Nutritional deficiencies in italian pumpkin: characterization of symptoms, growth and mineral composition

Authors

DOI:

https://doi.org/10.33448/rsd-v9i7.3916

Keywords:

Cucurbita pepo L.; Cucurbitáceas; Mineral plant nutrition; Nutritive solution.

Abstract

Objective: to characterize the visual symptoms of simple and multiple deficiencies in Italian squash, growth parameters, and the mineral composition of the leaves grown in the nutrient solution. Material and Methods: The experiment was carried out in a greenhouse at the Department of Soil Science at UFLA, Lavras, MG. The statistical design used was the DIC with eleven treatments and three replications, in a nutrient solution based on the Hoagland & Arnon solution. The treatments were: complete nutrient solution (control), nutrient solutions with the individual omission of K, Ca, Mg, B, Mn, and Zn and multiple omissions of BZn, CaB, MnMg, and KZn. The plants were selected according to the size uniformity of the aerial part and roots and then, individualized in plastic pots with a capacity of eight liters, thus constituting each pot as an experimental plot. After the manifestation of visual deficiency symptoms, the treatment plants were harvested and the dry matter was subsequently collected and chemical analysis of the plants was performed. Results: The vestments analyzed for multiple nutritional deficiencies in Italian pumpkin have statistical differences between them. Conclusion: Multiple omissions CaB, BZn, and MgMn in nutrient solution result in morphological changes, translated into characteristic symptoms of deficiency. Deficiency symptoms were initially characteristic of each nutrient (with the exception of Zn and Mn), with the absence of nutrients in the solution, regardless of whether they are isolated or associated with another. Simple and multiple omissions affect the parameters of growth, dry matter production, levels, and nutritional accumulations of Italian pumpkin cv. Caserta.

References

Almeida, TBF de et al. (2011). Avaliação nutricional da alface cultivada em soluções nutritivas suprimidas de macronutrientes. Biotemas, Florianópolis, 24(2): 27-36, abr. 2011. http://dx.doi.org/ 10.5007/2175-7925.2011v24n2p27

Coelho, VAT et al. (2020). Caracterização de sintomas e crescimento em Abobrinha Italiana (Cucurbita pepo L.) sob carência de micronutrientes. Research, Society and Development, 9(3), e34932359, 2020(CC BY 4.0). ISSN 2525-3409. http://dx.doi.org/10.33448/rsd-v9i3.23591

Coelho, VAT et al. (2020). Deficiências de macronutrientes em Abobrinha Italiana (Cucurbita pepo L.): caracterização de sintomas e crescimento. Research, Society and Development, 9(3): e08932269, 2020 (CC BY 4.0). ISSN 2525-3409. http://dx.doi.org/10.33448/rsd-v9i3.2269

Fernandes, LA et al. (2005). Nutrição mineral de plantas de maxixe-do-reino. Pesq. agropec. bras., Brasília, 40(7): 719-722, July.

Ferreira, DF. (2011). Sisvar: A computer statistical analysis system. Ciência e Agrotecnologia, Lavras, 35(6): 1039-1042, nov./dez. https://doi.org/10.1590/S1413-70542011000600001

Fontes PCR. (2014). Nutrição mineral de hortaliças: horizontes e desafios para um agrônomo. Horticultura Brasileira, 32(1): 247-253. https://doi.org/10.1590/S0102-05362014000300002

Hoagland, DR & Arnon, DL. (1950). The water culture methods for growing plants without soil. California Agriculture Experiment Station, 1950. 32 p. (Bulletin, 347).

Kabata-Pendias, A. (2011). Trace Elements in Soils and Plants, fourth ed. CRC Press, Boca Raton, USA. 505p.

Lorenzi, H & Melo Filho, LE. (2001). As plantas tropicais de R. Burble Marx. São Paulo: Instituto Plantarum de Estudos da Flora. 488p.

Malavolta, E. (2006). Manual de nutrição mineral de plantas. São Paulo: Editora Agronômica Ceres. 638p.

Malavolta, E, Vitti, GC, Oliveira, SA. (1997). Avaliação do estado nutricional das Plantas: princípios e aplicações. Piracicaba: Potafos. 319p.

Marschner, H. (2012). Mineral nutrition of higher plants. 3.ed London: Elsevier. 643p.

Moschini, BP et al.(2017). Crescimento e diagnose de deficiências nutricionais em Physalis peruviana L. Revista Agropecuária Técnica, Areia-PB, 38(4): 169-176. https://doi.org/ 10.25066/agrotec.v38i4.30990.

Pereira, AS, Shitsuka, DM, Parreira, FJ & Shitsuka, R. (2018). Metodologia da pesquisa científica. [e-book]. Santa Maria. Ed. UAB/NTE/UFSM. Disponível em: https://repositorio.ufsm.br/bitstream/handle/1/15824/Lic_Computacao_Metodologia-Pesquisa-Cientifica.pdf?sequence=1.

Souza, GA et al. Omissão simples de B e múltiplas com Ca, Fe, Mn e Zn em mamoneira (Ricinus communis). Agrarian, Dourados, 8(29): 287-295.

Souza, MF et al. (2002). Tamanho da amostra para peso da massa de frutos, na cultura da abóbora italiana em estufa plástica. R. Bras. Agrociência, 8(2): 123-128, mai-ago.

Veigas, IJM et al. (2013).Composição mineral e sintomas visuais de deficiências de nutrientes em plantas de pimenta-longa (Piper hispidinervum C. DC.). Acta Amaz., Manaus, 43(1): 43-50, Mar. 2013. https://doi.org/10.1590/S0044-59672013000100006

Vidigal, SM et al. (2009). Crescimento e acúmulo de macro e micronutrientes pela melancia em solo arenoso. Revista Ceres, Lavras, 56(1): 112-18.

Published

19/05/2020

How to Cite

COELHO, V. A. T.; SOUZA, C. G. de; NASCIMENTO, E. de S.; LACERDA, L. G.; CARDOSO, P. A. Nutritional deficiencies in italian pumpkin: characterization of symptoms, growth and mineral composition. Research, Society and Development, [S. l.], v. 9, n. 7, p. e396973916, 2020. DOI: 10.33448/rsd-v9i7.3916. Disponível em: https://www.rsdjournal.org/index.php/rsd/article/view/3916. Acesso em: 19 apr. 2024.

Issue

Section

Agrarian and Biological Sciences