Initial growth of clonal seedlings of Passiflora mucronata genotypes in response to paclobutrazol concentrations
DOI:
https://doi.org/10.33448/rsd-v9i12.10862Keywords:
Passifloraceae; Passion fruit; Wild species; Triazole.Abstract
Paclobutrazol (PBZ) is a plant growth regulator of the triazole group that can block the biosynthesis of gibberellic acid, resulting in reduced plant height and increased stem diameter. This study aimed to evaluate the effect of different paclobutrazol concentrations on seedling quality of Passiflora mucronata Lam. Two Passiflora mucronata genotypes were used, one resistant (G5) and one tolerant (G7) to fusariosis, prepared as cuttings treated with PBZ. The experimental design was completely randomized, in a 2 x 4 factorial arrangement corresponding to two genotypes (G5 and G7) and four PBZ concentrations (0, 5, 10, and 15 mg plant-1), with three replications of four plants. Data were subjected to analysis of variance, regression analysis, and the F-test, followed by Pearson’s correlation test between variables. PBZ promoted an increase in the plagiotropic shoot diameter and the leaf area index of genotypes G5 and G7, in addition to increased shoot length in genotype G5 and increased number of leaves in genotype G7. PBZ also resulted in increased photosynthesis and stomatal conductance. There was a positive correlation for genotype G5, between the plagiotropic shoot diameter and the leaf transpiration rate, and for genotype G7, between the plagiotropic shoot diameter and the number of leaves. Genotypes G5 and G7 showed different phenotypic responses when subjected to PBZ doses, highlighting the intraspecific divergence of the species.
References
Alexandre, R. S., Costa, P. R., Chagas, K., Mayrinck, L. G., Detoni, J. L., Schmildt, E. R. (2014) Enraizamento adventício de estacas do maracujazeiro silvestre Passiflora mucronata Lam.: forma de veiculação e concentrações do ácido indol-3-butírico. Revista Ceres, v. 61(1), 567-571.
Alexandre, R. S., Lopes, J. C., Tiradentes, A. T., Bruckner, C. H., Otoni, W. C. (2013) Metodologia de minienxertia em maracujazeiros. Revista Brasileira de Fruticultura, 35(1), 329-332.
Alvares, C. A., Stape, J. L., Sentelhas, P. C., Gonçalves, J. L. M., Sparovek, G. (2013) Köppen's climate classification map for Brazil. Meteorologische Zeitschrift, 22(1), 711-728.
Babu, M., Reddy, A. S., Basha, P. A., Naik, S. T. (2014) Transpiration and photosynthesis as affected by triazoles in mulberry (Morus alba L.). Indian Journal of Advances in Chemical Science, 2(4), 271-274.
Benett, K. S. S., Junior, M. J. D. A. F., Benett, C. G. S., Seleguini, A., Lemos, O. L. (2014) Utilização de paclobutrazol na produção de mudas de tomateiro. Comunicata Scientiae, 5(2), 164-169.
Bernardes, P. M., Nicoli, C., Alexandre, R., Guilhen, J., Fontes, M. P., Ferreira, A., Ferreira, M. (2020) Vegetative and reproductive performance of species of the genus Passiflora. Scientia Horticulturae, 256(1), 109193.
Braun, J. W. & Garth, J. K. L. (1986) Growth and fruiting of 'HeritGAe' primocane fruiting red raspberry in response to Paclobutrazol. HortScience, 21(1), 437-439.
Correia, A. O. (2019). Propagação e avaliação de passifloráceas submetidas a estresses bióticos e abióticos. Tese de Doutorado na produção vegetal. Espirito Santo: Alegre.
D’arêde, L. O., Matsumoto, S. N., Santos, J. L., Viana, A. E. S., Silva, P. A. R. (2017) Morfofisiologia do crescimento vegetativo inicial de cafeeiros arabica submetidos a aplicação via foliar de paclobutrazol. Coffee Science, 12(3), 451-462.
Do Brasil, F. (2020). em construção. 2017. Jardim Botânico do Rio de Janeiro.
Garbin, M. L., Corrijo, T. T., Sansevero, J. B. B., Sánchez-Tapia, A., Scarano, F. R. (2012) Subordinate, not dominant, woody species promote the diversity of climbingplants. Perspectives in Plant Ecology, Evolution and Systematics, 14(1), 257-265.
Faleiro, F. G. & Junqueira, N. T. V. (2016). Maracujá: o produtor pergunta, a Embrapa responde. Embrapa Cerrados-Livro técnico (INFOTECA-E).
Fletcher, R. A. & Hofstra, G. (1990) Improvement of uniconazole-induced protection in wheat seedlings. Journal of Plant Growth Regulation, 9(207), 1-4.
França, J. M., Venial, L. R., Costa, E. B., Schmildt, E. R., Schmildt, O., Bernardes, P. M., Tatagiba, S. D., Lopes, J. C., Ferreira, M. F. S., Alexandre, R. S. (2018) Morphophysiology, phenotypic and molecular diversity of auxin-induced Passiflora mucronata Lam. (Passifloraceae). Anais da Academia Brasileira de Ciências, 1(1), 1799-1814.
Furlaneto, F. P. B., Esperancini, M. S. T., Martins, A. N., Okamoto, F., Vidal, A. A., Bueno, O. C. (2014) Análise energética do novo sistema de produção de maracujá amarelo na região de Marília-SP. Ciência Rural, 44(2), 235-240.
Hartmann, H. T., Kester, D. E., Davies Jr, F. T., Geneve, R. L. (2011) Plant propagation: principles and practices. 8th ed. Boston: Prentice Hall.
Ibge - Instituto Brasileiro de Geografia e Estatística. (2019). Available: http://www.cnpmf.embrapa.br/Base_de_Dados/index_pdf/dados/brasil/maracuja/b1_maracuja.pdf.
Inmet - Instituto Nacional de Meteorologia, 2020. Available: https://portal.inmet.gov.br/ ?r=estacoes/estacoesAutomaticas.
Jaleel, C. A., Kishorekumar, A., Manivannan, P., Sankar, B., Gomathinayagam, M., Gopi, R., Panneerselvam, R. (2007) Alterations in carbohydrate metabolism and enhancement in tuber production in white yam (Dioscorea rotundata Poir.) under triadimefon and hexaconazole applications. Journal of Plant Growth Regulation, 53(1), 7-16.
Jiao, J., Tsujita, J. J., Murr, D. P. (1986) Effects of paclobutrazol and A-Rest on growth, flowering, leaf carbohydrate, and leaf senescence in 'Nellie White' Easter lily (Lilium longiflorum Thunb.). Scientia Horticulturae, 30(1-2), 135-141.
Junqueira, N. T. V., Braga, M. F., Faleiro, F. G., Peixoto, J. R., Bernacci, L. C. (2005) Potencial de espécies silvestres de maracujazeiro como fonte de resistência a doenças. In: Faleiro, F. G., Junqueira, N. T. V., Braga, M. F. Maracujá: germoplasma e melhoramento genético. Planaltina: Embrapa Cerrados, 81-106.
Lopes, C. M., Andrade, I., Pedroso, V., Martins, S. (2004) Modelos empíricos para estimativas da área foliar da videira na casta jaen. Ciência e Técnica Vitivinícola, v. 19(1), 61-75.
Mabvongwe, O., Manenji, B. T., Gwazane, M., Chandiposha, M. (2016) The effect of paclobutrazol application time and variety on growth, yield, and quality of potato (Solanum tuberosum L.). Advances in Agriculture, 2016(1), 1-5.
Magnago, L. F. S., Martins, S. V., Pereira, O. J. (2011) Heterogeneidade florística das fitocenoses de restingas nos estados do Rio de Janeiro e Espírito Santo. Revista Árvore, 35(1), 245-254.
Mohan, R., Vyas, D., Bhat, H. A., Kaur, T. D., Dhar, A. (2015) Exploring possibilities of induction of water stress tolerance in mulberry in rainfed condition by application of paclobutrazol. Journal of Global Biosciences, 4(9), 3301-3310.
Morgado, M. A. D., Bruckner, C. H., Rosado, L. D. S., Santos, C. E. M. (2015) Desenvolvimento de mudas de maracujazeiro-azedo enxertadas em espécies silvestres de Passiflora. Revista Brasileira de Fruticultura, 37(1), 471-479.
Moura, F. B., Vieira, M. R. D. S., Simoes, A. D. N., Silva, S. L., Medeiros, D. C., Paes, R. D. A., Júnior, W. S. (2017) Participation of cytokinin on gas exchange and antioxidant enzymes activities. Indian Journal of Plant Physiology, 22(1), 16-29.
Oliari, L., Giles, J., Mayrinck, L., Oliveira, J. P., Lopes, J., Otoni, W., Schmildt, E., Aoyama, E., Alexandre, R. S. (2016) Mini-grafting of adult Passiflora edulis Sims f. flavicarpa Deg. scions onto vegetatively propagated adult rootstocks of P. mucronata Lam. Australian Journal of Crop Science, 10(1), 490-496.
Oliveira, G. P. (2020). Uso do paclobutrazol na produção de manga. Research, Society and Development, 9(7), 1-16.
Pal, S., Zhao, J., Khan, A., Yadav, N. S., Batushansky, A., Barak, S., Rachmilevitch, S. (2016) O paclobutrazol induz tolerância no tomate ao déficit de irrigação através de efeitos diversificados na morfologia, fisiologia e metabolismo das plantas. Scientific Reports, 6(1), 39321.
Peng, D., Chen, X., Yin, Y., Lu, K., Yang, W., Tang, Y., Wang, Z. (2014) Lodging resistance of winter wheat (Triticum aestivum L.): Lignin accumulation and its related enzymes activities due to the application of paclobutrazol or gibberellin acid. Field Crops Research, 157(1), 1-7.
Rademacher, W. (2018) Chemical regulators of gibberellin status and their application in plant production. Annual Plant Reviews online, 49(1), 359-403.
Rademacher, W. (2000) Growth retardants: effects on gibberellin biosynthesis and other metabolic pathways. Annual Review of Plant Physiology and Molecular Biology, 51(1), 501-531.
Roseli, A. N. M., Ying, T. F., Ramlan, N. F. (2012) Morphological and physiological response to Syzygium myrtifolium Walp. to paclobutrazol. Sains Malays, v. 41(10), 1187-1192.
Sankhla, N., Davis, T. D., Jolley, V. D. (1986) Upadhyaya, A. Effect of Paclobutrazol on the development of iron chlorosis in soybeans. Journal of Plant Nutrition, 9(7), 923-934.
Santos, C. H. B., Cruz Neto, A. J., Junghans, T. G., Jesus, O. N., Girardi, E. A. (2016) Estádio de maturação de frutos e influência de ácido giberélico na emergência e crescimento de Passiflora spp. Revista Ciência Agronômica, v. 47(3), 481-490.
R Core Team. (2020) R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria.
Schmildt, E. R., Oliari, L. S., Alexandre, R. S., Silva, F. O. Dos R. Da., Schmildt, O. (2018) Histological aspects of mini-grafting of Passiflora edulis Sims. and Passiflora mucronata Lam. Revista Brasileira de Fruticultura, 40(2), 351-357.
Schmildt, E. R., Oliari, L. S., Schmildt, O., Alexandre, R. S., Pires, F. R. (2017) Determinação da área foliar de Passiflora mucronata a partir de dimensões lineares do limbo foliar. Revista Agro@mbiente On-line, 10(4), 351-357.
Silva, K. S. & Faria Junior, M. J. A. (2011) Uso de paclobutrazol como estratégia para redução do porte e da brotação lateral de plantas de tomateiro. Ciência e Agrotecnologia, v. 35(3), 539-546.
Siqueira, D. L. De, Cecon, P. R., Salomão, L. C. C. (2008) Desenvolvimento do limoeiro 'Volkameriano' (Citrus volkameriana Pasq.) submetido a doses de paclobutrazol e ácido giberélico. Revista Brasileira de Fruticultura, v. 30(3), 764-768.
Skowron, E., Trojak, M., Sobala, T. Molecular marker of delayed senescence in transgenic tobacco with enhanced cytokinin level. World Scientific News, 51(1), 13-25.
Srivastava, A. K., Pasala, R., Minhas, P. S., Suprasanna, P. (2016) Plant bioregulators for sustainable agriculture: integrating redox signaling as a possible unifying mechanism. Advances in Agronomy, 137(1), 237-278.
Téllez, H. O., Bomfim, G. V., Carvalho, A. C. P. P., Azevedo, B. M., Lozano, C. H. G. (2020). Paclobutrazol no desenvolvimento de mudas de plantas matrizes de abacaxizeiro ornamental. Research, Society and Development, 9(10), 1-16.
Tesfahun, W. & Menzir, A. (2018) Effect of rates and time of paclobutrazol application on growth, lodging, and yield and yield components of tef [Eragrostis tef (Zucc.) Trotter] in Adadistrict, East Shewa, Ethiopia. Journal of Biology, Agriculture and Healthcare, 8(3), 104-117.
Toledo Souza, E. D., Silveira, P. M., Café Filho, A. C., Lobo-Júnior, M. (2012) Fusarium wilt incidence and common bean yield according to the preceding crop and the soil tillage system. Pesquisa Agropecuária Brasileira, 47(1), 1031-1037.
Vu, J. C. V. & Yelenosky, G. (1992) Growth and photosynthesis of sweet orange plants treated with Paclobutrazol. Journal of Plant Growth Regulation, 11(1), 85-89.
Wang, C., Ruan, R., Yuan, X., Hu, D., Yang, H., Li, Y., Yi, Z. (2014) Relationship between lignin metabolism and lodging resistance of culm in buckwheat. Journal of Agricultural Science, 6(9), 29-36.
Zhang, M., Duan, L., Tian, X., He, Z., Li, J., Wang, B., Li, Z. (2007) Uniconazole-induced tolerance of soybean to water deficit stress in relation to changes in photosynthesis, hormones and antioxidant system. Journal of Plant Physiology, 164(6), 709-717.
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Copyright (c) 2020 Patrick Alves de Oliveira; Ariany das Graças Teixeira; Guilherme Bravim Canal; Paula Aparecida Muniz de Lima; Gardênia Rosa de Lisbôa Jacomino; Rodrigo Sobreira Alexandre; José Carlos Lopes
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