annuum var. glabriusculum). Botanical Sciences, 93(1), 175–184.
  • Cano-Vázquez, A., López-Peralta, M. C., Zavaleta-Mancera, H. A., Cruz-Huerta, N., Ramírez-Ramírez, I., Gardea-Béjar, A., & González-Hernández, V. A. (2015). Variación en grados de latencia en semillas entre colectas de chile piquín (Capsicum annuum var. glabriusculum). Botanical Sciences, 93(1), 175. doi:10.17129/botsci.138
  • Demir, I., & Mavi, K. (2004). The effect of priming on seedling emergence of differentially matured watermelon (Citrullus lanatus (Thunb.) Matsum and Nakai) seeds. Scientia horticulturae, 102(4), 467–473. doi:10.1016/j.scienta.2004.04.012
  • Dutta, P. (2018). Seed priming: new vistas and contemporary perspectives. In Advances in seed priming (pp. 3–22). Singapore: Springer Singapore. doi:10.1007/978-981-13-0032-5_1
  • Gaius, PS (1949–1954). Naturalis historia, vol. IV–VII, Books 12–27 (trans: Rackham H, Jones WHS, Eichholz DE). Harvard University Press, Massachussets and William Heinemann, London.
  • García, F. A., Montes, H. S., Rangel, L. J. A., García, M. E., & Mendoza, E. M. (2010). Respuesta fisiológica de la semilla chile piquín [Capsicum annuum var. glabriusculum (Dunal) Heiser & Pickersgill] al ácido giberélico e hidrotermia. Revista Mexicana de Ciencias Agrícolas, 1(2), 203–216.
  • Guerrero Velázquez, R. (2015). Niveles de dormancia en semillas de chile silvestre de diferentes ecorregiones y desarrollo de protocolos para la germinación y regeneración de accesiones. ( MsC Thesis). Universidad Autónoma de Aguascalientes.
  • Hayano, C., Gamez, N., & Medina, L. A. (2016). Wild pepper capsicum annuum L. var. glabriusculum: Taxonomy, plant morphology, distribution, genetic diversity, genome sequencing, and phytochemical compounds. Crop Science, 56(1), 1–11. doi:10.2135/cropsci2014.11.0789
  • Ibrahim, E. A. (2016). Seed priming to alleviate salinity stress in germinating seeds. Journal of Plant Physiology, 192(3), 38–46. doi:10.1016/j.jplph.2015.12.011
  • ISTA. (2017). Changes to the ISTA rules for 2017. International Rules for Seed Testing. Zurich, Switzerland, 12, 345. doi: 10.15258/istarules.2017.i.
  • Jaganathan, G. K., Yule, K., & Liu, B. (2016). On the evolutionary and ecological value of breaking physical dormancy by endozoochory. Perspectives in Plant Ecology, Evolution and Systematics, 22, 11–22. doi:10.1016/j.ppees.2016.07.001
  • Kato-Noguchi, H., & Tanaka, Y. (2004). Effects of capsaicin on plant growth. Biologia Plantarum, 47(1), 157–159. doi:10.1023/A:1027317906839
  • Kim, H. J. (2016). Opportunities and challenges of alternative specialty crops: The global picture. HortScience : A Publication of the American Society for Horticultural Science, 51(11), 1316–1319. doi:10.21273/HORTSCI10659-16
  • Koornneef, M., Bentsink, L., & Hilhorst, H. (2002). Seed dormancy and germination. Current Opinion in Plant Biology, 5(1), 33–36. doi:10.1016/S1369-5266(01)00219-9
  • Korkmaz, A. (2005). Inclusion of acetyl salicylic acid and methyl jasmonate into the priming solution improves low-temperature germination and emergence of sweet pepper. HortScience : A Publication of the American Society for Horticultural Science, 40(1), 197–200.
  • Marín Sánchez, J., Mejía Contreras, J. A., Hernández Livera, A., Peña Lomeli, A., & Carballo Carballo, A. (2007). Osmotic conditioning of Husk tomato seeds. Agricultura Técnica En México, 33, 115–123.
  • Marín Sánchez, J., Rivas Jacobo, M., Flores Cano, J., Rojas Velazquez, A., & Jarquin Gálvez, R. (2013). Efecto del priming sobre la calidad fisiológica de semilla criolla de chile ancho (Capsicum annuum L.). Corpoica Ciencia y Tecnología Agropecuaria, 1(1), 1–6.
  • Ozbay, N. (2018). Studies on seed priming in pepper (Capsicum annuum L.). In Advances in seed priming (pp. 209–239). Singapore: Springer Singapore. doi:10.1007/978-981-13-0032-5_12
  • Paparella, S., Araujo, S. S., Rossi, G., Wijayasinghe, M., Carbonera, D., & Balestrazzi, A. (2015). Seed priming: State of the art and new perspectives. Plant Cell Reports, 34(8), 1281–1293. doi:10.1007/s00299-015-1784-y
  • Quintero, M. F., Guerrero-Gonzalez, M. L., Guillen Castillo, O., Marín-Sanchez, J., Delgado-Sánchez, P., & Guzmán, M. (2017). Osmo-priming improves germinability on piquín chili seeds. In C. N. D. P. de Chile (Ed.), World pepper convention (pp. 300–307). Aguascalientes, México: SAGARPA.
  • Reid, S., & Armesto, J. J. (2011). Avian gut-passage effects on seed germination of shrubland species in mediterranean central chile. Plant Ecology, 210, 1–10. doi:10.1007/s11258-010-9796-8
  • Rodriguez-Uribe, L., Hernandez, L., Kilcrease, J. P., Walker, S., & O’Connell, M. A. (2014). Capsaicinoid and carotenoid composition and genetic diversity of Kas I and Ccs in New Mexican capsicum annuum L. Landraces. HortScience : A Publication of the American Society for Horticultural Science, 49(11), 1370–1375.
  • Ruttanaruangboworn, A., Chanprasert, W., Tobunluepop, P., & Onwimol, D. (2017). Effect of seed priming with different concentrations of potassium nitrate on the pattern of seed imbibition and germination of rice (Oryza sativa L.). Journal of Integrative Agriculture, 16(3), 605–613. doi:10.1016/S2095-3119(16)61441-7
  • Selim, S. M., Zayed, M. S., & Atta, H. M. (2012). Evaluation of phytotoxicity of compost during composting process. Nature and Science, 12(2), 69–77.
  • Siri, B., Vichitphan, K., Kaewnaree, P., Vichitphan, S., & Klanrit, P. (2013). Improvement of quality, membrane integrity and antioxidant systems in sweet pepper (Capsicum annuum Linn.) Seeds affected by osmopriming. Australian Journal of Crop Science, 7(13), 2068–2073.
  • Smith, P. T., & Cobb, B. G. (1991). Accelerated germination of pepper seed by priming with salt solutions and water. HortScience : A Publication of the American Society for Horticultural Science, 26(4), 417–419.
  • Tzortzakis, N. G. (2009). Effect of pre-sowing treatment on seed germination and seedling vigour in endive and chicory. Horti Science, 36(3), 117–125.
  • Wang-Kyun, R., Hee-Woong, K., Geun-Dong, K., & Hae-Ik, R. (2017). Rapid determination of capsaicinoids by colorimetric method. Journal of Food and Drug Analysis, 25(4), 798–803. doi:10.1016/J.JFDA.2016.11.007