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Original Articles

Nitrogen Metabolism and Tomato Yield in Response to Organic Fertilization

, , , &
Pages 2774-2786 | Received 04 Aug 2014, Accepted 23 May 2015, Published online: 20 Nov 2015

References

  • Adams, P., C. J. Graves, and G. W. Winsor. 1978. Tomato yields in relation to the nitrogen, potassium, and magnesium status of the plants and of the peat substrate. Plant and Soil 49:137–48. doi:10.1007/BF02149915.
  • Alcántar, G. G., and V. M. Sandoval. 1999. Manual of chemical analysis of plant tissue: Guide sampling, preparation, analysis and interpretation. México: Sociedad Mexicana de la Ciencia del Suelo. A. C. Chapingo.
  • AOAC. 2002. Official methods of analysis of the AOAC. Washington, DC: Association of Official Analytical Chemists.
  • Arancon, N., C. A. Edwards, K. Webster, and J. Buckerfield. 2010. The potential of vermicomposts as plant growth media for greenhouse crop production. In Vermiculture technology, ed. C. A. Edwards, N. Q. Arancon, and R. Sherman, 103–28. Boca Raton, FL: CRC Press.
  • Arancon, N. Q., C. A. Edwards, R. Dick, and L. Dick. 2007. Vermicompost tea production and plant growth impacts. Biocycle 48:51–52.
  • Ayers, R. S., and W. D. Westcot. 1994. Water quality for agriculture. Rome: FAO.
  • Blom-Zandstra, M., and J. E. M. Lampe. 1985. The role of nitrate in the osmoregulation of lettuce (Lactuca sativa L.) grown at different light intensities. Journal of Experimental Botany 36:1043–52. doi:10.1093/jxb/36.7.1043.
  • Bourret, M. M., J. E. Brummer, and W. C. Leininger. 2009. Establishment and growth of two willow species in a riparian zone impacted by mine tailings. Journal of Environment Quality 38 (2):693–701. doi:10.2134/jeq2008.0153.
  • Capulín-Grande, J., R. Núñez-Escobar, J. Aguilar-Acuña, M. Estrada-Botello, P. Sánchez-García, and J. Mateo-Sánchez. 2007. Use of bovine liquid acidulated manure for production of sweet pepper. Revista Chapingo Serie Horticultura 13:5–11.
  • Castellanos, J. Z., and J. L. Ojodeagua. 2009. Formulation of the nutrient solution. In Manual of horticultural greenhouse production, ed. J. Z. Castellanos, 131–56. Celaya, Guanajuato, México.
  • Crawford, N. M. 1995. Nitrate: Nutrient and signal for plant growth. Plant Cell Online 7:859–68. doi:10.1105/tpc.7.7.859.
  • Friedman, M. 2004. Applications of the ninhydrin reaction for analysis of amino acids, peptides, and proteins to agricultural and biomedical sciences. Journal of Agricultural and Food Chemistry 52:385–406. doi:10.1021/jf030490p.
  • Guzmán, M., M. Urrestarazu, and L. Romero. 1991. Iron index in horticultural crops. In Iron nutrition and interactions in plants ed. Y. Chen and Y. Hadar, 357–61. Jerusalem, Israel: Springer.
  • Haboudane, D., J. R. Miller, N. Tremblay, P. J. Zarco-Tejada, and L. Dextraze. 2002. Integrated narrow-band vegetation indices for prediction of crop chlorophyll content for application to precision agriculture. Remote Sensing of Environment 81:416–26. doi:10.1016/S0034-4257(02)00018-4.
  • IFOAM. 2009. The IFOAM norms for organic production and processing, version 2009. Bonn, Germany: International Federation of Organic Agriculture Movements.
  • Jaworski, E. G. 1971. Nitrate reductase assay in intact plant tissues. Biochemical and Biophysical Research Communications 43:1274–79. doi:10.1016/S0006-291X(71)80010-4.
  • Lamrani, Z., A. Belakbir, J. M. Ruiz, L. Ragala, I. López–Cantarero, and L. Romero. 1996a. Influence of nitrogen, phosphorus, and potassium on pigment concentration in cucumber leaves. Communications in Soil Science and Plant Analysis 27:1001–12. doi:10.1080/00103629609369613.
  • Lamrani, Z., A. Belakbir, J. M. Ruiz, L. Ragala, I. López–Cantarero, and L. Romero. 1996b. Influence of nitrogen, phosphorus, and potassium on pigments concentrations in cucumber leaves. Communications in Soil Science and Plant Analysis 27:1513–26. doi:10.1080/00103629609369649.
  • Lopez‐Cantarero, I., F. A. Lorente, and L. Romero. 1994. Are chlorophylls good indicators of nitrogen and phosphorus levels? Journal of Plant Nutrition 17:979–90. doi:10.1080/01904169409364782.
  • López-Espinosa, S. T., A. Moreno-Reséndez, P. Cano-Ríos, N. Rodríguez-Dimas, V. Robledo-Torres, and C. Márquez-Quiroz. 2013. Organic fertilization: An alternative to produce jalapeño pepper under greenhouse conditions. Emirates Journal of Food and Agriculture 25:666–72.
  • MacKown, C. T., T. G. Sutton, and L. P. Bush. 1990. Nitrogen compositional changes in xylem exudate and leaves of burley tobacco. Crop Science 30 (1):133–38. doi:10.2135/cropsci1990.0011183X003000010030x.
  • Mattsson, M., E. Johansson, T. Lundborg, M. Larsson, and C.-M. Larsson. 1991. Nitrogen utilization in N-limited barley during vegetative and generative growth, I: Growth and nitrate uptake kinetics in vegetative cultures grown at different relative addition rates of nitrate N. Journal of Experimental Botany 42:197–205. doi:10.1093/jxb/42.2.197.
  • Mills, H. A., and J. B. JonesJr. 1997. Plant analysis handbook II: A practical sampling, preparation, analysis, and interpretation guide. Athens, GA: Micro-Macro.
  • Moreno, D. A., G. Villora, M. Baghour, J. M. Ruiz, and L. Romero. 1999a. Fruit production in twelve tomato cultivars. Phyton-International Journal of Experimental Botany 64:41–44.
  • Moreno, D. A., G. Villora, J. M. Ruiz, and L. Romero. 1999b. Optimun range in tomato cultivars, III: Physiological parameters. Phyton-International Journal of Experimental Botany 64:57–62.
  • Murata, Y., and S. Matsushima. 1975. Rice. In Crop physiology, ed. L. T. Evans, 73–99. London, UK: Cambridge University Press.
  • Osaki, M., T. Shinano, and T. Tadano. 1992. Carbon-nitrogen interaction in field crop production. Soil Science and Plant Nutrition 38:553–64. doi:10.1080/00380768.1992.10415087.
  • Preciado, R. P., H. M. Fortis, J. L. Garcia-Hernandez, P. E. Rueda, R. J. R. Esparza, H. A. Lara, C. M. A. Segura, and V. J. Orozco. 2011. Evaluation of organic nutrient solutions for greenhouse tomato production. Interciencia 36:689–93.
  • Quilleré, I., C. Dufossé, Y. Roux, C. H. F. Foyer, M. Caboche, and J. F. Morot-Gaudry. 1994. The effects of deregulation of NR gene expression on growth and nitrogen metabolism of Nicotiana plumbaginifolia plants. Journal of Experimental Botany 45:1205–11. doi:10.1093/jxb/45.9.1205.
  • Redinbaugh, M. G., and W. H. Campbell. 1991. Higher plant responses to environmental nitrate. Physiologia Plantarum 82:640–50. doi:10.1111/ppl.1991.82.issue-4.
  • SAS. 2009. SAS/STAT 9.2 user’s guide, 2nd ed. Cary, NC: SAS Institute Inc.
  • Sisson, V. A., T. W. Rufty, and R. E. Williamson. 1991. Nitrogen-use efficiency among flue-cured tobacco genotypes. Crop Science 31:1615–20. doi:10.2135/cropsci1991.0011183X003100060047x.
  • Sivasankar, S., and A. Oaks. 1996. Nitrate assimilation in higher plants: The effect of metabolites and light. Plant Physiology and Biochemistry 34:609–20.
  • Solomonson, L. P., and M. J. Barber. 1990. Assimilatory nitrate reductase: Functional properties and regulation. Annual Review of Plant Physiology and Plant Molecular Biology 41:225–53. doi:10.1146/annurev.pp.41.060190.001301.
  • Stanhill, G. 1990. The comparative productivity of organic agriculture. Agriculture, Ecosystems, and Environment 30:1–26. doi:10.1016/0167-8809(90)90179-H.
  • Steingröver, E., R. Oosterhuis, and F. Wieringa. 1982. Effect of light treatment and nutrition on nitrate accumulation in spinach (Spinacia oleraceae L.). Zeitschrift Für Pflanzenphysiologie 107:97–102. doi:10.1016/S0044-328X(82)80095-0.
  • Valenzuela, J. L., A. Sánchez, and L. Romero. 1991. Physiological plant age dependent biochemical indicators and physiological parameters of iron nutrition. In Iron nutrition and interactions in plants, ed. Y. Chen and Y. Hadar, 107–16. Jesusalem, Israel: Springer.
  • Wellburn, A. R. 1994. The spectral determination of chlorophylls a and b, as well as total carotenoids, using various solvents with spectrophotometers of different resolution. Journal of Plant Physiology 144:307–13. doi:10.1016/S0176-1617(11)81192-2.
  • Wolf, B. 1982. A comprehensive system of leaf analyses and its use for diagnosing crop nutrient status. Communications in Soil Science and Plant Analysis 13:1035–59. doi:10.1080/00103628209367332.
  • Zhang, H., S. N. Tan, W. S. Wong, C. Y. L. Ng, C. H. Teo, L. Ge, X. Chen, and J. W. H. Yong. 2014. Mass spectrometric evidence for the occurrence of plant growth promoting cytokinins in vermicompost tea. Biology and Fertility of Soils 50:401–3. doi:10.1007/s00374-013-0846-y.
  • Zimmer, W., and R. Mendel. 1999. Molybdenum metabolism in plants. Plant Biology 1:160–68. doi:10.1111/plb.1999.1.issue-2.

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