Technical Papers
Mar 20, 2015

Response of Orange Trees to Deficit Irrigation Strategies: Effects on Plant Nutrition, Yield, and Fruit Quality

Publication: Journal of Irrigation and Drainage Engineering
Volume 141, Issue 10

Abstract

Environmental and economic sustainability of agricultural systems has to face the general decreasing trend of water resources through the adoption of strategies aimed at improving water-use efficiency. In the study, during three consecutive summer seasons, the effects of deficit irrigation (DI) treatments applied on mature orange trees [Citrus sinensis (L.) Osbeck] cv. “Tarocco Meli” were analyzed. Two different DI strategies supplying 70 and 50% of crop evapotranspiration (ETc) were compared with irrigation at the full rate of ETc; the comparisons were carried out in terms of plant physiological response, crop production, quality, and nutritional status. The orange trees became less sensitive to moderate water restrictions (DI = 70% ETc) permitting approximately 80 mm of water saving (i.e., corresponding to a threshold for water stress integral of 60 MPa) per season without any significant impact on their water status and on agronomic performances. Severe water restrictions (DI=50%ETc) reduced fruit weight and crop production every year, with water-use efficiency values similar to those of the moderate DI (70% ETc). The study does not evidence crop mineral nutrition imbalances and yield decrease caused by mild water reductions. A moderate water restriction can be applied in commercial orange orchards because it saved water and improved fruit quality by increasing total soluble solids and titratable acidity while the fruit maturity was delayed.

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References

Abrisqueta, I., et al. (2010). “Response of early-maturing peach [Prunus persica (L.)] trees to deficit irrigation.” Span. J. Agric. Res., 8(S2), 30–39.
Allen, R. G., Pereira, L. S., Raes, D., and Smith, M. (1998). “Crop evapotranspiration: Guidelines for computing crop water requirements.”, Food and Agricultural Organization of the United Nations, Rome.
Ballester, C., Castel, J., Intrigliolo, D. S., and Castel, J. R. (2013). “Response of navel lane late citrus trees to regulated deficit irrigation: Yield components and fruit compositions.” Irrig. Sci., 31(3), 333–341.
Buendía, A., Allende, A., Nicolás, E., Alarcón, J. J., and Gil, M. I. (2008). “Effect of regulated deficit irrigation and crop load on the antioxidant compounds of peaches.” J. Agric. Food Chem., 56(10), 3601–3608.
Capra, A., Consoli, S., Russo, A., and Scicolone, B. (2008). “Integrated agro-economic approach to deficit irrigation on lettuce crops in Sicily (Italy).” J. Irrig. Drain. Eng., 437–445.
Capra, A., Consoli, S., and Scicolone, B. (2013). “Long-term climatic variability in Calabria and effects on drought and agrometeorological parameters.” Water Resour. Manage., 27(2), 601–617.
Capra, A., Scicolone, B., and Consoli, S. (2011). “Economic analysis of citrus orchards under deficit irrigation in south Italy.” Acta Hortic., 922, 209–216.
Castel, J. R., and Buj, A. (1990). “Response of Salustiana oranges to high frequency deficit irrigation.” Irrig. Sci., 11(2), 121–127.
Cirelli, G. L., Consoli, S., Di Grande, V., Milani, M., and Toscano, A. (2007). “Subsurface constructed wetlands for wastewater treatment and reuse in agriculture—Five years of experience in Sicily, Italy.” Water Sci. Technol., 56(3), 183–191.
Cohen, A., Goell, A., Rassis, A., and Gokkes, H. (1968). “Effects of irrigation regimes on grapefruit peel and pulp relations.” Isr. J. Agric. Res., 18, 155–160.
Consoli, S., Stagno, F., Roccuzzo, G., Cirelli, G., and Intrigliolo, F. (2014). “Sustainable management of limited water resources in a young orange orchard.” Agric. Water Manage., 132, 60–68.
Doorenbos, J., and Kassam, A. H. (1979). “Yield response to water.”, FAO, Rome.
Doorenbos, J., and Pruitt, W. O. (1977). “Crop water requirements.”, FAO, Rome.
Egea, G., Nortes, P., González-Leal, M., Baille, A., and Domingo, R. (2010). “Agronomic response and water productivity of almond trees under contrasted deficit irrigation regimes.” Agric. Water Manage., 97(1), 171–181.
Embleton, T. W., Jones, W. W., Labanauskas, C. K., and Reuther, W. J. (1973). “Leaf analysis is a diagnostic tool and guide to fertilization.” The citrus industry, W. J. Reuther, ed., Vol. 3, Univ. of California, Berkeley, CA, 183–211.
English, M. (1990). “Deficit irrigation. I: Analytical framework.” J. Irrig. Drain. Eng., 399–412.
EU (European Union). (2000). “Directive 2000/60/EC of the European Parliament and of the council establishing a framework for community action in the field of water policy.” Netherlands.
Fallahi, E. (2012). “Influence of rootstock and irrigation methods on water use, mineral nutrition, growth, fruit yield and quality in ‘gala’ apple.” Hortic. Technol., 22(6), 731–737.
Farah, R., and Ben Mimoun, M. (2013). “Comparative effects of controlled release fertilizer and fertigation on mineral status of Maltaise half blood orange orchard.” Acta Hortic., 984, 231–236.
Fereres, E., et al. (1981). “Evapotranspiration and drip irrigation scheduling.”, Univ. of California, 8–13.
Fereres, E., and Soriano, A. (2007). “Deficit irrigation for reducing agricultural water use.” J. Exp. Bot., 58(2), 147–159.
García-Tejero, I., Durán-Zuazo, V. H., Arriaga-Sevilla, J., and Muriel-Fernández, J. L. (2012). “Impact of water stress on citrus yield.” Agron. Sustainable Dev., 32(3), 651–659.
García-Tejero, I., Romero-Vicente, R., Jiménez-Bocanegra, J. A., Martínez-García, G., Durán-Zuazo, V. H., and Muriel-Fernández, J. L. (2010). “Response of citrus trees to deficit irrigation during different phenological periods in relation to yield, fruit quality, and water productivity.” Agric. Water Manage., 97(5), 614–622.
Ginestar, C., and Castel, J. R. (1996). “Response of young Clementine citrus trees to water stress during different phenological periods.” J. Hortic. Sci. Biotechnol., 71, 551–559.
González-Altozano, P., and Castel, J. R. (1999). “Regulated deficit irrigation in ‘Clementina de Nules’ citrus trees. I: Yield and fruit quality effects.” J. Hortic. Sci. Biotechnol., 74, 706–713.
Gonzalez-Dugo, V., Durand, J. L., and Gastal, F. (2010). “Water deficit and nitrogen nutrition of crops. A review.” Agron. Sustainable Dev., 30(3), 529–544.
Gucci, R., Caruso, G., and Sebastiani, L. (2010). “Seasonal changes in leaf nitrogen of olive trees grown under different irrigation regimes and crop level.” J. Plant Nutr., 33(12), 1849–1859.
Hilgeman, R. H. (1977). “Response of citrus to water stress in Arizona.” Proc., Int. Society Citriculture Congress, Univ. of Florida, Citrus Research and Education Centre, FL, Vol. 1, 70–74.
Huang, X. M., Huang, H. B., and Gao, F. F. (2000). “The growth potential generated in citrus fruit under water stress and its relevant mechanisms.” Sci. Hortic., 83(3–4), 227–240.
Hutton, R. J., Landsberg, J. J., and Sutton, G. (2007). “Timing irrigation to suit citrus phenology: A means of reducing water use without compromising fruit yield and quality?” Aust. J. Exp. Agric., 47(1), 71–80.
IBM SPSS Statistics for Windows version 19.0 [Computer software]. Armonk, NY, IBM.
Intrigliolo, F., Roccuzzo, G., Lacertosa, G., Rapisarda, P., and Canali, S. (1999). Agrumi: Modalita’ di campionamento per terreno, foglie, acque d’irrigazione e frutti; valori analitici di riferimento, CUECM Editions, Catania, Italy, 86 (in Italian).
Jing, Q., et al. (2009). “Quantifying N response and N use efficiency in rice-wheat (RW) cropping system under different water management.” J. Agric. Sci., 147(3), 303–312.
Kimball, D. A. (1999). Citrus processing: A complete guide, 2nd Ed., Aspen, Gaithersburg, MD.
Liu, Y. Q., Heying, H., and Tanumihardjo, S. A. (2012). “History, global distribution, and nutritional importance of citrus fruits.” Food Sci. Food Saf., 11(6), 530–545.
Maccarone, E., Rapisarda, P., Fanella, F., Arena, E., and Mondello, L. (1998). “Cyanidin-3-(6”-malonyl)-glucoside. An important anthocyanin of blood orange juice.” Ital. J. Food Sci., 10, 367–372.
McNutt, M., and Leshner, A. (2013). “Preparing for disasters.” Science, 341(6146), 592.
Myers, B. J. (1988). “Water stress integral. A link between short term stress and long term growth.” Tree Physiol., 4(4), 315–323.
Navarro, J. M. (2008). “Effects of differing deficit irrigation treatments on fruit quality of Citrus reticulata Blanco.” Proc., Int. Society of Citriculture: The 11th Int. Citrus Congress, Vol. 1, China Agriculture Press, Wuhan, China, 701–706.
Navarro, J. M., Perez-Perez, J. G., Romero, P., and Botia, P. (2010). “Analysis of the changes in quality in mandarin fruit, produced by deficit irrigation treatments.” Food Chem., 119(4), 1591–1596.
Peng, Y. H., and Rabe, E. (1998). “Effect of differing irrigation regimes on fruit quality, yield, fruit size and net CO2 assimilation of” Mihowase” Satsuma.” J. Hortic. Sci. Biotechnol., 73(4), 229–237.
Rapisarda, P., Fanella, F., and Maccarone, E. (2000). “Reliability of analytical methods for determining anthocyanins in blood orange juices.” J. Agric. Food Chem., 48, 2249–2252.
Rapisarda, P., Fanella, F., and Maccarrone, E. (2000). “Reliability of analytical method for determining anthocyanins in blood orange juice.” J. Agric. Food Chem., 48(6), 2249–2252.
Rapisarda, P., and Intelisano, S. (1996). “Sample preparation for vitamin C analysis of pigmented orange juices.” Ital. J. Food Sci., 8, 251–256.
Rapisarda, P., Lo Bianco, M., Pannuzzo, P., and Timpanaro, N. (2008). “Effect of cold storage on vitamin C, phenolics and antioxidant activity of five orange genotypes [Citrus sinensis (L.) Osbeck].” Postharvest Biol. Technol., 49(3), 348–354.
Rapisarda, P., and Russo, G. (2000). “Fruit quality of five Tarocco selections grown in Italy.” Proc., Int. Soc. Citricult, Vol. 2, Univ. of California, Riverside, CA, 1149–1153.
Roccuzzo, G., et al. (2012). “Assessing nutrient uptake by field-grown orange trees.” Eur. J. Agron., 41, 73–80.
Romero, P., et al. (2006). “Deficit irrigation and rootstock: Their effects on water relations, vegetative development, yield, fruit quality and mineral nutrition of Clemenules mandarin.” Tree Physiol., 26(12), 1537–1548.
Ruiz-Sanchez, M. C., Domingo, R., and Castel, J. R. (2010). “Review. Deficit irrigation in fruit trees and vines in Spain.” Span. J. Agric. Res., 8(S2), 5–20.
Shackel, K., et al. (1997). “Plant water status as an index of irrigation needs in deciduous fruit trees.” Hortic. Technol., 7, 23–29.
Shalhevet, J., and Levy, Y (1990). “Citrus trees.” Irrigation of agricultural crops, A. R. Stewart and D. R. Nielsen, eds., American Society of Agronomy, Crop Science Society of America, and Soil Science Society of America, Madison, WI, 951–986.
Shalhevet, J., Mantell, A., Bielorai, H., and Shimshi, H. (1979). “Irrigation of field and orchard crops under semi-arid conditions.” III C, No. 1, International irrigation information centre, Israel, 124.
Stagno, F., Giuffrida, A., Intrigliolo, F., Germanà, C., and Continella, A. (2011). “Prediction of water status by means of an empirical model in orange bearing trees.” Acta Hortic., 889, 339–345.
Williamson, J. G., and Coston, D. C. (1990). “Planting method and irrigation rate influence vegetative and reproductive growth of peach planted at high density.” J. Am. Soc. Hortic. Sci., 115, 207–212.
Zekri, M., Obreza, T. A., and Koo, R. (2009). “Irrigation, nutrition, and citrus fruit quality.”, Univ. of Florida, Lake Alfred, FL.

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Go to Journal of Irrigation and Drainage Engineering
Journal of Irrigation and Drainage Engineering
Volume 141Issue 10October 2015

History

Received: Jun 4, 2014
Accepted: Feb 6, 2015
Published online: Mar 20, 2015
Discussion open until: Aug 20, 2015
Published in print: Oct 1, 2015

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Fiorella Stagno, Ph.D. [email protected]
Consiglio per la Ricerca e la Sperimentazione in Agricoltura, Centro di ricerca per l’Agrumicoltura e le Colture Mediterranee (CRA-ACM), Corso Savoia 190, 95124 Acireale (CT), Italy. E-mail: [email protected]
Francesco Intrigliolo [email protected]
Senior Researcher, Consiglio per la Ricerca e la Sperimentazione in Agricoltura, Centro di ricerca per l’Agrumicoltura e le Colture Mediterranee (CRA-ACM), Corso Savoia 190, 95124 Acireale (CT), Italy. E-mail: [email protected]
Simona Consoli [email protected]
Associate Professor, Dipartimento Agricoltura, Alimentazione e Ambiente (Di3 A), Univ. of Catania, Via S. Sofia, 100, 95123 Catania, Italy (corresponding author). E-mail: [email protected]
Alberto Continella [email protected]
Researcher, Dipartimento Agricoltura, Alimentazione e Ambiente (Di3 A), Univ. of Catania, Via Valdisavoia 5, 95123 Catania, Italy. E-mail: [email protected]
Giancarlo Roccuzzo [email protected]
Researcher, Consiglio per la Ricerca e la Sperimentazione in Agricoltura, Centro di ricerca per l’Agrumicoltura e le Colture Mediterranee (CRA-ACM), Corso Savoia 190, 95124 Acireale (CT), Italy. E-mail: [email protected]

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