185
Views
13
CrossRef citations to date
0
Altmetric
Original Articles

Nutritional standards and nutritional diagnosis of the Conilon coffee plants in phenological growth stages

, , , , &
Pages 2536-2546 | Received 19 Sep 2017, Accepted 26 Mar 2018, Published online: 10 Nov 2018

References

  • Alvares, C. A., J. L. Stape, P. C. Sentelhas, J. L. M. Gonçalves, and G. Sparovek. 2013. Koppen’s climate classification map for Brazil. Meteorologische Zeitschrift 22:711–28. doi:10.1127/0941-2948/2013/0507.
  • Bailey, J. S., J. A. M. Beattie, and D. J. Kilpatrick. 1997. The diagnosis and recommendation integrated system (DRIS) for diagnosing the nutrient status of grassland swards: I. Model establishment. Plant and Soil 197:127–35. doi:10.1023/A:1004236521744.
  • Bailey, J. S., A. Cushnahan, and J. A. M. Beattie. 1996. The diagnosis and recommendation integrated system (DRIS) for diagnosing the nutrient status of grassland swards: II. Model calibration and validation. Plant and Soil 197:137–47. doi:10.1023/A:1004288505814.
  • Baldock, J. O., and E. E. Schulte. 1996. Plant analysis with standardized scores combines DRIS and sufficiency range approaches for corn. Agronomy Journal 88 (3):448–56. doi:10.2134/agronj1996.00021962008800030015x.
  • Barbosa, D. H. S. G., H. D. Vieira, F. L. Partelli, and R. M. Souza. 2006. Nutritional analysis of coffee plantations for establishing “DRIS” standards for the Northwest region of the state of Rio De Janeiro, Brazil. Ciência Rural 36:1717–22. doi:10.1590/S0103-84782006000600008.
  • Beaufils, E. R. 1973. Diagnosis and recommendation integrated system (DRIS). A general scheme of experimentation and calibration based on principles developed from research in plant nutrition. Soil Science Bulletin No. 1.University of Natal, Pietermaritzburg.
  • Beverly, R. B. 1987. Modified DRIS method for simplified nutrient diagnosis of ‘valencia’ oranges. Journal of Plant Nutrition 10:1401–8. doi:10.1080/01904168709363672.
  • Bragança, S. M., H. E. P. Martinez, H. G. Leite, L. P. Santos, C. S. Sediyama, V. V. H. Alvarez, and J. A. Lani. 2008. Accumulation of macronutrients for the conilon coffee tree. Journal of Plant Nutrition 31 (1):103–20. doi:10.1080/01904160701741990.
  • Bragança, S. M., H. E. P. Martinez, H. G. Leite, L. P. Santos, C. S. Sediyama, V. V. H. Alvarez, and J. A. Lani. 2007. Acumulo de B, Cu, Fe, Mn E Zn pelo cafeeiro conilon. Revista Ceres 54:398–404.
  • Carvalho, C. H. S., A. B. Rena, A. A. Pereira, and A. T. Cordeiro. 1993. Relationship between crop load N, P, K, Ca, Mg and starch content, and the dieback of Catimor (Coffea arabica L.). Pesquisa Agropecuária Tropical 28:665–73.
  • Companhia Nacional de Abastecimento (CONAB). 2016. Acompanhamento da safra brasileira. Primeiro levantamento, safra de café 2016, Janeiro/2016, Brasília, DF. http://www.conab.gov.br/OlalaCMS/uploads/arquivos/16_01_20_17_01_56_boletim_cafe_-_janeiro_2016.pdf (accessed March 2, 2016).
  • Covre, A. M., F. L. Partelli, R. Bonomo, H. Braun, and C. P. Ronchi. 2016. Vegetative growth of Conilon coffee plants under two water conditions in the Atlantic region of Bahia, Brazil. Acta Scientiarum Agronomy 38 (4):535–45.
  • Covre, A. M., F. L. Partelli, R. Bonomo, and I. Gontijo. 2018. Micronutrients in the fruit and leaves of irrigated and non-irrigated coffee plants. Journal of Plant Nutrition 41 (9):1119–1. doi:10.1080/01904167.2018.1431665.
  • Dallal, G. E., and L. Wilkinson. 1986. An analytic approximation to the distribution of ‘lilliefors’ test for normality. American Statistical Association 40 (4):294–6.
  • Dara, S. T., P. E. Fixen, and R. H. Gelderman. 1992. Sufficiency level and diagnosis and recommendation integrated system approaches for evaluating the nitrogen status of the corn. Agronomy Journal 84 (6):1006. doi:10.2134/agronj1992.00021962008400060020x.
  • Davis, A. P., T. W. Gole, S. Baena, and J. Moat. 2012. The impact of climate change on indigenous Arabica coffee (Coffea arabica): Predicting future trends and identifying priorities. PLos One 7 (11):e47981–13.
  • Davis, A. P., J. Tosh, N. Ruch, and M. F. Fay. 2011. Growing coffee: Psilanthus (Rubiaceae) subsumed on the basis of molecular and morphological data implications for the size, morphology, distribution and evolutionary history of Coffea. Botanical Journal of the Linnean Society 167 (4):357–77. doi:10.1111/j.1095-8339.2011.01177.x.
  • Dias, J. R. M., D. V. Perez, L. M. Silva, C. O. Lemos, and P. S. G. Wadt. 2010. DRIS norms for cupuaçu trees cultivated in monocultures and in agroforestry systems. Pesquisa Agropecuária Brasileira 45 (1):64–71. doi:10.1590/S0100-204X2010000100009.
  • Dias, J. R. M., C. A. F. Tucci, P. G. S. Wadt, F. L. Partelli, D. V. Perez, M. C. Espindula, and D. B. Tomio. 2013. Anticipation of the period for foliar diagnosis in 'Pêra' orange tree in amazon state, Brazil. Pesquisa Agropecuária Brasileira 48 (7):757–64. doi:10.1590/S0100-204X2013000700008.
  • Dias, J. R. M., P. G. S. Wadt, D. V. Perez, L. M. Silva, and C. O. Lemos. 2011. DRIS formulas for evaluation of nutritional status of cupuacu trees. Revista Brasileira De Ciência Do Solo 35 (6):2083–91. doi:10.1590/S0100-06832011000600023.
  • Dubberstein, D., F. L. Partelli, J. R. M. Dias, and M. C. Espindola. 2016. Concentration and accumulation of macronutrients in leaf of coffee berries in the Amazon, Brazil. Australian Journal of Crop Science 10 (5):701–10.
  • Farnezi, M. M. M., E. B. Silva, and P. T. G. Guimarães. 2009. Nutritional diagnosis of coffee plantations in the upper Jequitinhonha valley, Minas Gerais state, Brazil: Dris norms and critical nutrient ranges. Pesquisa Agropecuária Tropical 33:969–78. doi:10.1590/S0100-06832009000400021.
  • Fullin, E. A., and G. G. Dadalto. 2001. Avaliação da fertilidade do solo e do estado nutricional das plantas. In Manual de recomendação de calagem e adubação Para o estado do espírito santo: quarta aproximação, ed. G. G. Dadalto, and E. A. Fullin, 21–55. Vitória: SEEA/INCAPER.
  • Gomes, W. R., W. P. Rodrigues, H. D. Vieira, M. G. Oliveira, J. R. M. Dias, and F. L. Partelli. 2016. Genetic diversity of standard leaf nutrients in Coffea canephora genotypes during phenological phases. Genetics and Molecular Research 15 (4):15048839.
  • International Coffee Organization (ICO). 2016. Trade statistics. London: International Coffee Organization. http://www.ico.org/trade_statistics.asp (accessed March 2, 2016).
  • Jarrel, W. M., and R. B. Beverly. 1981. The dilution effect in plant nutrition studies. Advances in Agronomy 34:197–224. doi:10.1016/S0065-2113(08)60887-1.
  • Jones, W. W. 1981. Proposed modifications of the diagnosis and recommendation integrated system (DRIS) for interpreting plant analyses. Communications in Soil Science and Plant Analysis 12 (8):785–94. doi:10.1080/00103628109367194.
  • Köppen, W. 1931. Climatologia. México: Fundo de Cultura Econômica.
  • Kurihara, C. H., V. V. H. Alvarez, J. C. L. Neves, R. F. Novais, and L. A. Staut. 2013. Sufficiency range for nutrient concentration in cotton and soybean leaves, defined through DRIS indexes. Revista Ceres 60 (3):412–9. doi:10.1590/S0034-737X2013000300015.
  • Laviola, B. G., H. E. P. Martinez, L. C. C. Salomão, C. D. Cruz, S. M. Mendonça, and L. Rosado. 2008. Accumulation in fruits and variation in the contents in leave of NPK in coffee plant cultivated in four altitudes. Bioscience Journal 24 (1):19–31.
  • Marré, W. B., F. L. Partelli, M. C. Espindula, D. J.R.M, I. Gontijo, and H. D. Vieira. 2015. Micronutrient accumulation in conilon coffee berries with different maturation cycles. Revista Brasileira De Ciência Do Solo 38:214–22. doi:10.1590/01000683rbcs20140649.
  • Martinez, H. E. P., J. F. S. Menezes, R. B. Souza, V. H. A. Alvarez, and P. T. G. Guimarães. 2003. Critical nutrient ranges and evaluation of nutritional status in coffee-tree plantations of Minas Gerais. Pesquisa Agropecuária Brasileira 38 (6):703–13. doi:10.1590/S0100-204X2003000600006.
  • Matos, G. S. B., A. R. Fernandes, P. G. S. Wadt, A. J. A. Pina, V. I. Franzini, and H. M. N. Ramos. 2017. The use of DRIS for nutritional diagnosis in oil palm in the state of pará. Revista Brasileira De Ciência Do Solo 41:e0150466. doi:10.1590/18069657rbcs20150466.
  • McCray, J. M., S. Ji, G. Powell, G. Montes, and R. Perdomo. 2010. Sugarcane response to DRIS-based fertilizer supplements in Florida. Journal of Agronomy and Crop Science 196 (1):66–75. doi:10.1111/j.1439-037X.2009.00395.x.
  • Partelli, F. L., J. R. M. Dias, H. D. Vieira, P. G. S. Wadt, and E. Paiva Júnior. 2014. Nutritional assessment of the irrigated common bean crop by the CND, DRIS, and sufficiency range methods. Revista Brasileira De Ciência Do Solo 38 (3):858–66. doi:10.1590/S0100-06832014000300017.
  • Partelli, F. L., M. C. Espindula, W. B. Marré, and H. D. Vieira. 2014. Dry matter and macronutrient accumulation in fruits of Conilon coffee with different ripening cycles. Revista Brasileira De Ciência Do Solo 38 (1):214–22. doi:10.1590/S0100-06832014000100021.
  • Partelli, F. L., W. R. Gomes, and M. A. Martins. 2006. Nutritional diagnosis of the organic Conilon coffee trees (Coffea canephora pierre ex froehn): Suffiency range approach for leaves and soil. Coffee Science 1:43–9.
  • Partelli, F. L., Gomes, W. R. M. G. Oliveira, J. R. M. Dias, and M. C. 2016. Espindula. Leaf norms and nutrition diagnosis of coffee Conilon in flowering and graining in Espirito Santo. Coffee Science 11:544–54.
  • Partelli, F. L., H. D. Vieira, V. B. de Carvalho, and F. de Assis Alves Mourão Filho. 2007. Diagnosis and recommendation integrated system norms, sufficiency range, and nutritional evaluation of Arabian coffee in two sampling periods. Journal of Plant Nutrition 30 (10):1651–67. doi:10.1080/01904160701615525.
  • Queiroz, A. A., J. M. Q. Luz, R. C. Oliveira, and F. C. Figueiredo. 2014. Productivity and establishment of DRIS indices for tubers of the potato cultivar ‘agata. Revista Ciência Agronômica 45 (2):351–60. doi:10.1590/S1806-66902014000200017.
  • Raj, G. B., and A. P. Rao. 2006. Identification of yield-limiting nutrients in mango through DRIS indices. Communications in Soil Science and Plant Analysis 37(11–12):1761–74. doi:10.1080/00103620600710587.
  • Reis Júnior, R. A., and P. H. Monnerat. 2003. Norms establishment of the diagnosis and recommendation integrated system (DRIS) for nutritional diagnosis of sugarcane. Pesquisa Agropecuária Brasileira 38 (2):277–82.
  • Rena, A. B., and M. Maestri. 1985. Fisiologia do cafeeiro. Inf Agropecuaria 11:26–40.
  • Santos, E. F., R. M. A. Donha, C. M. M. Araújo, J. Lavres Júnior, and M. A. Camacho. 2013. Normal nutrient ranges for sugarcane by the methods ChM, DRIS and CND and critical level by reduced normal distribution. Revista Brasileira De Ciência Do Solo 37 (6):1651–8. doi:10.1590/S0100-06832013000600021.
  • Serra, A. P., M. E. Marchetti, E. P. Rojas, H. S. Morais, V. A. Conrad, and F. C. M. Guimarães. 2013. Establishing DRIS norms for cotton with different selection criteria for the reference population. Pesquisa Agropecuária Tropical 48:1472–80. doi:10.1590/S0100-204X2013001100008
  • Serra, A. P., M. E. Marchetti, A. C. T. Vitorino, J. O. Novelino, and M. A. Camacho. 2010. Determination of normal nutrient ranges for cotton by the ChM, CND and DRIS methods. Revista Brasileira De Ciência Do Solo 34 (1):105–4. doi:10.1590/S0100-06832010000100011.
  • Silva, F. C. 2009. Manual de análises químicas de solos, plantas e fertilizantes. 2nd ed., p. 627. Brasília: Embrapa Informação Tecnológica; Rio de Janeiro: Embrapa Solos.
  • Souza, H. A., D. E. Rozane, D. A. Amorim, and W. Natale. 2013. Preliminary DRIS norms and sufficiency range for ‘paluma’ guava tree. Revista Brasileira De Fruticultura 35 (1):282–91.
  • Srivastava, A. K., and S. Shyam. 2008. DRIS norms and their field validation in Nagpur mandarin. Journal of Plant Nutrition 31 (6):1091–107. doi:10.1080/01904160802115359.
  • Teixeira, L. A. J., M. A. Tecchio, M. F. Moura, M. M. Terra, and E. J. P. Pires. 2015. DRIS norms and critical leaf nutrient levels for ‘Niagara rosada’ grape in Jundiaí region, São Paulo. Revista Brasileira De Fruticultura 37 (1):247–55. doi:10.1590/0100-2945-409/13.
  • Vidal, R. O., J. M. C. Mondego, D. Pot, A. B. Ambrosio, A. C. Andrade, L. F. P. Pereira, C. A. Colombo, L. G. E. Vieira, M. F. Carazzolle, and G. A. G. Pereira. 2010. A high-throughput data mining of single nucleotide polymorphisms in Coffea species expressed sequence tags suggests differential homologous gene expression in the allotetraploid Coffea arabica. Plant Physiology 154 (3):1053–106. doi:10.1104/pp.110.162438.
  • Wadt, P. G. S. 2005. Relationships between soil class and nutritional status of coffee crops. Revista Brasileira De Ciência Do Solo 29 (2):227–34. doi:10.1590/S0100-06832005000200008.
  • Wadt, P. G. S., J. R. M. Dias, D. V. Perez, and C. O. Lemos. 2012. Dris interpretation criteria for cupuassu orchards. Revista Brasileira De Ciência Do Solo 36 (1):125–35.
  • Walworth, J. L., and M. E. Sumner. 1986. Foliar diagnosis: A review. Advance Journal of Food Science and Technology 3:193–241.
  • Xu, M., J. Zhang, F. Wu, and X. Wang. 2015. Nutritional diagnosis for apple by DRIS, CND and DOP. Advance Journal of Food Science and Technology 7 (4):266–73.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.