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Scientific Papers Series B Horticulture

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Table 3. Element content of the berry skins of ‘Cserszegi fszeres’ grafted on different rootstocks (n=3) (2011, Pallag)ROOTSTOCKS B (mg kg -1 ) Cu (mg kg -1 ) Fe (mg kg -1 ) Mn (mg kg -1 ) Zn (mg kg -1 )’AxR 143B M et de G’ 31.9 e ±0.4 1.93 c ±0.03 16.8 b ±0.2 8.07 d ±0.09 3.66 cd ±0.14’V. BERLANDIERI’ 20.2 b ±0.6 2.64 e ±0.05 30.7 f ±0.6 13.1 g ±0.1 8.53 h ±0.12’BxR SZ 157 Pécs’ 18,4 a ±0,2 4.77 h ±0.15 23.2 d ±0.7 3.78 a ±0.16 2.14 a ±0.04’BxR S.O.4’ 18.0 a ±0.3 3.03 f ±0.06 21.3 c ±0.3 5.76 b ±0.14 3.49 c ±0.08’BxR T5C Eger’ 19.0 ab ±0.6 1.27 a ±0.05 11.5 a ±0.1 7.47 cd ±0.16 2.25 a ±0.04’BxR T.G. 5.A.5.’ 22.0 c ±1.1 2.16 cd ±0.08 27.5 e ±1.0 7.69 cd ±0.49 4.31 de ±0.29’BxR T.8.B.’ 26.4 d ±1.0 3.09 f ±0.08 30.3 f ±0.3 12.0 f ±0.4 4.57 f ±0.10’BxR T.K. 5.BB’ 18.1 a ±0.1 2.59 e ±0.05 31.8 f ±0.3 10.2 e ±0.2 4.99 f ±0.13’BxR K.125 AA’ 24.9 d ±0.1 3.55 g ±0.08 36.7 g ±0.3 12.5 fg ±0.4 4.63 ef ±0.17’R. SAUVAGE’ 32.0 e ±0.2 2.30 d ±0.02 45.0 h ±0.9 14.0 h ±0.1 4.95 f ±0.08’R. SELECTA’ 19.4 ab ±0.3 1.59 b ±0.02 24.3 d ±0.6 12.9 g ±0.5 6.51 g ±0.22’R. TOMENTOSA’ 22.7 c ±0,3 2.07 c ±0.06 23.0 d ±0.5 6.92 c ±0.22 3.01 b ±0.10Different letters indicate significant differences between rootstocks regarding the element (P < 5%)CONCLUSIONSIn this research work berry skin B-, Cu-, Fe-,Mn-, and Zn- concentration data have beenprocessed.Based on our examination it could be stated,that there are significant differences in mineralcontent of the berry skins of ‘Cserszegifszeres’ grafted on different rootstocks inregard to the listed elements. The highestrelative standard deviation was experienced inthe case of zinc, while the lowest relativestandard deviation was shown in the case onboron. Differences between experiencedconcentrations can either be due to the geneticfactor, thus to the different rootstocks, or toclimatological factors of the vintage, thatgreatly affect mineral status of the vine (Szkeand Kiss, 1987; Csikászné, 2008). Forevaluation of genetic and climatological(vintage) factors data of many years’experiment is to be collected.Based on our results, it could supposed, that’Riparia Sauvage’ could be an advantageousrootstock, since the highest values on B, Fe andMn were measured in berry skin samples of’Cserszegi fszeres’ grafted on this rootstockvariety. From the point of the highest Cuconcentration ’Berlandieri x Riparia Szilágyi157 Pécs’, while in respect to the Znconcentration ’Vitis Berlandieri’ could behighlighted.ACKNOWLEDGEMENTSThe research work was supported by theTÁMOP 4.2.1./B-09/1/KONV-2010-0007 and59TÁMOP-4.2.2/B-10/1-2010-0024 projects. Theprojects were co-financed by the EuropeanUnion and the European Social Fund.REFERENCESAngeli L., Horváth J., Hullai L., 1959. Szltermesztés,In: Rajman J. (ed.) Kertészeti Ismeretek.,Mezgazdasági kiadó, Budapest, p. 322-323.Balogh I., 1991. Szltermesztési és BorászatiEnciklopédia, Debreceni Agrártudományi Egyetem,Debrecen, p. 11.Balogh I., 1993. Fontosabb szlfajtáink jellemzése,Debreceni Agrártudományi Egyetem, Debrecen, p.33.Bényei F., Lrincz A. 1999. Szlfajtáink, In: Bényei F.,Lrincz A., Sz. Nagy L. Szltermesztés.,Mezgazda kiadó, Budapest, p. 196-199.Candolfi-Vasconcelos M.C., Castagnoli S., Baham J.1997. Grape Rootstocks and Nutrient UptakeEfficiency. Annual Meeting of the OregonHorticultural Society. http://berrygrape.org/graperootstocks-and-nutrientuptake-efficiency/Csikászné K. A., 2008. A termés mennyiség, a termésminség és a levelek tápelem tartalmánakösszefüggése különféle alanyokra oltott Cabernetsauvignon szlfajtán, Doktori Értekezés, PannonEgyetem Georgikon Mezgazdaságtudományi Kar,Keszthely, p. 9., p. 18-28.Erdss T., 1973. A szl és a must kémiai összetétele,In: Kádár Gy. (ed.) Borászat., Mezgazdasági kiadó,Budapest, p. 178-179.Ferenczi S., 1966. A szl, a must és a bor kémiája.Mezgazdasági kiadó, Budapest, p. 32.Galet P., 1998. Grape Varieties and Rootstock Varieties.Oenoplurimedia, Chaintre, France

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