Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
The purpose of the studies was to determine the effects of Stymjod, a growth regulator, on blue fescue (Festuca glauca) development and morphological characteristics. The experiment was an attempt to determine the effect of different concentrations of Stymjod on the leaf greenness index, the number and length of leaf blades, the length of roots, and the dry weight of roots and leaves. The plant used in the experiment, Festuca glauca, was grown in pots. The following three treatment combinations were used: spraying plants with distilled water only; with Stymjod at a concentration of 2% in the spraying fluid; with Stymjod at a concentration of 4%. Spraying was carried out four times at weekly intervals. It was found that the 2% concentration of Stymjod in the solution significantly improved most morphological. Festuca glauca treated with Stymjod was characterized by better efficiency of the photosynthetic apparatus and photosynthetic activity.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
72--78
Opis fizyczny
Bibliogr. 25 poz., tab.
Twórcy
autor
- Faculty of Agrobioengineering and Animal Husbandry, University of Natural Sciences and Humanities in Siedlce, ul. Prusa 14, 08-110 Siedlce, Poland
autor
- Faculty of Agrobioengineering and Animal Husbandry, University of Natural Sciences and Humanities in Siedlce, ul. Prusa 14, 08-110 Siedlce, Poland
Bibliografia
- 1. Adamczewski K., Matysiak K. 2009. Regulatory wzrostu i rozwoju roślin – kierunki badań w Polsce i na świecie. Postępy w Ochronie Roślin, 49(4), 1810–1814. (in Polish)
- 2. Arnon D.J., Allen M.B., Whatley F. 1956. Photosynthesis by isolated chloroplast. IV General concept and comparison of three photochemical reactions. Biochimica et Biophysica Acta, 20, 449–461.
- 3. Barciak A., Omiecka J., Smagorzewska W. 2007. Rośliny ozdobne w architekturze krajobrazu cz. II, HORTPRESS Sp. Z o. o., Warszawa, 199–200. (in Polish)
- 4. Burghardt M., Riederer M. 2006. Cuticular transpiration, In: Biology of the Plant Cuticle (Eds.) Riederer M., Müller C.), Annual Plant Reviewes, Blackwell Publishing, 23, 292–307.
- 5. Dernoeden P.H. 2000. Tolerance of four Festuca species to ethofumesate and prodiamine Hort Science, 35(6), 1170–1173.
- 6. Gaurilčikienė I., Supronienė S., Ronis A. 2008. The impact of the biological agent Biojodis on the incidence of pathogenic fungi in winter wheat and spring barley. Zemdirbyste-Agriculture, 95(3), 406–414.
- 7. Grzesik M., Janas R., Romanowska-Duda R. 2018. The usefullness of nano organic-mineral fertilizer stymjod in intensification of growth, physiological activity and yield of the Jerusalem artichoke biomass. Renevable Energy Sources: Engineering, Technology, Innovation: ICORES, 332–337.
- 8. Ledwożyw-Smoleń I., Sylwester Smoleń S., Rożek S. 2011. Effect of various methods of application on iodine accumulation and nutritional value of lettuce cultivated in hydroponics. Environmental Protection And Natural Resources, 48, 22–130.
- 9. Li K., Li H., Zhao Y. 2010. Effects of NaCl stress on two blue fescue varieties (Festuca glauca). Front. Agric. China. 4, 96–100. DOI: 10.1007/s11703–009–0079-x
- 10. Lichtenthaler H.K., Wellburn A.R. 1983. Determinations of total carotenoids and chlorophyll a and b of leaf extracts in different solvents. Biochemical Society Transactions, 11, 591–592.
- 11. Netto A.T., Campostrini E., de Oliveira J.G., Bressan-Smith R.E. 2005. Photosynthetic pigments, nitrogen, chlorophyll a fluorescence and SPAD-502 readings in coffee leaves. Scientia Horticulturae, 104, 199–209.
- 12. Ostapets T. 2020. Comparative characteristics of main morphological indication and type of inheritance of leaf plate color in species Festuca glauca, Festuca rubra, Festuca ovina. Norwegian Journal of development of the International Science, 51, 15–17.
- 13. Pekarskas J. 2005. Biojodžio panaudojimas ekologinių žieminių kviečių ir vasarinių miežių grūdų apvėlimui. – LŽŪU. (in Lithuanian)
- 14. Piotrowski K., Romanowska-Duda Z., Grzesik M. 2016. How Biojodis and Cyanobacteria alleviate the negative influence of predicted environmental constraints on growth and physiological activity of corn plants. Polish Journal of Environmental Studies, 25(2), 741–751.
- 15. Romanowska-Duda Z., Grzesik M., Janas R. 2018. Stimulatory impact of Stymjod on sorghum plant growth, physiological activity and biomass production in field conditions. In: Mudryk K., Werle S. (reds) Renewable Energy Sources: Engineering, Technology, Innovation. Springer Proceedings in Energy. Springer, Cham. DOI: 10.1007/978–3-319–72371–6_24
- 16. Romanowska-Duda Z., Grzesik M., Janas R. 2019. Maximal efficiency of PSII as a marker of sorghum development fertilized with waste from a biomass biodigestion to methane. Frontiers in Plant Science, 9, 1920.
- 17. Romanowska-Duda Z., Grzesik M., Janas R. 2020. The usefulness of nano-organic-mineral fertilizer Stymjod in intensification of growth, physiological activity and yield of the jerusalem artichoke biomass. In: Wróbel M., Jewiarz M., Szlęk A. (reds) Renewable Energy Sources: Engineering, Technology, Innovation. Springer Proceedings in Energy. Springer, Cham. DOI: 10.1007/978–3-030–13888–2_33
- 18. Smoleń S. 2009. The effect of iodine and nitrogen fertilization on the mineral composition of the carrot. Environmental Protection And Natural Resources, 40, 270–277.
- 19. Sosnowski J., Jankowski K., Truba M., Novak J., Zdun E., Skrzyczyńska J. 2020. Morpho-physiological effects of Stymjod foliar application on Dactylis glomerata L., Agronomy Research, 18(S1), 1036–1045.
- 20. Sosnowski J., Toczyska E., Truba M. 2019. Morphological effects of Stymjod foliar application on Medicago x varia T. Martyn. Journal of Ecological Engineering, 20(8), 184–191.
- 21. Wierzbińska J., Smoleń S., Sady W. 2011. Effect of iodine from on the efficiency of its uptake, yield and nitro gen metabolism of tomato plants cultivated In net system. Episteme, 12, 359–364.
- 22. Xiaohuan Y., Mengmeng G., Wenjun T., Xuejun Y., Juying W. 2011. Growth of Calamagrostis brachytricha Steud. and Festuca glauca Lam. and estimated water savings under evapotranspiration-based deficit irrigation. The Journal of Horticultural Science and Biotechnology, 86(6), 583–588. Doi: 10.1080/14620316.2011.11512807
- 23. Yokoya N.S., Necchi O.J., Martins A.P., Gonzalez S.F., Plastino E.M. 2007. Growth responses and photosynthetic characteristics of wild and phycoerythrin deficient strains of Hypnea musciformis (Rhodophyta). Journal of Applied Phycology, 19, 197–205.
- 24. Zenkteler M., Nitzsche W. 1984. Wide hybridization experiments in cereals. Theoret. Appl. Genetics, 68, 311–315. DOI: 10.1007/BF00267883
- 25. Zhao L.-S., Su H.N., Li K., Xie B.B., Liu L.N., Zhang X.Y., Chen X.L., Huang F., Zhou B.C., Zhang Y.Z. 2016. Supramolecular architecture of photosynthetic membrane in red algae in response to nitrogen starvation. Biochimica et Biophysica Acta, 1857, 1751–1758.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c2b55ed1-32e5-4f88-8acb-9c944de3d03a