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2018 | 17 | 4 |

Tytuł artykułu

Influence of prohexadione-calcium on vegetative growth and reproduction of ‘0900 Ziraat’ sweet cherry

Autorzy

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Effects of prohexadione-calcium (ProCa, 125 and 250 mgL–1) and ProCa + ammonium sulfate (AMS, 500 mgL–1) treatments on vegetative characteristics (shoot growth, branch diameter, trunk cross-sectional area (TCSA), canopy volume, number of flower per cm2, number of fruits per cm2) and quality parameters (fruit size, flesh firmness, color, titratable acidity and soluble solids content (SSC)) of ‘0900 Ziraat’ sweet cherry were investigated in this study. Solutions were sprayed when the shoots were just 10 cm long in 2014 and 2015. As compared to control, in 2015, TCSA decreased only with ProCa treatments (125 and 250 mgL–1) and canopy volume and shoot length decreased with all treatments. On the other hand, number of flower and fruit per cm2 significantly increased with all treatments. While there were not significant differences in fruit size, flesh firmness, color, SSC and titratable acidity values were significantly lower in 250 mgL–1 ProCa and 250 mgL–1 ProCa + AMS treatments. It was concluded that ProCa treatments could be used as an efficient tool for suppression of shoot growth and to increase the number of flower and fruits per cm2 in ‘0900 Ziraat’ sweet cherry cultivar.

Wydawca

-

Rocznik

Tom

17

Numer

4

Opis fizyczny

p.73-80,ref.

Twórcy

autor
  • Suşehri Timur Karabal Vocational School, Cumhuriyet University, Sivas, Turkey

Bibliografia

  • Asin, L., Alegre, S., Montserrat, R. (2007). Effect of Paclobutrazol and prohexadione-Ca deficit irrigation, summer pruning and root pruning on shoot growth, yield and return bloomin a ‘Blanquilla’ pear orchard. Sci. Hortic., 113, 142–148.
  • Basak, A., Rademacher, W. (2000). Growth regulation of pome and stone fruit trees by use Prohexadione-Ca. Acta Hortic., 514, 41–50.
  • Basak, A. (2004). Growth and fruiting of ‘Elstar’ apple trees in response to prohexadione calcium depending on the rootstock. Acta Hortic., 653, 117–125.
  • Byers, R.E., Carbaugh, D.H., Combs, L.D. (2004). The influence of prohexadione-calcium sprays on apple tree growth, chemical thinning, and return bloom. J. Amer. Pomol. Soc., 58, 111–117.
  • Cares, J., Sagredo, K.X., Cooper, T. (2014). Effect of prohexadione calcium on vegetative and reproductive development in sweet cherry trees. Acta Hortic., 1058, 357–363.
  • Cline, J.A., Embree, C.G., Hebb, J., Nichols, D.S. (2008). Performance of prohexadione-calcium on shoot growth and fruit quality of apple-effect of spray surfactants. Can. J. Plant Sci., 88, 165–174.
  • Costa, G., Adreotti, C., Bucchi, F., Sabatini, E., Bazzi, C., Malaguti, S., Rademacher, W. (2001). ProhexadioneCa (Apogee): growth regulation and reduced fire blight incidence in pear. HortScience, 36, 931–933.
  • Costa, G., Sabatini, E., Spinelli, F., Andreotti, C., Spada, G., Mazzini, F. (2004). Prohexadione-Ca controls performance in pear vegetative growth and cropping performance in pear. Acta Hortic., 653, 127–132.
  • Curry, E.A., Greene, D.C. (1993). CPPU influences fruit quality, fruit set, return bloom, and preharvest drop of apple. HortScience, 28, 115–119.
  • Edgerton, L.J. (1986). Some effects of Paclobutrazol on growth and fruiting of apple, peach and cherry. Acta Hortic., 179, 467–472.
  • Einhorn, T., Pasa, M., Turner, J. (2014). ‘D’Anjou’ pear shoot growth and return bloom, but not fruit size, are reduced by prohexadione-calcium. HortScience, 49, 180–187.
  • Elfving, D.C., Sugar, D., Faubion, D. (2002). Pear tree shoot growth patterns in relation to chemical control of vegetative growth with prohexadione-calcium (Apogee). Acta Hortic., 596, 711–716.
  • Elfving, D.C., Lang, G.A., Visser, D.B. (2003). Prohexadione- Ca and ethephon reduce shoot growth and increase flowering in young, vigorous sweet cherry trees. HortScience, 38, 293–298.
  • Ergle, D.R., Eaton, F.M. (1951). Sulfur nutrition of cotton. Plant Physiol., 26, 639–654.
  • Evans, J.R., Evans, R.R., Regusci, C.L., Rademacher, W. (1999). Mode of action, metabolism, and uptake of BAS 125W, Prohexadione-Ca. HortScience, 34, 1200– 1201.
  • Greene, D.W. (1999). Tree growth management and fruit quality of apple trees treated with prohexadionecalcium (BAS 125). HortScience, 34, 1209–1212.
  • Greene, D.W. (2005). Carryover effects of prohexadionecalcium on apples. HortScience., 40, 1340–1342.
  • Guak, S., Beulak, M., Looney, N.E. (2005). Controlling growth of sweet cherry trees with prohexadionecalcium: its effect on cropping and fruit quality. Acta Hortic., 667, 433–437.
  • Hawerroth, F.J., Petri, J.L., Fachinello, J.C., Herter, F.G. (2012). Reduction of winter pruning and fruit production increase in ‘’Hosui’’ pears by prohexadionecalcium use. Pesqui. Agropec. Bras., 47, 939–947.
  • Jacyna, T., Barnard, J., Wielgus, M. (2012). Immediate and residual effects of prohexadione-calcium, with or without ethephon, applied in a low-pH solution on vegetative and reproductive growth in sweet cherry trees (Prunus avium L.). J. Hortic. Sci. Biotechnol., 87, 577–582.
  • Koutinas, N., Pepelyankov, G., Lichev, V. (2010). Flower induction and flower bud development in apple and sweet cherry. Biotechnol. Equip., 24, 1549–1558.
  • Lavee, S. (1989). Involvement of plant growth regulators and endogenous growth substances in the control of alternate bearing. Acta Hortic., 239, 311–322.
  • Manríquez, D., Defilippi, B., Retamales, J. (2001). Prohexadione-Calcium, a gibberellin biosynthesis inhibitor, can reduce vegetative growth in ‘Bing’ sweet cherry trees. Acta Hortic., 667, 447–451.
  • Mutasa-Göttgens, E., Hedden, P. (2009). Gibberellin as a factor in floral regulatory networks. J. Exp. Bot. 60, 1979–1989.
  • Medjdoub, R., Val, J., Blanko, A. (2005). Inhibition of vegetative growth in red apple cultivars using prohexadione-calcium. J. Hort. Sci. Biotechnol., 80, 263–271.
  • Nurzynska-Wierdak, R., Browski, B., Dzida, K., Zawislak, G., Kowalski, R. (2013). Essential oil composition of sweet basil cultivars as affected by nitrogen and potassium fertilization. Turk. J. Agric. For., 37, 427–436.
  • Rademacher, W. (2000). Growth retardants: effects on giberellins biosynthesis and other metabolic pathwys. Ann. Rew. Plant Physiol. Plant Mol. Biol., 51, 501–531.
  • Rademacher, W., Kober, R. (2003). Efficient use of prohexadione-Ca in pome fruits. Europ. J. Hortic. Sci., 68, 101–107.
  • Rademacher, W., Saarloos, K., Van Porte, J.A.G., Forcades, F.R., Senechal, Y., Andreotti, C., Spinelli, F., Sabatini, E., Costa, G. (2004). Impact of prohexadioneca on the vegetative and reproduction performance of apple and pear trees. Eur. J. Hortic. Sci., 69, 221–228.
  • Smit, M., Meintjes, J.J., Jacobs, G., Stassen, P.J.C., Theron, K.I. (2005). Shoot growth control of pear trees (Pyrus communis L.) with prohexadione-calcium. Sci. Hortic., 106, 515–529.
  • Sugar, D., Elfving, D.C., Mielke, E.A. (2004). Effects of prohexadione-calcium on fruit size and return bloom in pear. HortScience, 39, 1305–1308.
  • Tagliavini, M., Scudellazi, D., Marangoni, B., Toselli, M. (1995). Nitrogen fertilization management in orchards to reconcile productivity and environmental aspects. Nutr. Cycl. Agroecosyst., 43, 93–102. www.hortorumcultus.actapol.net 80
  • Tromp, J. (1987). Growth and flower and bud formation in apple as affected by paclobutrazol, daminozide and tree orientation in combination with various gibberellins. J. Hort. Sci., 62, 433–440.
  • Unrath, C.R. (1999). Prohexadione-Ca: A promising chemical for controlling vegetative growth of apples. HortScience, 34, 1197–1200.
  • Webster, A.D., Quinlan, J.D. (1986). The influence of annual paclobutrazol treatments on the shoot growth, yield and fruit quality of Early Rivers sweet cherries. Acta Hortic., 179, 577–578.
  • Weinbaum, S.A., Johnson, R.S., Dejong, T.M. (1992). Causes and consequences of over fertilization in orchards. HortTechnology, 2, 112–121.
  • Wilkie, J.D., Sedgley, M., Olesen, T. (2008). Regulation of floral initiation in horticultural trees. J. Exp. Bot., 59, 3215–3228.
  • Zhang, M., Han, M., Ma, F., Shu, H. (2015). Effect of bending on the dynamic changes of endogenous hormones in shoot terminals of ‘Fuji’ and ‘Gala’ apple trees. Acta Physiol. Plant., 37, 1–9.

Typ dokumentu

Bibliografia

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