Nutritional diagnosis of soursop according to the Kenworthy balance index and deviation from optimum percentage, Nayarit, Mexico
DOI:
https://doi.org/10.17268/agroind.sci.2024.01.02Palabras clave:
Annona muricata, foliar analysis, macronutrients, micronutrients, nutritional requirementResumen
Soursop is a tropical fruit of economic importance in Mexico, however, there is scarce research on its nutrition. The aim of this study was to evaluate the foliar nutrient concentration in the vegetative state and to compare the nutritional diagnosis between the Kenworthy Balance Index (KBI) and Deviation from Optimum Percentage (DOP) in the soursop crop. The foliar concentration of N, P, K, Ca, Mg, Mn and B presented lower values than the reference standard. It was found concordance between KBI and DOP indices for the diagnosis in 91% of the orchards; the nutrients N, P, K, Ca, Mn and B were deficient in all orchards and excessive Cu (in 33% of the orchards), Fe and Zn (in 8% of the orchards respectively). However, the diagnosis of Mg, Fe, Cu and Zn in some orchards was contradictory due their adequate ranges with the KBI and deficient with the DOP. In general, with the two indices 25% of the orchards coincide with the decreasing order of the nutrients P<K<Ca<N<Mg<Mn<B<Zn<Fe<Cu. Although there were some similarities and differences in the nutritional diagnosis among KBI and DOP, the specific nutritional needs of each soursop orchard must be supply.
Citas
Achat, D. L., Pousse, N., Nicolas, M., & Augusto, L. (2018). Nutrient remobilization in tree foliage as affected by soil nutrients and leaf life span. Ecological Monographs, 88, 408-428. https://doi.org/10.1002 /ecm.1300
Alcántar-Gónzalez, G., & Sandoval-Villa, M. (1999). Manual de análisis químico de tejido vegetal. Sociedad Mexicana de la Ciencia del Suelo. A.C. Chapingo, Estado de México, México.156 p.
Aluko, O.O., Li, C., Wang, Q., & Liu, H. (2021). Sucrose utilization for improved crop yields: a review article. International Journal of Molecular Sciences, 22(9), 4704. https://doi.org/10.3390/ijms22094704
Andrade, L. R. M. (2004). Corretivos e fertilizantes para culturas perenes e semiperenes. In: Cerrado: correção do solo e adubação. Sousa, D.M.G., & Lobato, E. (eds.). Embrapa Informação Tecnológica. Planaltina, Brasil. pp. 317-366.
Ajili-Lahiji, A. (2021). Study of nutritional status of hazelnut orchards of (Corylus avellana L.) Guilan Province by using with Deviation of Optimum Percentage (DOP). Journal of Horticultural Science, 35(49), 73-8. https://doi.org/10.22067/JHS.2021.61863.0
Arévalo-Hernández, C. O., Pinto, F. C., Souza-Júnior, J. O., Paiva, A. Q., & Baligar, V. C. (2019). Variability and correlation of physical attributes of soils cultivated with cacao trees in two climate zones in Southern Bahia, Brazil. Agroforestry Systems, 93, 793-802. https://doi.org/10.1007/s 10457-017-0176-4
Avilán, L. (1975). Efecto de la omisión de los macronutrientes en el desarrollo y composición química de la guanábana (Annona muricata L.) cultivada en soluciones nutritivas. Agronomía Tropical, 25(1), 73-79.
Bahia, B. L., Souza-Júnior, J. O., Fernandes, L. V., & Neves, J. C. L. (2021). Reference values and diagnostic ranges to assess the degree of nutritional balance for cacao plants. Spanish Journal of Agricultural Research, 19(1), e0801. https://doi.org/10.5424/sjar/2021191-17478
Campos-Mariscal, J. L., Álvarez Sánchez, M. E., Maldonado-Torres, R., & Almaguer-Vargas, G. (2020). Application of organic fertilizers in yield and root development in avocado cultivation. Revista Mexicana de Ciencias Agrícolas, 11(2), 263-274. https://doi.org/10.29312/remexca.v11i2.2301
CONAGUA. Comisión Nacional del Agua. (2023). Resúmenes mensuales de temperaturas y lluvia. Comisión Nacional del Agua. México.
De Bang, T. C., Husted, S., Laursen, K. H., Persson, D. P., & Schjoerring, J. K. (2021). The molecular-physiological functions of mineral macronutrients and their consequences for deficiency symptoms in plants. New Phytologist, 229(5), 2446-2469. https://doi.org/10.111 /nph.17074
Fernandes-Batista, M. M., Matos-Viégas, I. J., Capucho-Frazão, D. A., Alves-Thomaz, M. A., & Lemos da Silva, R. E. (2003). Efeito da omissão de macronutrientes no crescimento, nos sintomas de deficiências nutricionais e na composição mineral em gravioleiras (Annona muricata). Revista Brasileira de Fruticultura, 25(2), 315-318. http://dx.doi.org/10.1590/S0100-29452003000200033
Garza-Lau, R., Maldonado-Torres, R., Álvarez-Sánchez, M., & Torres-Rivera, J. (2020). Caracterización de especies arbóreas asociadas al cultivo de café. Revista Mexicana de Ciencias Agrícolas, 11(1), 25-32. https://doi.org/10.29312/remexca.v11i1.2210
Gazel-Filho, A.B., De Carvalho, A.C., & De Menezes, A.J. (1994). Teores de macronutrientes em folhas de gravioleiras. Revista Brasileira de Fruticultura, 16(2), 121-124.
Gentile, R. M., Boldingh, H. L., Campbell, R. E., Gee, M., Gould, N., Lo, P., McNally, S., Park, K., Richardson, A. C., Stringer, L.D., Vereijssen, J., & Walter, M. (2022). System nutrient dynamics in orchards: a research roadmap for nutrient management in apple and kiwifruit. A review. Agronomy for Sustainable Development, 42(64), 1-18. https://doi.org/10.1007/s13593-022-00798-0
Hajiboland, R. (2011). Effect of micronutrient deficiencies on plants stress responses. In: Abiotic stress responses in plants: metabolism, productivity and sustainability. Ahmad, P., & Prasad, M. (eds.). Springer. New York, United States. pp. 283-329.
Kenworthy, A. L. (1961). Interpreting the balance of nutrient elements in leaves of fruit trees. In: Plant analysis and fertilizer problems. Reuther. W. (ed.). American Institute of Biological Sciences. Washington, Estados Unidos. pp. 28-43.
Kalaivanan, D., & Ganeshamurthy, A. N. (2016). Mechanisms of heavy metal toxicity in plants. In: Abiotic stress physiology of horticultural crops. Rao, N.; Shivashankara, K., & Laxman, R. (eds.). Springer, New Delhi. pp. 85-102. https://doi.org/10.1007/978-81-322-2725-0_5
Maldonado-Torres, R., Álvarez-Sánchez, M. E., Almaguer-Vargas, G., Barrientos-Priego, A. F., & García-Mateos, R. (2007). Estándares nutrimentales para aguacatero Hass. Revista Chapingo Serie Horticultura, 13(1), 103-108. https://doi.org/10.5154/r.rchsh.2006.11.051
Marques, L. F., Souto, J. S., Ferreira-Cavalcante, L. F., Mesquita, E. F., & Medeiros do Nascimento, J. A. (2018). Composição mineral e redistribuição de nutrientes em gravioleira. Pesquisa Agropecuária Pernambucana Recife, 23(1), 1-5. http://dx.doi.org/10.12661/pap.2018.006
Martínez-Mera, E. A., García-Paredes, J. D., Can-Chulim, A., Martínez-Rodríguez, O. G., Luna-Esquivel, G., Cruz-Crespo, E., & Balois-Morales, R. (2023). Caracterización nutrimental edáfica y foliar de huertos con producción de guanábana en Nayarit, México. Acta Agrícola y Pecuaria, 9, E0091003. https://doi.org/10.30973/aap/2023.9.0091003
Miranda-Lasprilla, D., Barragán-Quijano, E., Barreto-Osorio, D., & Caicedo, A. (1996). Requerimientos nutricionales en el cultivo de guanábana. In: Manejo integrado del cultivo de guanábana. Norato-Forero, T. (ed.). Corpoica. Bogotá, Colombia. pp. 65-126.
Montañés, L., Heras, L., Abadía, J., & Sanz, M. (1991). Plant analysis interpretation based on a new index: Deviation from optimum percentage (DOP). Journal of Plant Nutrition, 16, 1289-1308.
Nava, A. D., Gónzalez-Hernández, V. A., Sánchez-García, P., Peña-Valdivia, C. B., & Livera-Muñoz, M. (2006). Dinámica y diagnóstico nutrimental del guayabo en Iguala, Guerrero, México. Terra, 24, 125-132.
Paull, R. E., & Duarte, O. (2012). Annonas: soursop and rollinia. Tropical fruits. Crop Production Science in Horticulture. CABI International. Second edition. pp. 1-24. https://doi.org/10.1079/9781845937 898.0001
Puentes-Páramo, Y. J., Menjivar-Flores, J. C., & Aranzazu-Hernández, F. (2016). Concentración de nutrientes en hojas, una herramienta para el diagnóstico nutricional en cacao. Agronomía Mesoamericana, 27(2), 329-336. https://doi.org/10.15517/am.v27i2.19728
Rodríguez-Polanco, E., Gutiérrez- Díaz, J.S., & Orduz-Rodríguez, J.O. (2018). Diagnostico nutricional del cultivo de la lima ácida Tahití [Citrus latifolia (Yu Tanaka) Tanaka] en el departamento del Tolima (Colombia). Temas Agrarios, 23(2), v144-153. http://dx.doi.org/10.21897/rta.v23i2.1298
SIAP. Servicio de Información Agroalimentaria y Pesquera. (2023). Anuario estadístico de la producción agrícola del 2019. https://nube.siap.gob.mx/cierreagricola/
Silva de Lima, R. L., Barbosa-Ferreira, G., Baller-Weber, O., & Osvaldo-Cazetta, J. (2007). Diagnose foliar da gravioleira (Annona muricata L.): efeito da posição de ramos e folhas. Ciência e Agrotecnologia, 31(5), 1320-1325.
Sotelo-Nava, H., Hernández-Castro, E., Villegas-Torres, O. G., Nava, A. D., Sabino-López, J. E., Chino-Cantor, A., Cruz-Lagunas, B., & Álvarez- Vargas, D. (2017). Nutritional diagnosis of "Hass" avocado (Persea americana Mill.) soil fertility and water quality, in Tepoztlán, Morelos. International Journal of Environmental and Agriculture Research, 3(1), 152-159.
Souza da Fonseca, A., De Souza-Lima, J. S., & De Assis-Silva, S. (2018). Spacial variability of Balanced Indexes of Kenworthy (BIK) for macro and micronutrients on the Coffee Canephora. Journal of Experimental Agriculture International, 23(1), 1-10. https://doi.org/10.9734/JEAI/2018 /41211
Tiwari, S., Patel, A., Pandey, N., Raju, A., Singh, M., & Prasad, S.M. (2020). Deficiency of essential elements in crop plants. In: Sustainable solutions for elemental deficiency and excess in crop plants. Mishra, K., Tandon, P.K., & Srivastava, S. (eds.). Springer, Singapore. 19-52. https://doi.org/10.1007/978-981-15-8636-1_2
Vasconcelos-Botelho, R., & Lopes-Müller, M. M. (2020). Nutrient redistribution in fruit crops: Physiological implications. In: Fruit crops: diagnosis and management of nutrient constraints. Srivastava, A. K., & Chengxiao, H. (eds.). pp. 33-46. https://doi.org/10.1016/B978-0-12-818732-6.00003-4
Vidal-Hernández, L., Sánchez-Viveros, G., Vidal-Martínez, A.V., Castillo-Rocha, D. G., & Chiquito-Contreras, R. G. (2014). Análisis de suelo y foliar en guanábano (Annona muricata L.) en Blanca Espuma municipio de Alto Lucero, Veracruz. Revista Brasileira de Fruticultura, 36, 150-159. https://doi.org/10.1590/S0100-29452014000500019
Yamarte-Chirinos, M., Marín-Real, M., & Rendiles-Ollarves, E. (2009). Contenido foliar de algunos macronutrimentos en guanábana (Annona muricata L.). Revista UDO Agrícola, 9(2), 343-346.
Yacomelo-Hernández, M., Ramírez-Gómez, M.M., Perez, U., Arcila, A., Carrascal-Pérez, F., & Florez-Cordero, E. (2021). Análisis nutricional y niveles de extracción del mango azúcar en el departamento del Magdalena, Colombia. Bioagro, 33, 79-90. https://doi.org/10.51372/bioagro332.2.346
Zhou, Q., & Melgar, J. C. (2020). Tree age influences nutrient partitioning among annually removed aboveground organs of peach. HortScience, 55(4), 560-564. https://doi.org/10.21273/HORTSCI14731-19
Descargas
Publicado
Cómo citar
Número
Sección
Licencia
Derechos de autor 2024 Juan Diego García-Paredes, Eliana Andrea Martínez-Mera, Álvaro Can-Chulim, Gregorio Luna-Esquivel, Elia Cruz-Crespo, Rosendo Balois-Morales
Esta obra está bajo una licencia internacional Creative Commons Atribución-NoComercial 4.0.
Los autores conservan sus derechos de autor sin restricciones.