Soil health of an Albaquults under integrated crop-livestock-forest system throug multivariate analysis
DOI:
https://doi.org/10.33448/rsd-v9i11.9835Keywords:
ACP; Physical properties; Soil quality; Correlation.Abstract
The objective of this work was to evaluate the health of a soil under an integrated crop-livestock-forest system through multivariate analysis of the physical, chemical and physical-hydric attributes of the soil. The experiment was carried out in a Albaquults with a sandy texture in the municipality of Alagoinha, PB, under the following consortia in a randomized block design: i) Br. Decumbens + Gliricidia sepium (BG); ii) Br. decumbens + Mimosa caesalpiniifolia (BS); iii) Br. decumbens + Tabebuia alba (BI); iv) Br. decumbens + Zea mays (LA); v) Brachiaria decumbens (BD). Samples (deformed and undeformed) of soil were collected to evaluate physical, physical-hydric and chemical properties of the soil in the layers of 0.0-0.1, 0.1-0.2 and 0.2-0.3 m. The averages were analysed using principal component analysis and Pearson's correlation (P<0.05). The results indicated that LA managed to group the largest number of properties related to the structural quality of the soil. The soil density showed positive and negative correlations with most of the analysed physical variables. Regarding the chemical properties, a greater clustering was detected in the LA and BG systems in the 0-0.1 cm layer. We conclude that multivariate analysis is a viable option for assessing soil health, since its groups as many properties as possible within the most prevalent management system.
References
Agência Executiva de Gestão das Águas do Estado da Paraíba. (2020). AESA. Meteorologia do estado da Paraíba: chuvas. Recuperado de http://www.aesa.pb.gov.br/aesa-website/meteorologia-chuvas.
Andrade, R. S., Stone, L. F., & Godoy, S. G. (2013). Estimativa da resistência do solo à penetração baseada no índice S e no estresse efetivo. Revista Brasileira de Engenharia Agrícola e Ambiental, 17(9), 932-937. https://doi.org/10.1590/S1415-43662013000900004
Arcoverde, S. N. S., Souza, C. M. A., Santos, W. R., Nagahama, H. J., Suárez, A. H. T., & Maciak, P. A. G. (2019). Atributos físicos de Latossolo Vermelho distroférrico cultivado com cana-de-açúcar em função do preparo e local de amostragem. Cultura Agronômica, 28(4), 478-492.
Assis, P. C. R., Stone, L. F., Oliveira, J. M., Wruck, F. J., Madari, B. E., & Heinemann, A. B. (2019). Atributos físicos, químicos e biológicos do solo em sistemas de integração lavoura-pecuária-floresta. Agrarian, 12(43), 57-70. https://doi.org/10.30612/agrarian.v12i43.8520
Beutler, N. A., Centurion, J. F., Souza, Z. M., Andriolli, I., & Roque, C. G. (2002). Retenção de água em dois tipos de Latossolos sob diferentes usos. Revista Brasileira de Ciência do Solo, 26(3), 829-834. https://doi.org/10.1590/S0100-06832002000300029
Blake, G. R., & Hartge, K. H. (1986). Bulk density. In A, Klute (Ed.), Methods of Soil Analysis, Part 1- Physical and Mineralogical Methods (pp. 87-95). Madison: American Society of Agronomy.
Borcard, D., Gillet, F., & Legendre, P. (2011). Numerical Ecological with R. New York, United States of America: Springer.
Bouma, J. (1991). Influence of soil macroporosity on environmental quality. Advances in Agronomy, 46(1), 1-37. https://doi.org/10.1016/S0065-2113(08)60577-5
Carducci, C. E., Oliveira, G. C., Zeviani, W. M., Lima, V. M. P., & Serafim, M. E. (2013). Bimodal pore distribution on soils under conservation management system for coffee crop. Engenharia Agrícola, 33(2), 291-302. Doi:10.1590/S0100-69162013000200008
Carducci, C. E., Oliveira, G. C., Oliveira, L. M., Barbosa, S. M., & Silva, E. A. (2015). Retenção de água do solo sob sistema conservacionista de manejo com diferentes doses de gesso. Revista de Ciências Agrárias, 58(30), 284-291. Doi: https://doi.org/10.4322/rca.2014
Carpenedo, V., & Mielniczuk, J. (1990). Estado de agregação e qualidade de agregados de Latossolos Roxos, submetidos a diferentes sistemas de manejo. Revista Brasileira de Ciência do Solo, 14(1), 99-105. Available at: https://www.scielo.br/pdf/cr/v28n4/a06v28n4.pdf
Conceição, P. C., Bayer, C., Dieckow, J. & Santos, D. C. (2014). Fracionamento físico da matéria orgânica e índice de manejo do carbono de um Argissolo submetido à sistemas conservacionistas de manejo. Ciência Rural, 4(5), 794-800. Doi: https://doi.org/1010.1590/S0103-84782014005000004
Cunha, E. Q., Stone, L. F., Moreira, J. A., Ferreira, E.P. B., Didonet, A. D., & Leandro, W. M. (2011). Sistemas de preparo do solo e culturas de cobertura na produção orgânica de feijão e milho e atributos físicos do solo. Revista Brasileira de Ciência do Solo, 35(4), 589-602.
Dexter, A. R. (2004). Soil physical quality part I, theory, effects, density and organic matter and effects on root growth. Geoderma, 120(3-4), 201-214. Doi: https://doi.org/1010.1016/j.geoderma.2003.09.004
Dexter, A. R., & Bird, N. R. A. (2001). Methods for predicting the optimum and the range of soil water contents for tillage based on the water retention curve. Soil and Tillage Research, 57(3-4), 203-212. Doi: https://doi.org/10.1016/j.still.2007.07.003
Doran, J. W., & Parkin, T. B. (1994). Defining and assessing soil quality. In Doran, J. W. et al. (Eds.), Defining soil quality for a sustainable environment. Madison: Soil Science Society of America.
Dourado Neto, D., Nielsen, D. R., Hopmans, J. W., Reichardt, K. & Bacchi, O. O. S. (2000). Software to model soil water retention curve (SWRC version 2.00). Scientia Agricola, 57(1),191-192. http://dx.doi.org/10.1590/S0103-90162000000100031
Fernández, J. L. F., Hartmann, L. R., Puhlmann, H., & von Wilpert, K. (2019). Initial recovery of soil structure of a compacted forest soil can be enhanced by technical treatments and planting. Forest Ecology and Management, 431(1-2),54-62.
Doi: https://doi.org/10.1016/j.foreco.2018.04.045
Food and Agriculture Organization of the United Nations. (2015). Status of the world’s soil resources: Main report. Rome, Italy: FAO.
Gaerting, T., Schack-Kirchner, H., Hildebrand, E. F., & Wilpert, K. (2002). The impact of soil aeration on oak decline in southwestern Germany. Forest Ecology and Management, 159(1-2), 15-25. Doi: https://doi.org/10.1016/S0378-1127(01)00706-X
Gomes, R. P., et al. (2019). Changes in the physical properties an Amazonian Inceptisol induced bay tractor traffic. Chilean Journal of Agricultural Research, 79(1),103-113.
GU, C., et al. (2019). Influence of vegetation restoration on soil physical properties in the Loess Plateau, China. Journal of Soil and Sediments, 19(1),716-728. Doi: https://doi.org 10.1007/s11368-018-2083-3
Hongyu, K., Sandanielo, V. L. M., & Oliveira Júnior, G. J. (2015). Análise de componentes principais: resumo teórico, aplicação e interpretação. Engineering and Science, 5(1), 1-8.
Karlen, D. L., Veum, K. S., Sudduth, K. A., Obrycki, J. F. & Nunes, M. R. (2019). Soil health assessment: Past accomplishments, current activities, and future opportunities. Soil and Tillage Research, 195(1), 1-10. https://doi.org/10.1016/j.still.2019.104365
Kemper, W. D., & Chepil, W. S. (1965). Size distribution of aggregates. In Black, C.A. (Ed.), Methods of soil analysis (pp. 425-442). Madison: American Society of Agronomy.
Laclau, B. P. & Laclau, J. P. (2009). Growth of the whole root system for a plant crop of sugarcane under rainfed and irrigated environments in Brazil. Field Crops Research, 114(3), 351-360. Doi: https://doi.org/10.1016/j.fcr.2009.09.004
Loss, A., Ribeiro, E. C., Pereira, M. G., & Costa, E. M. (2014). Atributos físicos e químicos do solo em sistemas de consórcio e sucessão de lavoura, pastagem e silvipastoril em Santa Teresa, ES. Bioscience Journal, 30(5), 1347-1357.
Marcolin, C. D., & Klein, V. A. (2011). Determinação da densidade relativa do solo por uma função de pedotransferência para a densidade do solo máxima. Acta Scientiarum. Agronomy, 33(2), 349-354. https://doi.org/10.4025/actasciagron.v33i2.6120
Mualem, I. (1976). Hydraulic conductivity of unsaturated soils: prediction and formulas. In A, Klute (Ed.), Methods of soil analysis: I Physical and mineralogical methods (pp. 799-823). Madison: American Society of Agronomy.
Nascimento, W. B., et al. (2018). Physical and chemical properties of soils in different physiographic environments in the southern Amazonas region. Bioscience Journal, 35(4), 1099-1109. Doi: https://doi.org/10.14393/BJ-v35n4a2019-42153
Oliveira, D. G., Reis, E. F., Medeiros, J. C., Martins, M. P. O. & Umbelino, A. S. (2018). Correlação espacial de atributos físicos do solo e produtividade de tomate industrial. Revista Agro@mbiente on-line, (1)1-15. Doi: https://doi.org/10.18227/1982-8470ragro.v12i1.4211
Peel, M. C., Finlayson, B. L. & McMahon, T. A. (2007). Updated world map of the Köppen-Geiger climate classification. Hydrology and Earth System Sciences. 2007, 11(4), 1633-1644.
Pieri, J. C. M. G. (1992). Fertility of soils: A future for farming in the west African Savanah. Berlin: Spring-Verlog.
R Development Core Team 2013. R: A language and environment for statistical computing. Vienna: R Foundation for Statistical Computing.
Reynolds, W. D., Drury, C. F., Yang, X. M., Fox, C. A., Tan, C. S., & Zhang, T. Q. (2007). Land management effects on the near-surface physical quality of a clay loam. Soil and Tillage Research, 96(1-2), 316-330. Doi: https://doi.org/10.1016/j.still.2007.07.003
Sampietro, J. A., Lopes, E. S., & Reichert, J. M. (2015). Compactação causada pelo tráfego de Feller Bunvher e Skidder em um Neossolo Regolítico sob distintas umidades. Ciência Florestal, 25(1), 239-248. Doi: https://doi.org/10.5902/1980509817482.
Santos, H. G. et al. (2018). Sistema Brasileiro de Classificação de Solos. Brasília: Embrapa.
Santos, V. L. S., Silva, C. F., Pereira, M. G., & Berbara, R. L. L. (2018). Comunidade de fungos micorrízicos arbusculares e glomalina em ecossistemas de mata-seca, Brasil. Revista de La Facultad de Ciencias Agrarias, 117(1), 13-21.
Shekoftch, H., & Masoudi, A. (2019). Determining the features influencing the-S soil quality index in a semiarid region of Iran using a hybrid GA-ANN algorithm. Geoderma, 355(1), 1-6. Doi: https://doi.org/10.1016/j.geoderma.2019.113908
Silva, E. N. S., Montanari, R., Panosso, A. R., Correia, A. R., Tomza, P. K., & Ferraudo, A. S. (2015). Variabilidade de atributos físicos e químicos do solo e produção de feijoeiro cultivado em sistema de cultivo mínimo com irrigação. Revista Brasileira de Ciência do Solo, 39(3),598-607. https://doi.org/10.1590/01000683rbcs20140429
Silva, I. F., & Mielniczuk, J. (1997). Ação do sistema radicular de plantas na formação e estabilização de agregados do solo. Revista Brasileira de Ciência do Solo, 21(1), 113-117.
Silva, P. L. F., Oliveira, F. P., Tavares, D. D., Nóbrega, C. C., & Amaral, A. J. (2019). Water availability in a Planosol under integrated crop livestock-forestry system in the Agreste region of Paraiba, Brazil. Revista Caatinga, 32(2), 449-457. Doi: https://doi.org/10.1590/1983-21252019v32n218rc
Silveira, M. L., & Kohmann, M. M. (2020). Maintaining soil fertility and health for sustainable pastures. In Rouquette Junior, M., Olson-Corriher, V. & Aiken, G. E. (Eds.), Management Strategies for Sustainable Cattle Production in Southern Pastures (pp. 123-187). London: Academic Press. Doi: https://doi.org/10.1016/b978-0-12-814474-9.00003-7
Singh, K., Choudhary, O. P., Sing, H. P., & Mishra, S. K. (2019). Sub-soiling improves productivity and economic returns of cotton-wheat cropping system. Soil and Tillage Research. 189(1), 131-139. Doi: https://doi.org/10.1016/j.still.2019.01.013
Soil Survey Staff. (2017). Soil Science Division Staff. Washington: USDA.
Song, L., Martin, K., Carr, T. R., & Ghahfarokhi, P. K. 2019. Porosity and storage capacity of Middle Devonian shale: A function of thermal maturity, total organic carbon, and clay content. Fuel, 241(1),1036-1044. Doi: https://doi.org/10.1016/j.fuel.2018.12.106
Souza, E. D., et al. (2019). Soil quality indicators after conversion of “murundu” fields into no-tillage cropping in the Brazilian Cerrado. Pesquisa Agropecuária Brasileira, 54(1), 1-9.
Souza, E. D., et al. (2018). Análise multivariada de atributos químicos e físicos do solo em sistema agroflorestal com teca. Scientia Agraria, 19(1), 87-93. Doi: https://doi.org/10.5380/rsa.v19i1.53385
Souza, J. M., Bonomo, R., Bonomo, D. Z., & Pires, F. R. (2015). Índice S em solo subsolado da região dos Tabuleiros Costeiros, Espírito Santo. Magistra, 27(1),14-22
Stone, L. F., & Silveira, P. M. (2001). Efeitos do sistema de preparo e da rotação de culturas na porosidade e densidade do solo. Revista Brasileira de Ciência do Solo, 25(2),395-401.
Suzuki, L. E. A. S., Reichert, J. M., Reinert, D. J. & Lima, C. L. R. (2007). Grau de compactação, propriedades físicas e rendimento de culturas em Latossolo e Argissolo. Pesquisa Agropecuária Brasileira, 42(8), 1159-1167. Doi: https://doi.org/10.1590/S0100-204X2007000800013
Teixeira, P. C., Donagemma, G. K., Fontana, A. & Teixeira, W. G. (2017). Manual de métodos e análise de solos. Brasília: Embrapa.
Tivet, F. et al. (2013). Aggregate C depletion by plowing and its restoration by diverse biomass- C inputs under no-till in sub-tropical and tropical regions of Brazil. Soil and Tillage Research, 126(1), 203-218. Doi: https://doi.org/10.1016/j.still.2012.09.004
Tormena, C. A., Silva, A. P. & Libardi, P. L. (1998). Caracterização do intervalo hídrico ótimo de um Latossolo Roxo sob plantio direto. Revista Brasileira de Ciência do Solo, 22(3), 573-581. https://doi.org/10.1590/S0100-06831998000400002
Van Genuchten, M. T. (1980). A closed- form equation for predicting the hydraulic conductivity on unsaturated soil. Soil Science Spciety of American Journal, 44(3), 892-897.
Veldkamp, E. (1994). Organic carbon turnover in three tropical soils under pasture after deforestation. Soil Science Society of America Journal, 58(1), 175-180.
Xu, C., Xu, X., Liu, M., Yang, J., Zhang, Y. & Li, Z. (2017). Developing pretransfer to estimate the S-index for indicating soil quality. Ecological Indicators, 83(1), 338-345. Doi: https://doi.org/1016/j.ecolind.2017.08.011
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Copyright (c) 2020 Pedro Luan Ferreira da Silva; Flávio Pereira de Oliveira; Adriana Ferreira Martins; Walter Esfrain Pereira; Danillo Dutra Tavares; André Julio do Amaral; Alison José da Silva
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