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Tytuł artykułu

Impact of growth inhibitor Bercema on shoots regrowth of perennial ryegrass and cocksfoot

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In a pot experiment conducted in a greenhouse, the effect of CCC Bercema growth inhibitor to reduce vegetative shoot growth of perennial ryegrass and cocksfoot was studded. The experiment was set up in triplicate. Growth regulator was applied once, in a form of an aqueous solution. The following experimental objects were specified: control object, Bercema with a concentration of 10%, 20% and 30%. Ten measurements were performed every 3 days. The study was conducted under conditions of 12-hour artificial light daily. The results were statistically analyzed using two-factorial variance analysis . It was found that the greatest shoot growth reduction of ryegrass due to the highest inhibitor concentration (B- 30%), but for cocksfoot under the influence of the minimal concentration (B- 10%), compared to the control object. It has been noted that cocksfoot is more sensitive to the applied growth regulator, resulted in significantly greater inhibition of shoot regrowth than for ryegrass. In the experiment with the perennial ryegrass significant differences in the growth of shoots were found under the influence of inhibitor application at a concentration of 30%, compared to the control object. In the case of cocksfoot, all the concentration increases of Bercema inhibitor significantly differentiated the shoots regrowth.
Rocznik
Strony
108--111
Opis fizyczny
Bibliogr. 13 poz., rys.
Twórcy
  • Department of Grassland and Green Areas Creation, Siedlce University of Natural Sciences and Humanities, B. Prusa 14, 08-110 Siedlce, Poland
autor
  • Department of Grassland and Green Areas Creation, Siedlce University of Natural Sciences and Humanities, B. Prusa 14, 08-110 Siedlce, Poland
  • Department of Grassland and Green Areas Creation, Siedlce University of Natural Sciences and Humanities, B. Prusa 14, 08-110 Siedlce, Poland
autor
  • Department of Grassland and Green Areas Creation, Siedlce University of Natural Sciences and Humanities, B. Prusa 14, 08-110 Siedlce, Poland
autor
  • Department of Grassland and Green Areas Creation, Siedlce University of Natural Sciences and Humanities, B. Prusa 14, 08-110 Siedlce, Poland
Bibliografia
  • 1. Adams R.E., Kerber K., Pfister K., Weiler E.W. 1992. Studies on the action of a new growth re¬tardant CGA 163’935 (Cimectacarb). Progress in plant growth regulation. [In:] Proceedings of the 14th International Conference on Plant Growth Substances (C. Karssen., L. Van Loon., D. Vreug-denhill, eds). Dordrecht, Netherlands, Kluwer Academic Publishers: 818-827.
  • 2. Bragg P., Rubino P., Henderson F.K.G., Fielding, W.J., Cannel R.Q. 1984. A comparison of the root and shoot growth of winter barley and winter wheat, and the effect of an early application of chloromequat. J. Agri. Sci., Cambridge 103: 257-264.
  • 3. Feng Y., Stoeckel D.M., von Santen E., Walker R.H. 2002. Effects of subsurface aeration and trinexapec-ethyl application on soil microbial communities in a creeping bentgrass putting green. Biol. Fertil. Soils 36, 456-460.
  • 4. Grzyś E., Demczuk A., Sacała E., Kulczycki G. 2012. Effect of retardants on blade growth and content of microelements (Fe, Mn, Zn, Cu) in the grain and stalks of spring wheat cultivars. Zesz. Nauk. UP Wrocław, Rolnictwo II, 588, 65-73.
  • 5. Jankiewicz L.S. 1997. Retardanty i niektóre inne syntetyczne inhibitory wzrostu oraz wybrane substancje modyfikujące wzrost. [In:] Regulatory wzrostu i rozwoju roślin. Jankiewicz L.S. (ed.) PWN, Warszawa: 108-123.
  • 6. Jankowski K., Czeluściński W., Jankowska J., Kolczarek R., Sosnowski J. 2012. The influence of the growth regulator trinexapac-ethyl on the regrowth rate of lawn grasses. Acta Sci. Pol. Hortorum Cultus 11(4), 67-76.
  • 7. Jankowski K, Kolczarek R, Jankowska J, Sosnowski J, Wiśniewska-Kadżajan B, Truba M, Kaczorek A. 2013. Effect of different concentrations of the Flordimex inhibitor on the shoot growth of perennial ryegrass and cocksfoot. Environmental Protection and Natural Resources. Vol. 24, No. 4(57): 1-4.
  • 8. Koziara W., Czajka M., Sobiech S. 1993. Wpływ deszczowania, nawożenia azotowego i stosowania Bercemy CCC na plonowanie pszenżyta jarego. Biologia i uprawa pszenżyta, Międzyzdroje, p. 31.
  • 9. Malinowska E., Kalembasa S. 2012. The yield and content of Ti, Fe, Mn, Cu in celery leaves (Apium graveolens l. var. dulce mill. pers.) as a result of Tytanit application. Acta Sci. Pol., Hortorum Cultus, 11(1), 69-80.
  • 10. Mikos-Bielak M. 2005. Egzogenne regulatory wzrostu w uprawie ziemniaka. Annales UMCS, Sec. E, 6, 281-292.
  • 11. Silva T.R.B., Schmidt R., Silva C.A.T., Nolla A., Faver F., Poletine J.P. 2011. Effect of Trinex –apac-ethyl and nitrogen fertilization on wheat growth and yield. J. Food Agric. Environ. 9(1), 596-598.
  • 12. Stachecki S., Praczyk T. 2004. Biologiczna aktywność chlorku chlormekwatu (CCC) stosowanego z adiuwantami w pszenicy ozimej. Post. Ochr. Roślin 44(1), 414-422.
  • 13. Starczewski K., Affek-Starczewska A., Jankowski K. 2011. Wpływ wybranych regulatorów wzrostu na kolorystykę muraw mieszankowych na bazie życicy trwałej. Łąkarstwo w Polsce 14, 137-145.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1acea923-c622-41cd-91c1-4527e06ada00
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