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Growth Response Of Container Grown Japanese Azalea And Euonymus And Concentration Of Nitrates And Phosphates In The Runoff Water Under Different Irrigation And Fertilization Cover

Growth Response Of Container Grown Japanese Azalea And Euonymus And Concentration Of Nitrates And Phosphates In The Runoff Water Under Different Irrigation And Fertilization

Open Access
|Sep 2015

References

  1. Aendekerk T. 1997. Fertilization guide for nursery crops. Research Station for Nursery Crops, Boskoop, Netherlands, Boomteeltpraktijkonderzoek, 154 p.
  2. Beeson R.C., Brooks J. 2008. Evaluation of a model based on reference crop evapotranspiration (ETo) for precision irrigation using overhead sprinklers during nursery production of Ligustrum japonica. Acta Horticulturae 792: 85-90.10.17660/ActaHortic.2008.792.7
  3. Bilderback T.E. 2002. Water management is key in reducing nutrient runoff from container nurseries. HortTechnology 12: 541-544.10.21273/HORTTECH.12.4.541
  4. Breś W., Golcz A., Komosa A., Kozik E., Tyksiński W. 1997. Nawożenie roślin ogrodniczych. cz. I. Diagnostyka potrzeb nawozowych. AR Poznań, pp. 62-74. [in Polish]
  5. Cabrera R.I. 2003. Nitrogen balance for two container-grown woody ornamental plants. Scientia Horticulturae 97: 297-308. DOI: 10.1016/S0304-4238(02)00151-6.10.1016/S0304-4238(02)00151-6
  6. Colangelo D.J., Brand M.H. 1997. Effect of split fertilizer application and irrigation volume on nitrate-nitrogen concentration in container growing area soil. Journal of Environmental Horticulture 15: 205-210.10.24266/0738-2898-15.4.205
  7. Colangelo D.J., Brand M.H. 2001. Nitrate leaching beneath a containerized nursery crop receiving trickle or overhead irrigation. Journal of Environmental Quality 30: 1564-1574. DOI: 10.2134/jeq2001.3051564x.10.2134/jeq2001.3051564x11577861
  8. Fare D., Gilliam C.H., Keever G.J. 1992. Monitoring irrigation at container nurseries. HortTechnology 2: 75-78.10.21273/HORTTECH.2.1.75
  9. Fernández-Escobar R., Benlloch M., Herrera E., García-Novelo J.M. 2004. Effect of traditional and slow-release N fertilizers on growth of olive nursery plants and N losses by leaching. Scientia Horticulturae 101: 39-49. DOI: 10.1016/j.scienta.2003.09.008.10.1016/j.scienta.2003.09.008
  10. Fulcher A.F, Buxton J.W., Geneve R.L. 2012. Developing a physiological-based, on-demand irrigation system for container production. Scientia Horticulturae 138: 221-226. DOI: 10.1016/j.scienta.2012.02.030.10.1016/j.scienta.2012.02.030
  11. Grant O., Davies M., Longbottom H., Atkinson C. 2009. Irrigation scheduling and irrigation systems: optimising irrigation efficiency for container ornamental shrubs. Irrigation Science 27: 139-153. DOI: 10.1007/s00271-008-0128-x.10.1007/s00271-008-0128-x
  12. Groves K.M., Warren S.L., Bilderback T.E. 1998. Irrigation volume, application, and controlled-release fertilizer II. Effect on substrate solution nutrient concentration and water efficiency in containerized plant production. Journal of Environmental Horticulture 16: 182-188.
  13. GUS 2012. The National Agricultural Census 2010 – Horticultural crops. Warsaw, Poland, 133 p.
  14. Juntunen M.L., Hammar T., Rikala R. 2003. Nitrogen and phosphorus leaching and uptake by container birch seedlings (Betula pendula Roth) grown in three different fertilizations. New Forests 25: 133-147. DOI: 10.1023/A:1022686402578.10.1023/A:1022686402578
  15. Karam N.S., Niemiera A.X. 1994. Cyclic sprinkler irrigation and pre-irrigation substrate water content affect water and N leaching from containers. Journal of Environmental Horticulture 12: 198-202.10.24266/0738-2898-12.4.198
  16. Marfà O., Lemaire F., Cáceres R., Giuffrida F., Guérin V. 2002. Relationships between growing media fertility, percolate composition and fertigation strategy in peat-substitute substrates used for growing ornamental shrubs. Scientia Horticulturae 94: 309-321. DOI: 10.1016/S0304-4238(01)00383-1.10.1016/S0304-4238(01)00383-1
  17. Marosz A. 2013. Changes in ornamental nursery production following Polish integration with the European Union. Annals of Warsaw University of Life Sciences – SGGW, Horticulture and Landscape Architecture 34: 51-60.
  18. Matysiak B., Bielenin M. 2005. Effect of nutrient solution composition on growth, flowering, nutrient status and cold hardiness of Rhododendron yakushimanum grown on ebb-and-flow benches. European Journal of Horticultural Science 70: 35-42.
  19. Merhaut D.J., Blythe E.K., Newman J.P., Albano J.P. 2006. Nutrient release from controlled-release fertilizers in acid substrate in a greenhouse environment: I. Leachate electrical conductivity, pH, and nitrogen, phosphorus, and potassium concentrations. HortScience 41(3): 780-787.10.21273/HORTSCI.41.3.780
  20. Michałojć Z., Koter M. 2012. Effect of different fertilization on the growth and nutrition of azalea (Rhododendron L.) Acta Agrobotanica 65(4): 123-132. DOI: 10.5586/aa.2012.029.10.5586/aa.2012.029
  21. Mills H.A., Jones J.B., Wolf B. 1996. Plant analysis handbook II: A practical sampling, preparation, analysis, and interpretation guide. 422 p.
  22. Monaghan J. 2004. Establishing optimal rates of CRF nutrition. HDC Final report HNS, 43 p.
  23. Narváez L., Cáceres R., Marfà O. 2013. Effect of different fertilization strategies on nitrogen balance in an outdoor potted crop of Osteospermum ecklonis (DC.) Norl. ‘Purple Red’ under Mediterranean climate conditions. Spanish Journal of Agricultural Research 11(3): 833-841. DOI: 10.5424/sjar/2013113-3764.10.5424/sjar/2013113-3764
  24. Newman J.P., Albano J.P., Merhaut D.J., Blythe E.H. 2006. Nutrient release from controlled-release fertilizers in a neutral-pH substrate in an outdoor environment: I. Leachate electrical conductivity, pH, and nitrogen, phosphorus, and potassium concentrations. HortScience 41(7): 1674-1682.10.21273/HORTSCI.41.7.1674
  25. Newman J.P., Kabashima J.N., Merhaut D., Haver D.L., Gan J., Oki L.R. 2014. Controlling runoff and recycling water, nutrients, and waste. In: Newman J.P. (Ed.), Container nursery production and business management manual. UCANR Publications, pp. 95-118.
  26. Oliet J., Planelles R., Segura M.L., Artero F., Jacobs D.F. 2004. Mineral nutrition and growth of containerized Pinus halepensis seedlings under controlled-release fertilizer. Scientia Horticulturae 103: 113-129. DOI: 10.1016/j.scienta.2004.04.019.10.1016/j.scienta.2004.04.019
  27. Pinto J.R., Chandler R.A., Dumroese K.R. 2008. Growth, nitrogen use efficiency, and leachate comparison of subirrigated and overhead irrigated pale purple coneflower seedlings. HortScience 43(3): 897-901.10.21273/HORTSCI.43.3.897
  28. Sammons J.D., Struve D.K. 2010. The effects of near-zero leachate irrigation on growth and water use efficiency and nutrient uptake of container grown bald-cypress (Taxodium distichum (L.) Rich.) plants. Journal of Environmental Horticulture 28(1): 27-34.10.24266/0738-2898-28.1.27
  29. Sandrock D.R., Azarenko A.N., Righetti T.L. 2005. Fertilization of two container-grown woody ornamentals based on their specific nitrogen accumulation patterns. HortScience 40(2): 451-456.10.21273/HORTSCI.40.2.451
  30. Smith E.M. 1978. Foliar analysis survey of woody ornamentals. Research Circular – Ohio Agricultural Research Center 236: 30-34.
  31. Šrámek F., Dubský M. 2007. Effect of slow release fertilizers on container-grown woody plants. Horticultural Science 34(1): 35-41.10.17221/1844-HORTSCI
  32. Taylor M.D., White S.A., Chandler S.L., Klaine S.J., Whitwell T. 2006. Nutrient management of nursery runoff water using constructed wetland systems. HortTechnology 16(4): 610-614.10.21273/HORTTECH.16.4.0610
  33. Warsaw A.L., Fernandez R.T., Cregg B.M., Andresen J.A. 2009a. Water conservation, growth, and water use efficiency of container-grown woody ornamentals irrigated based on daily water use. HortScience 44(5): 1308-318.
  34. Warsaw A.L., Fernandez R.T., Cregg B.M., Andresen J.M. 2009b. Container-grown ornamental plant growth and water runoff nutrient content and volume under four irrigation treatments. HortScience 44(6): 1573-1580.10.21273/HORTSCI.44.6.1573
  35. Weatherspoon D.M., Harrell C.C. 1980. Evaluation of drip irrigation for container production of woody landscape plants. HortScience 15: 488-489.10.21273/HORTSCI.15.4.488
  36. Wilson C., Albano J.P., Mozdzen M., Riiska C. 2010. Irrigation water and nitrate-nitrogen loss characterization in Southern Florida nurseries: cumulative volumes, runoff rates, nitrate nitrogen concentrations and loadings, and implications for management. HortTechnology 20(2): 325-330.10.21273/HORTTECH.20.2.325
  37. Wilson P.C., Albano J.P. 2011. Impact of fertigation versus controlled-release fertilizer formulations on nitrate concentrations in nursery drainage water. HortTechnology 21: 176-180.10.21273/HORTTECH.21.2.176
  38. Yeager T., Wright R., Fare D., Gilliam C., Johnson J., Bilderback T., Zondag R. 1993. Six state survey of container nursery nitrate nitrogen runoff. Journal of Environmental Horticulture 11(4): 206-208.10.24266/0738-2898-11.4.206
DOI: https://doi.org/10.2478/johr-2015-0004 | Journal eISSN: 2353-3978 | Journal ISSN: 2300-5009
Language: English
Page range: 21 - 32
Submitted on: Nov 1, 2014
Accepted on: Feb 1, 2015
Published on: Sep 23, 2015
Published by: National Institute of Horticultural Research
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2015 Bożena Matysiak, published by National Institute of Horticultural Research
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.