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- W2806046500 abstract "Received: 2018-01-29 | Accepted: 2018-02-22 | Available online: 2018-03-31 https://doi.org/10.15414/afz.2018.21.01.06-10 The aim of this experiment was to compare find out of the changes of assimilation pigments content of turf Festuca spp. leaves after application of different nutrition forms under nonâirrigated conditions. In period April 2012 â May 2015 (without June 2014 and February 2015) experiment was carried out in warm and dry conditions in area of Nitra (Slovak Republic). Concentration of assimilation pigments (chlorophyll a , chlorophyll b and total carotenoids) was determined spectrophotometrically. The experiment was included 10 treatments: 1. Without fertilization, 2. Saltpetre with dolomite, superphosphate, potassium salt, 3. Turf fertilizer NPK 15-3-8 (+ 3MgO + 0.8 Fe + 18S), 4. Slow release fertilizer NPK 14-5-14 (+ 4CaO + 4MgO + 7S), 5. Controlled release fertilizer NPK (S) 13-9-18 (+ 6S), 6. Organic fertilizer NPK 5-1-1, 7. Organic fertilizer NPK 3-2-1 and 3 mycorrhizal preparations. The use of inorganic and organic fertilizers resulted in an increase chlorophyll a , b content and total chlorophyll in leaves Festuca spp. More pronounced increase in chlorophyll content was found by the application of the Turf fertilizer. Application of this fertilizer has a statistically significant effect on content of chlorophyll a + b than in the other evaluated treatments without turfs fertilized by Controlled release fertilizer and Organic fertilizer NPK 5-1-1. A statistically significant increase in the total carotenoids concentration was observed after the use of Saltpetre with dolomite, superphosphate, potassium salt and Turf fertilizer as compared to the non-fertilized control. Keywords: turf, Festuca spp., fertilizers application, chlorophyll, total carotenoids References ALDOUS, D. E. (2011) International Turf Management. New York: REaPP. ALTISSIMO, A. and PESERICO, L. (2008) Effects of different n-sources on turf clippings fresh weight yield and turf quality. In 1st European turfgrass society conference. Pisa (Italy), 19thâ20th May 2008, Italy: Uliva Foa, pp. 41â42. BELL, G. E. et al. (2004) Optical sensing of turfgrass chlorophyll content and tissue nitrogen. In HortScience [Online],vol. 39, no. 5, pp. 1130â1132. Retrieved 2018-01-21 from http://hortsci.ashspublications.org/content/39/5/1130.full.pdf+html BEARD, J. B. (1973) Turfgrass: Science and culture. PretinceHall: New Jersey. BILGILI, U. and AÃIKGÃZ, E. (2007) Effect of nitrogen fertilization on quality characteristics of four turf mixtures under different wear treatments. In Journal of Plant Nutrition, vol. 30, no. 7, pp. 1139â1152. Retrieved 2018-01-15 from http:// www.tandfonline.com/doi/full/10.1080/01904160701394600 CAGAÅ , B. et al. (2011) Establishing and careing landscape turfs and grasses areas: certified methodology. Brno: Association of Planting and Maintenance of Green. GREGOROVÃ, H. and KOVÃR, P. (2010) Tall fescue â grass to dry conditions. In Proceedings of lectures VIII. Congress SPpPLPaVv by SAV Nitra 16. June 2010. Nitra: SPU, pp. 28â35 (in Slovak). HEJDUK, S. (2012) Module Plant nutrition (Education for better greenery around us â Script course modules) [Online]. RožÅov pod RadhoÅ¡tÄm: SÅ¡ZaP (in Czech) Retrieved 2018-01-10 from http://docplayer.cz/2333203-Vzdelavani-pro-lepsi-zelenkolem-nas.html HRABÄ, F. et al. (2009) Turfs for garden, landscape and sport. Olomouc: Vydavatelstvà Ing. Petr BaÅ¡an (in Czech). HRIC, P. et al. (2016a) The dynamics of the assimilation pigments content of turf fertilized by various forms of fertilizers. In Agrochemistry [Online], vol. 20, no. 1, pp. 3â7 (in Slovak). Retrieved 2018-01-10 from http://agrochemia.uniag.sk/pdf/ agrochemia-2016-01.pdf HRIC, P. et al. (2016b). The comparison of organic and inorganic fertilizers influence on selected indicators of turf growth-production process. 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In International Journal of Biosciences, vol. 5, no. 9, pp. 256â265. DOI: https://doi.org/10.12692/ijb/5.9.256-265 LICHTENTALER, H K. (1987). Chlorophylls and carotenoids: Pigments of photosynthetic biomembranes. In Method in Enzymology, vol. 148, pp. 350â382. MAHMOUD, A. W. M., EL-ATAR, A. B. and MAHMOUD, A. A. (2017) Economic evaluation of nano and organic fertilisers as an alternative source to chemical fertilisers on Carum carvi L. plant yield and components. In Agriculture, vol. 63, no. 1, pp. 33â49. DOI: https://doi.org/10.1515/agri-2017-0004 MASAROVIÄOVÃ, E. et al. (2000) Photosynthesis, biomass partioning and peroxisomicne A1 production of Karwinska species in response to nitrogen supply. In Physiology Plant, 108, pp. 300â306. DOI: https://doi. org/10.1034/j.1399-3054.2000.108003300.x MOORE, R. W., CHRISTIANS, N. E. and AGNEW, M. L. (1996) Response of three Kentucky bluegrass cultivars to sprayable nitrogen fertilizer programs. In Crop Science, vol. 36, pp. 1296â1301. DOI: https://doi.org/10.2135/ cropsci1996.0011183X003600050037x PESSARAKLI, M. (2007) Handbook of Turfgrass Management and Physiology. New York: CRC Press. VAFADAR, F., AMOOAGHAIE, R. and OTROSHY, M. (2013) Effects of plants-growth promoting rhizobacteria and arbuscular mycorrhizal fungus on plant growth, stevioside, NPK, and chlorophyll content of Stevia rebaudiana. In Journal of Plant Interactions, vol. 9, no. 1, pp. 128â136. DOI: https://doi.org/ 10.1080/17429145.2013.779035 WEHNER, D. J., HALEY. J. E. and MARTIN, D. L. (1988) Late fall fertilization of Kentucky bluegrass. In Agronomy Journal, vol. 80, no. 3, pp. 464â471. XU, Q. et al. (1995) Functional and structural injury to photosynthesis in wheat by high temperature during maturation. In Enviromental and Experimental Botany, vol. 35, no. 1, pp. 43â54. DOI: https://doi. org/10.1016/0098-8472(94)00030-9" @default.
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- W2806046500 title "The changes of the assimilation pigments content of turf Festuca spp. leaves after application of different nutrition forms" @default.
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