Floresta e Ambiente
https://www.floram.org/article/doi/10.1590/2179-8087.009519
Floresta e Ambiente
Original Article Silviculture

Dendrometric Analysis of Early Development of Eucalyptus urophylla x Eucalyptus grandis with Gypsum use Under Subtropical Conditions

Carla Fernanda Ferreira; Marcos Vinicius Martins Bassaco; Milena Pereira; Volnei Pauletti; Stephen Arthur Prior; Antonio Carlos Vargas Motta

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Abstract

ABSTRACT: Gypsum can be used as a source for calcium (Ca) and sulphurum (S) for plants, as well as an acid, that is, a natural soil conditioner. Aiming to determine the influence of gypsum on the development of Eucalyptus urograndis in Brazil, an experiment was conducted at two locations in Paraná State. Experiments were conducted with rates of 0, 0.3, 0.6, 1.2, 2.4, 4.8 and 9.6 Mg ha-1 to verify the method of broadcast planting in a randomized block design with four repetitions. Diameter and height of plants were measured every six months and volume was determined after 36 months. There was a difference in Eucalyptus growth between the two areas, possibly related to differences in planting season and climate. Gypsum did not influence on the dendrometric growth of Eucalyptus trees. The lack of a response to gypsum, as a source of Ca, S and soil conditioner, was discussed based on soil type, Eucalyptus tolerance to soil acidity, and climatic conditions in the period evaluated.

Keywords

soil conditioner, Eucalyptus forest, dystrophic oxisol

References

Aita C, Giacomini SJ. Matéria orgânica do solo, nitrogênio e enxofre nos diversos sistemas de exploração agrícola. In: Yamada, T, Abdalla, SRS, Vitti, GC, editores. Nitrogênio e enxofre na agricultura brasileira. Piracicaba: IPNI Brasil; 2007.

Almeida JCR, Laclau JP, Goncalves JLD, Ranger J, Saintandre L. A positive growth response to NaCl applications in Eucalyptus plantations established on K-deficient soils. Forest Ecology and Management 2010; 259(9): 1786-1795. http://dx.doi.org/10.1016/j.foreco.2009.08.032.

Alvares CA, Stape JL, Sentelhas PC, Gonçalvez JLM, Sparovek G. Köppen’s climate classification map for Brazil. Meteorologische Zeitschrift 2013; 22(6): 711-728. http://dx.doi.org/10.1127/0941-2948/2013/0507.

Amaral LA, Ascari JP, Duarte WM, Mendes IRN, Santos ES, Julio OLL. Effect of gypsum rates in corn and chemical changes in the soil. Agrarian 2017; 10(35): 31-41. http://dx.doi.org/10.30612/agrarian.v10i35.4139.

Araújo LC, Figueiredo CC, Souza DMG, Nunes RS, Rein TA. Influence of gypsum application on sugarcane yield and soil chemical properties in the Brazilian Cerrado. Australian Journal of Crop Science 2016; 10(11): 1557-1563. http://dx.doi.org/10.21475/ajcs.2016.10.11.PNE156.

Bassaco MVM, Motta ACV, Pauletti V, Prior SA, Nisgoski S, Ferreira CF. Nitrogen, phosphorus, and potassium requirements for Eucalyptus urograndis plantations in southern Brazil. New Forests 2018; 49(5): 681-697. http://dx.doi.org/10.1007/s11056-018-9658-0.

Benatti BP. Compartimentalização de biomassa e de nutrientes em estruturas de plantas de eucalipto cultivadas em solos distintos [dissertação]. Lavras: Universidade Federal de Lavras; 2013.

Bizon JMC. Avaliação da sustentabilidade nutricional de plantios de Pinus taeda L. usando um balanço de entrada e saída de nutrientes [dissertação]. Piracicaba: Escola Superior de Agricultura Luiz de Queiroz; 2005.

Carducci CE, Oliveira GC, Oliveira LM, Barbosa SM, Silva EA. Retenção de água do solo sob sistema conservacionista de manejo com diferentes doses de gesso. Revista de Ciências Agrárias 2015; 58(3): 284-291. http://dx.doi.org/10.4322/rca.2014.

Christo SSM, Santos OS. Efeitos do gesso e do boro na produção de mudas de Eucalyptus citriodora Hook. Revista Centro de Ciências Rurais 1990; 20: 173-184.

Costa CHM, Crusciol CAC. Long-term effects of lime and phosphogypsum application on tropical no-till soybean-oat-sorghum rotation and soil chemical properties. European Journal of Agronomy 2016; 74: 119-132. http://dx.doi.org/10.1016/j.eja.2015.12.001.

Echart CL, Molina SC. Aluminum phytotoxicity: effects, tolerance mechanisms and its genetic control. Ciência Rural 2001; 31(3): 531-541. http://dx.doi.org/10.1590/S0103-84782001000300030.

Ernani PR, Ribeiro MS, Bayer C. Chemical modifications in acid soils caused by addition of gypsum or limestone. Scientia Agrícola 2001; 58: 825-831. http://dx.doi.org/10.1590/S0103-90162001000400026.

Freitas CA, Silva CJ, Silva CA, Almeida JÁ, Rincon NS. Addition of agricultural plaster and wood ash to substrate in baruzeiro (Dipteryx alata Vog) seedlings developing. Revista Verde de Agroecologia e Desenvolvimento Sustentável 2015; 10(2): 206-212. http://dx.doi.org/10.18378/rvads.v10i2.2915.

Freitas TAS, Barroso DG, Souza LS, Carneiro JGA. Effect of the roots pruning in the growth of the eucalyptus seedlings. Ciência Florestal 2009; 19(1): 1-6.

Gabriel CA, Cassol PC, Simonete MA, Moro L, Pfleger P, Mumbach GL. Lime and gypsum applications on soil chemical attributes and initial growth of Eucalyptus. Floresta 2018; 48(4): 573-582. http://dx.doi.org/10.5380/rf.v48i4.57455.

Gazola RN, Buzetti S, Teixeira Filho MCM, Dinalli RP, Moraes MLT, Celestrino TS et al. Doses de N, P and K in the cultivation of eucalyptus in soil originally under Cerrado vegetation. Semina 2015; 1: 1895-1912.

Gelain E, Rosa EJ Jr, Mercante FM, Fortes DG, Souza FR, Rosa YBCJ. Biological nitrogen fixation and leaf nutrient concentration on soybean as a function of molybdenum and gypsum levels. Ciências Agrotecnicas 2011; 35(2): 259-269. http://dx.doi.org/10.1590/S1413-70542011000200005.

Hartwig I, Oliveira AC, Carvalho FIF, Bertan I, Silva JAG, Schmidt DAM et al. Associated mechanisms of aluminum tolerance in plants. Semina 2007; 28(2): 219-228.

Industria Brasileira de Árvores – IBÁ. Relatório indústria brasileira de árvores. Brasília, DF; 2016.

Jackson TJ, Burgess T, Colquhoun I, Hardy G. Action of the fungicide phosphite on Eucalyptus marginata inoculated with Phytophthora cinnamoni. Plant Pathology 2000; 49(1): 147-154. http://dx.doi.org/10.1046/j.1365-3059.2000.00422.x.

Macana YAM. Nutrição e crescimento do eucalipto em resposta a diferentes fontes e métodos de aplicação de cálcio [tese]. Piracicaba: Escola Superior de Agricultura Luiz de Queiroz; 2017.

Marques H, Ferreira CS, Almeida GRR, Cunha LT. Efeito da aplicação de diferentes doses de gesso agrícola em lavouras cafeeiras cultivadas no município de Paraguaçu – MG. Capa 2016; 4(4): 1-14.

Moda LR, Borges BMMN, Flores RA, Santos CLR, Prado RM, Souza JI. Gypsum application in the soybeans no-tillage system with and without potassium fertilization. Revista Agroambiente Online 2013; 7(2): 129-135.

Nascimento R, Souza JA, Moreira A, Moraes LAC. Phosphogypsum and vinasse application: soil chemical properties and alfalfa productivity and nutritional characteristics. Revista Caatinga 2017; 30(1): 213-219. http://dx.doi.org/10.1590/1983-21252017v30n123rc.

Nietfeld H, Prenzel J. Modeling the reactive ion dynamics in the rhizosphere of tree roots growing in acid soils. I. Rhizospheric distribution patterns and root uptake of Mb cations as affected by root-induced pH and Al dynamics. Ecological Modelling 2015; 307: 48-65. http://dx.doi.org/10.1016/j.ecolmodel.2015.02.011.

Oliva MA, Barros NF, Souza Gomes MM, Lopes NF. Seca de ponteiros em Eucalyptus camaldulensis Dehn em relação a estresse hídrico e nutrição mineral. Revista Árvore 1989; 13(1): 19-33.

Pauletti V, Pierri L, Ranzan T, Barth G, Motta ACV. Long-term effects of the application of gypsum and lime in a no-till system. Revista Brasileira de Ciência do Solo 2014; 38: 495-505. http://dx.doi.org/10.1590/S0100-06832014000200014.

Pinheiro RC, Deus JRJC, Nouvellon Y, Campoe OC, Stape JL, Aló LL et al. A fast exploration of very deep soil layers by Eucalyptus seedling and clones in Brazil. Forest Ecology and Management 2016; 366: 143-152. http://dx.doi.org/10.1016/j.foreco.2016.02.012.

Rentería-Villalobos M, Vioque I, Mantero J, Manjón G. Radiological, chemical and morphological characterizations of phosphate rock and phosphogypsum from phosphoric acid factories in SW Spain. Journal of Hazardous Materials 2010; 81(1-3): 193-200. http://dx.doi.org/10.1016/j.jhazmat.2010.04.116. PMid:20537794.

Rocha JBO, Pozza AAA, Carvalho JG, Silva CA, Curi N. Effect of liming on the mineral nutrition and initial growth of eucalyptus under field conditions planted in humic Latosol (Oxisol) from Zona da Mata, Minas Gerais State, Brazil. Scientia Florestalis 2008; 36(80): 255-263.

Rocha JHT, Gonçalves JLM, Godinho TO, Souza Filho LFSS. Nutrition and fertilization with sulfur and gypsum application in eucalypt stands. Circular Técnica IPEF 2015; 208:1-14.

Rodrigues FAV, Alvarez VH, Barros NF, Silva IR, Neves JCL. Productivity of eucalypt at 18 months of age, in Cerrado region, in response to application to application of calcium, by lime and to gypsum amendments. Scientia Forestalis 2016; 109: 67-74.

Scanavaca L Jr, Garcia JN. Potencial de melhoramento genético em Eucalyptus urophylla procedente da Ilha Flores. Scientia Forestalis 2003; 64: 23-32.

Sousa DMG, Miranda LG, Oliveira SA. Acidez do solo e sua correção. In: Novais RF, Alvarez VVH, Barros NF, Fontes RLF, Cantarutti RB, Neves JC, editor. Fertilidade do solo. Viçosa: SBCS; 2007.

Stape JL, Binkley D, Ryan MG, Fonseca S, Loos RA, Takahashi EN et al. The Brazil Eucalyptus potential productivity project: influence of water, nutrients and stand uniformity on wood production. Forest Ecology and Management 2010; 259(9): 1684-1694. http://dx.doi.org/10.1016/j.foreco.2010.01.012.

Viera M, Schumacher MV. Contents and input of nutrients in Pinus taeda L. litter related to air temperature and rainfall. Revista Árvore 2010; 34(1): 85-94. http://dx.doi.org/10.1590/S0100-67622010000100010.

Vitti GC, Zavaschi E, Moura TA, Gomes MHF. Estudos confirmam os efeitos favoráveis do gesso agrícola na cultura do milho. Visão Agrícola 2015; 13: 49-51.

Wulff-Zottele C, Hesse H, Fisahn J, Bromke M, Vera-Villalobos H, Li Y et al. Sulphate fertilization ameliorates long-term aluminum toxicity symptoms in perennial ryegrass (Lolium perenne). Plant Physiology and Biochemistry 2014; 83: 88-99. http://dx.doi.org/10.1016/j.plaphy.2014.07.017. PMid:25123423.

Zandoná RR, Butler AN, Burg GM, Barreto CF, Schimidt MR. Gypsum and lime increase soybean and maize yield and decrease drought stress. Pesquisa Agropecuária Tropical 2015; 45: 128-137.
 

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