Growth promoter improves quality and permanence in the nursery of Acacia mangium Willd seedlings
Improvement of quality and permanence in Acacia nursery
DOI:
https://doi.org/10.29298/rmcf.v15i86.1468Keywords:
Aminoácidos, fertilización foliar, Acacia mangium Willd, tasas de crecimiento, viveros forestales, VIUSID agroAbstract
Increasing the quality of the plants in the nursery and reducing the time they remain there, as well as obtaining plants that are more resistant to transplanting, is the concern of foresters today. Therefore, the objective of the research was to evaluate the effect of foliar application of VIUSID agro® on the growth, quality and residence time in the nursery of A. mangium seedlings. For this, an experiment was set up in a completely randomized design with 4 weekly foliar treatments, VA1 (1.2 ml L-1), VA2 (1.5 ml L-1), VA3 (1.8 ml L-1) and VA0(0). Morphological variables, growth rates and seedling quality indices were evaluated. It was found that the foliar application of VIUSID agro® significantly improved the morphological characteristics of the crop, as well as growth rates. The quality indices benefited mainly from the VA1 dose (1.2 ml L-1). However, the Dickson quality index values were below the average quality with the treatments except with the minor variant at 120 das. The findings of this study suggest that VIUSID agro® plays an important role in reducing the permanence of acacia plants in the nursery when using the dose of 1.2 ml L-1 and influences morphological characteristics and growth rates.
Downloads
References
Álvarez T., A., J. E. Gutiérrez C., A. A. Meza C. y C. E. Murga T. 2022. Efecto de abonos foliares líquidos orgánicos en la calidad de plantones de cedro colorado (Cedrela odorata L.), en fase de vivero. Llamkasun 3(2):50-65. Doi: 10.47797/llamkasun.v3i2.106. DOI: https://doi.org/10.47797/llamkasun.v3i2.106
Barbosa J. C. and W. Maldonado J. 2015. Experimentação agronômica y agroestat – sistema para análises estatísticas de ensaios agronômicos. Jaboticabal, FCAV/UNESP. 396p. http://www.ipni.net/publication/ia-brasil.nsf/0/F76C84589C9A03A283257F85006BAE66/$FILE/Page20-153.pdf. (21 de diciembre de 2023).
Bustamante G., C. A., Y. Vázquez O. and Y. Ferras. 2023. Effects of different VIUSID Agro® concentrations on the growth of Coffea arabica L. seedlings. Agro Productividad 16(7):79–87. Doi: 10.32854/agrop.v16i7.2522. DOI: https://doi.org/10.32854/agrop.v16i7.2522
Correa J. C., I. René, L. Rojas. 2006. Estudio de potencia de pruebas de homogeneidad de varianza. Revista Colombiana de Estadística 29(1):57-76. https://www.redalyc.org/pdf/899/89929104.pdf. (21 de diciembre de 2023).
Díaz A., M., A. Carrillo G. y C. Suárez P. 2023. Efecto de bioproductos sobre el desarrollo de posturas de café en vivero. Revista Mexicana de Ciencias Agrícolas 14(4):495-505. Doi: 10.29312/remexca.v14i4.3303. DOI: https://doi.org/10.29312/remexca.v14i4.3303
EMBRAPA. 2018. Limpeza de Areia para Experimentos em Nutrição de Plantas. 232, 1–5.
Harrington J. T., J. G. Mexal and J. T. Fisher. 1994. Volume Displacement Provides a Quick and Accurate Way To Quantify New Root Production. Tree Planter's Notes 45(4):121-124. https://rngr.net/publications/tpn/45-4/volume-displacement-provides-a-quick-and-accurate-way-to-quantify-new-root-production. (21 de diciembre de 2023).
Hunt, R. 1990. Absolute growth rates. In: Basic Growth Analysis. Springer, Dordrecht. Doi: 10.1007/978-94-010-9117-6_2. DOI: https://doi.org/10.1007/978-94-010-9117-6_2
Kawade K., H. Tabeta, A. Ferjani and M. Y. Hirai. 2023. The Roles of Functional Amino Acids in Plant Growth and Development. Plant and Cell Physiology 64(12):1482–1493. Doi: 10.1093/pcp/pcad071. DOI: https://doi.org/10.1093/pcp/pcad071
Khurana E. and J. S. Singh. 2001. Ecology of seed and seedling growth for conservation and restoration of tropical dry forest: a review. Environmental Conservation 28(1):39-52. Doi: 10.1017/S0376892901000042 DOI: https://doi.org/10.1017/S0376892901000042
Mataffo A., P. Scognamiglio, A. Dente, D. Strollo, G. Colla, Y. Rouphael and B. Basile. 2020. Foliar application of an amino acid-enriched urea fertilizer on ‘greco’ grapevines at full veraison increases berry yeast-assimilable nitrogen content. Plants 9(5):1–12. Doi: 10.3390/plants9050619. DOI: https://doi.org/10.3390/plants9050619
Morris T. L., N. N. Barger and M.D. Cramer. 2020. Ecophysiological traits of invasive alien Acacia cyclops compared to co-occuring native species in Strandveld vegetation of the Cape Floristic Region. Austral Ecology 45(1):48-59. Doi: 10.1111/aec.12827. DOI: https://doi.org/10.1111/aec.12827
Mosa W. F. A., H. M. Ali and N. R. Abdelsalam. 2021. The utilization of tryptophan and glycine amino acids as safe alternatives to chemical fertilizers in apple orchards. Environmental Science and Pollution Research 28(2):1983–1991. Doi: 10.1007/s11356-020-10658-7. DOI: https://doi.org/10.1007/s11356-020-10658-7
Nirsatmanto A., S. Sunarti N., K. Kartikawati, A. I. Putri, T. Herawan, L. Haryjanto, R. Wahyuningtyas S., P. Santoso B., F. Lestari and A. Rimbawanto. 2022. Utilizing forest genetic resources in developing a new variety of Acacia hybrid (Acacia mangium × Acacia auriculiformis) to support the sustainable use of plants in Indonesia. IOP Conference Series: Earth and Environmental Science 1116(1):1-9. Doi: 10.1088/1755-1315/1116/1/012042. DOI: https://doi.org/10.1088/1755-1315/1116/1/012042
Oliveira I. R., B. Bordron, J. P. Laclau, R. R. Paula, A. V. Ferraz, J. L. M. Gonçalves, G. le Maire and J. P. Bouillet. 2021. Nutrient deficiency enhances the rate of short-term belowground transfer of nitrogen from Acacia mangium to Eucalyptus trees in mixed-species plantations. Forest Ecology and Management 491:119192. Doi: 10.1016/j.foreco.2021.119192. DOI: https://doi.org/10.1016/j.foreco.2021.119192
Ozyhar T., G. Mughini and M. Marchi. 2019. Influence of biostimulant application in containerized Eucalyptus globulus Labill. seedlings after transplanting. Dendrobiology 82:17-23. Doi: 10.12657/denbio.082.003. DOI: https://doi.org/10.12657/denbio.082.003
Peña C., K., J. C. Rodríguez, D. Olivera V., A. Calero H., J. F. Meléndrez y R. García V. 2018a. Efecto de dosis de VIUSID Agro® en el comportamiento morfo-fisiológico y productivo del rábano (Raphanus sativus L.). Revista de la Facultad de Agronomía 35(2):293-317. https://produccioncientificaluz.org/index.php/agronomia/article/view/27278/27919. (22 de diciembre de 2023).
Peña K., C., D. Olivera V., E. Habermann, A. Calero H., P. Lupino G., R. De Mello Prado, L. F. Lata-Tenesaca, C. A. Martinez, G. E. Ajila C. and J. C. Rodríguez. 2022. Exogenous Application of Amino Acids Mitigates the Deleterious Effects of Salt Stress on Soybean Plants. Agronomy 12(9):2014. Doi: 10.3390/agronomy12092014. DOI: https://doi.org/10.3390/agronomy12092014
Peña K., J. C. Rodríguez, D. Olivera V., A. Calero H., R. Dorta, J. Meléndrez, Y. Fernando V. and B. Kukurtcu. 2018b. Effect of the Growth Promoter VIUSID agro on the Morphophysiological and Productive Performance of Tobacco Growth (Nicotiana tabacum L.). Journal of Agricultural Science and Technology B 8(3):157-167. Doi: 10.17265/2161-6264/2018.03.002. DOI: https://doi.org/10.17265/2161-6264/2018.03.002
Pérez L., Y. B., C. Ríos A. and I. Hernández D. 2019. Morphometric relationships in young plantations of Acacia mangium Willd in two regions of Villa Clara. Revista Centro Agrícola 46(3):30-38. http://cagricola.uclv.edu.cu/index.php/es/volumen-46-2019/no-3-jul-sep-2019/1162-relaciones-morfometricas-en-plantaciones-jovenes-de-acacia-mangium-willd-en-dos-regiones-de-villa-clara. (23 de mayo de 2023).
Pérez Y., R. Reyes and C. Ríos. 2017. Dasometric variables related to the productivity of Acacia mangium Willd. Revista Centro Agrícola 44(2):14-21. http://cagricola.uclv.edu.cu/index.php/en/volume-44-2017/issue-2 2017/920-dasometric-variables-related-to-the-productivity-of-acacia-mangium-willd. (21 de diciembre de 2023).
Posada-Pérez L., R. Barbón R., A. Capote P., A. Pérez P., Y. Padrón M., B. Kukurtcu, D. Dion D., G. Reyes and R. Gómez-Kosky. 2021. Effect of VIUSID-agro® on the conversion of somatic embryos of coffee (Coffea arabica L.) cv. Red Caturra rojo-884. African Journal of Biotechnology 20(6):229-236. Doi: 10.5897/ajb2021.17321. DOI: https://doi.org/10.5897/AJB2021.17321
Reid N. M., K. Wigley, A. Nusrath, S. J Smaill and L.G. Garrett. 2024. Using nitrogen-fixing plants to improve soil fertility and productivity of planted forests in New Zealand: a review. New Zealand Journal of Forestry Science, 54. Doi: 10.33494/nzjfs542024x329x DOI: https://doi.org/10.33494/nzjfs542024x329x
Rueda-Sánchez A., J. de D. Benavides-Solorio, J. T. Saenz-Reyez, H. J. Muñoz Flores J. A. Prieto-Ruiz and G. Orozco-Gutiérrez. 2018. Calidad De Planta Producida En Los Viveros Forestales De Nayarit. Revista Mexicana de Ciencias Forestales 5(22):58-73. Doi: 10.29298/rmcf.v5i22.350. DOI: https://doi.org/10.29298/rmcf.v5i22.350
Sabagh A. E. L., A. Hossain, M. S. Islam, C. Barutçular, D. Ratnasekera, N. Kumar, R. S. Meena, H. S. Gharib, H. Saneoka and J. A. T. da Silva. 2019. Sustainable soybean production and abiotic stress management in saline environments: A critical review. Australian Journal of Crop Science 13(2):228-236. Doi: 10.21475/ajcs.19.13.02.p1285. DOI: https://doi.org/10.21475/ajcs.19.13.02.p1285
Souri M. K. and M. Hatamian. 2019. Aminochelates in plant nutrition: a review. Journal of Plant Nutrition 42(1):67–78. Doi: 10.1080/01904167.2018.1549671. DOI: https://doi.org/10.1080/01904167.2018.1549671
Stephens, M. A. (1992). Introducción a Kolmogorov. 1933. Sobre la determinación empírica de una distribución. En: Kotz, S., Johnson, NL (eds) Avances en estadística. Serie Springer en Estadística. Springer, Nueva York, Nueva York. Doi: 10.1007/978-1-4612-4380-9. DOI: https://doi.org/10.1007/978-1-4612-4380-9

Published
How to Cite
Issue
Section
License
Copyright (c) 2024 Revista Mexicana de Ciencias Forestales

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
The authors who publish in Revista Mexicana de Ciencias Forestales accept the following conditions:
In accordance with copyright laws, Revista Mexicana de Ciencias Forestales recognizes and respects the authors’ moral right and ownership of property rights which will be transferred to the journal for dissemination in open access.
All the texts published by Revista Mexicana de Ciencias Forestales –with no exception– are distributed under a Creative Commons License Attribution-NonCommercial 4.0 International (CC BY-NC 4.0), which allows third parties to use the publication as long as the work’s authorship and its first publication in this journal are mentioned
The author(s) can enter into independent and additional contractual agreements for the nonexclusive distribution of the version of the article published in Revista Mexicana de Ciencias Forestales (for example, include it into an institutional repository or publish it in a book) as long as it is clearly and explicitly indicated that the work was published for the first time in Revista Mexicana de Ciencias Forestales.
For all the above, the authors shall send the form of Letter-transfer of Property Rights for the first publication duly filled in and signed by the author(s). This form must be sent as a PDF file to: ciencia.forestal2@inifap.gob.mx
This work is licensed under a Creative Commons Attribution-Noncommercial 4.0 International license.