Reproductive Components of Safflower Genotypes Submitted of Bulk Density Levels in the Brazilian Cerrado — Oak Academic Publishing
Research ArticleOpen AccessGoogle Scholar indexed
Reproductive Components of Safflower Genotypes Submitted of Bulk Density Levels in the Brazilian Cerrado
Department of Agricultural and Environmental Engineering, Institute of Agricultural Sciences and Technology—ICAT, Federal University of Mato Grosso—UFMT, Cuiabá, Brazil
,
Department of Agricultural and Environmental Engineering, Institute of Agricultural Sciences and Technology—ICAT, Federal University of Mato Grosso—UFMT, Cuiabá, Brazil
,
Department of Agricultural and Environmental Engineering, Institute of Agricultural Sciences and Technology—ICAT, Federal University of Mato Grosso—UFMT, Cuiabá, Brazil
,
Faculty of Agronomic Sciences of Botucatu, Paulista State University Júlio de Mesquita Filho—UNESP, Botucatu, Brazil
,
Faculty of Agronomy and Zootechnic-FAAZ, Post Graduating in Tropical Agriculture, Federal University of Mato Grosso—UFMT, Cuiabá, Brazil
,
Department of Agricultural and Environmental Engineering, Institute of Agricultural Sciences and Technology—ICAT, Federal University of Mato Grosso—UFMT, Cuiabá, Brazil
1 Department of Agricultural and Environmental Engineering, Institute of Agricultural Sciences and Technology—ICAT, Federal University of Mato Grosso—UFMT, Cuiabá, Brazil
2 Department of Agricultural and Environmental Engineering, Institute of Agricultural Sciences and Technology—ICAT, Federal University of Mato Grosso—UFMT, Cuiabá, Brazil
3 Department of Agricultural and Environmental Engineering, Institute of Agricultural Sciences and Technology—ICAT, Federal University of Mato Grosso—UFMT, Cuiabá, Brazil
4 Faculty of Agronomic Sciences of Botucatu, Paulista State University Júlio de Mesquita Filho—UNESP, Botucatu, Brazil
5 Faculty of Agronomy and Zootechnic-FAAZ, Post Graduating in Tropical Agriculture, Federal University of Mato Grosso—UFMT, Cuiabá, Brazil
6 Department of Agricultural and Environmental Engineering, Institute of Agricultural Sciences and Technology—ICAT, Federal University of Mato Grosso—UFMT, Cuiabá, Brazil
Nutrient absorption in crops can decline and their development can be hindered by increased bulk density. This study aimed at assessing the manner in which bulk density levels affect the reproductive structures of the safflower genotypes in the Brazilian Cerrado. The completely randomized design was adopted with four replications for the experiment, which was conducted in a greenhouse using Oxisol collected from 0.0 to 0.2 m depth from the region supporting Cerrado vegetation. The treatments included ten safflower genotypes (PI 237538, PI 248385, PI 250196, PI 301049, PI 305173, PI 305205, PI 306520, PI 306603, PI 560202 and PI 613366) and five bulk density levels (1.0, 1.2, 1.4, 1.6 and 1.8 Mg · m - 3 ). Evaluations were done at 90 days after emergence, in terms of the number, diameter and dry mass of the heads. The data were submitted to the analysis of variance. The means were grouped using the Scott-Knott test at 5% probability. The diameter and dry mass of the chapters were influenced by the mean bulk density of 1.10 Mg · m - 3 . A notable interaction was evident between the safflower genotypes and bulk density levels for the diameter and dry mass of the head alone, revealing the high degree of genetic variability that environmental changes induce among the genotypes. The PI 250196, PI 301049, PI 305173 and PI 305205 genotypes exhibited greater stability to the bulk density variations compared with the others. Mean bulk density of 1.2 Mg · m - 3 was found to impair the development of the reproductive components of the safflower genotypes.
Keywords<i>Carthamus tinctorius</i>L.Bulk DensityOleaginous CropSafflower GenotypesPhysical Attributes of Soil
Leite, L.F.C., Arruda, F.P., Costa, C.N., Ferreira, J.S. and HolandaNeto, M.R. (2013) Chemical Quality of Soil and Dynamics of Carbon under Monoculture and Intercroping of Acrocomia Palm and Pasture. Revista Brasileira de Engenharia Agrícola e Ambiental, 17, 1257-1263. http://www.scielo.br/pdf/rbeaa/v17n12/v17n12a02.pdf https://doi.org/10.1590/S1415-43662013001200002
Bonfim-Silva, E.M., Paludo, J.T.S., Sousa, J.V.R., Sousa, H.H.F. and da Silva, T.J.A. (2015) Development of Safflower Subjected to Nitrogen Rates in Cerrado Soil. American Journal of Plant Sciences, 6, 2136-2143. https://doi.org/10.4236/ajps.2015.613215
Nunes, J.A.S.,Bonfim-Silva, E.M. and Silva, T.J.A. (2016) Bulk Density and Water Tensions in the Soil on Corn Root Production. Revista Brasileira de Engenharia Agrícola e Ambiental, 20, 357-363. https://doi.org/10.1590/1807-1929/agriambi.v20n4p357-363
Ferreira, P.P.,Bonfim-Silva, E.M., Silva, T.J.A., Pacheco, A.B., Sousa, H.H.F. and Duarte, T.F. (2017) Density of Soil and Nitrogen in Production and Nutrition of Safflower (Carthamus tinctorius L.). Australian Journal Crop Science, 11, 605-609. https://doi.org/10.21475/ajcs.17.11.05.p436
Spera, S.T., dos Santos, H.P., Fontaneli, R.S. and Dreon, G. (2012) Efeito de sistemas de integração lavoura-pecuária sob plantio direto em alguns atributos físicos do solo. Revista Brasileira de Ciências Agrárias, 7, 388-393. https://www.embrapa.br/trigo/busca-de-publicacoes/-/publicacao/946188/efeito-de-sistemas-de-integracao-lavoura-pecuaria-sob-plantio-direto-em-alguns-atributos-fisicos-do-solo https://doi.org/10.5039/agraria.v7i3a1227
Beutler, A.N., Centurion, J.F., Centurion, M.A.P.C. and Silva, A.P. (2006) Effect of Compaction on Soybean Cultivar Yield in Haplustox. Revista Brasileira Ciência do Solo, 30, 787-794. http://www.scielo.br/pdf/rbcs/v30n5/04.pdf https://doi.org/10.1590/S0100-06832006000500004
Oelke, E.A., Oplinger, E.S., Teynor, T.M., Putnam, D.H., Boneca, J.D., Kelling, K.A., Durgan, B.R. and Noetzel, D.M. (1992) Safflower. Alternative Field Crops Manual. https://www.hort.purdue.edu/newcrop/afcm/safflower.html
Mündel, H.H.,Blackshow, R.E., Byers, J.R., Huang, H.C., Johnson, D.L. and Keon, R. (2004) Safflower Production on the Canadian Prairies. Lethbridge, 1, 1-36.
Handan, Y., Pérez-Vich, B., Velasco, L. and Fernández-Martínez, J.M. (2009) Inheritance of High Oleic Acid Content in Safflower. Euphytica, 168, 1-69.
Coronado, L.M. (2010) El cultivo Del cártamo (Carthamus tinctorius L.) en México. Ms. D. Instituto nacional de investigacion esforestales, agrícolas y pecuárias. México.
Emongor, V. (2010) Safflower (Carthamus tinctorius L.) the Underutilized and Neglected Crop: A Review. Asian Journal of Plant Science, 9, 299-306. https://doi.org/10.3923/ajps.2010.299.306
Abud, H.F., Gonçalves, N.R., Reis, R.G.E., Gallão, M.I. and Innecco, R. (2010) Morphology of Seed and Seedling of Safflower. Revista de Ciências Agronômicas, 41, 259-265. http://ccarevista.ufc.br/seer/index.php/ccarevista/article/view/727
Dajue, L. and Mündel, H.H. (1996) Safflower Carthamus tinctorius L. Promoting the Conservation and Use of Underutilized and Neglected Crops. International Plant Genetic Resources Institute, 1, 1-83.
Gracia, A.B., Márquez, J.P., Camarena, M.G.G., Espinoza, X.M.O., Coronado, L.M. and Cervantes, J.M. (2010) Guíaparaproducion de Cártamoem Sinaloa. Fundación Produce Sinaloa, 1, 1-15.
Anicésio, E.C.A., Bonfim-Silva, E.M., Silva, T.J.A. and Koetz, M. (2015) Dry Mass, Nutrient Concentration and Accumulation in Safflower (Carthamus tinctorius L.) Influenced by Nitrogen and Potassium Fertilizations. African Journal of Agricultural Research, 9, 552-560. http://www.cropj.com/anicesio_9_6_2015_552_560.pdf
Koutroubas, S.D., Papakosta, D.K. and Doitsinis, A. (2009) Phenotypic Variation in Physiological Determinants of Yield in Spring Sown Safflower under Mediterranean Conditions. Field Crops Research, 112, 199-204. https://doi.org/10.1016/j.fcr.2009.03.002
Empresa Brasileira de Pesquisa Agropecuária (2013) Sistema Brasileiro de Classificação de Solos. Empresa Brasileira de Pesquisa Agropecuária, Brasília.
Silva, G.J., Maia, J.C.S. and Bianchini, A. (2006) Shoot Growth of Plants under Subsurface Irrigation and Four Degrees of Soil Compaction. Revista Brasileira Ciência do Solo, 30, 31-40. https://doi.org/10.1590/S0100-06832006000100004
Ferreira, D.F. (2011) Sisvar: A Computer Statistical Analysis System. Ciência e Agrotecnologia, 35, 1039-1042. https://doi.org/10.1590/S1413-70542011000600001
Bonfim-Silva, E.M., Paludo, J.T.S., Silva, T.J.A. and Guimarães, S.L. (2015) Bulk Density in Jack Bean’s Development Grown in Cerrado Oxisol. American Journal of Plant Sciences, 6, 1349-1360. https://doi.org/10.4236/ajps.2015.69134
Gao, W., Hodgkinson, L., Jin, K., Watts, C.W., Ashton, R.W., Shen, J., Ren, T., Dodd, I.C., Binley, A., Phillips, A.L., Hedden, P., Hawkesford, M.J. and Whalley, W.R. (2016) Deep Roots and Soil Structure. Plant Cell Environment, 39, 1662-1668. https://doi.org/10.1111/pce.12684
Mossadeghi-Björklund, M., Arvidsson, J., Keller, T., Koestel, J., Lamandé, M., Larsbo, M. and Jarvis, N. (2016) Effects of Subsoil Compaction on Hydraulic Properties and Preferential Flow in a Swedish Clay Soil. Soil Tillage Research, 156, 91-98. https://doi.org/10.1016/j.still.2015.09.013
Shahrokhnia, M.H. and Sepaskhah, A.R. (2017) Physiologic and Agronomic Traits in Safflower under Various Irrigation Strategies, Planting Methods and Nitrogen Fertilization. Industrial Crops and Products, 95, 126-139. https://doi.org/10.1016/j.indcrop.2016.10.021
Zoz, T. (2012) Correlação e Análise de Trilha de Produtividade em Grãos e Seus Componentes e Caracteres de Planta em Cártamo (Carthamus tinctorius L.) e Mamona (Ricinus communis L.). Master’s Thesis, Faculdade de Ciências Agronômicas, Botucatu.
Corleto, A., Alba, E., Polignano, G.B. and Vonghio, G. (1997) A Multipurpose Species with Unexploited Potential and World Adaptability. Proceedings of 4th International Safflower Conference, Bari, 2-7 June 1997, 373.
Dizaj, K.A. (2007) Stability Analysis of Safflower (Carthamus tinctorius L.) Lines Adaptability in Dryland Conditions in Iran. Revista UDO Agrícola, 7,15-21. https://tspace.library.utoronto.ca/handle/1807/45380
Rocha, E.K. (2005) Fenologia e Qualidade de Carthamus tinctorius L. em Diferentes Populações e épocas de Cultivo. Master’s Thesis, Universidade Federal de Santa Maria, Santa Maria.
Camargo, O.A. and Alleoni, L.R.F. (1997) Compactação do Solo e o Desenvolvimento de Plantas. Luiz de Queiroz College of Agriculture, Piracicaba.
Valicheski, R.R., Grossklaus, F., Stürmer, S.L.K., Tramontin, A.L. and Baade, E.S.A.S. (2012) Growth of Cover Crops and Soybean Yield According to Physical Attributes in Compacted Soil. Revista Brasileira de Engenharia Agrícola e Ambiental, 16, 969-977. https://doi.org/10.1590/S1415-43662012000900007
Whalley, W.R., Watts, C.W., Gregory, A.S., Mooney, S.J., Clark, L.J. and Whitmore, A.P. (2008) The Effect of Soil Strength on the Yield of Wheat. Plant Soil, 306, 237-247. https://doi.org/10.1007/s11104-008-9577-5