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The purpose of the study was to establish the optimal type of cuttings for the technology of root propagation of Viburnum opulus. The cuttings were harvested from native Viburnum opulus mother plants under the conditions of the nebulizing installation of the winter garden of the Podillia botanical garden of the Vinnytsia National Agrarian University. According to the research results, it was established that the rooting and further development of rooted green Viburnum opulus cuttings of the Velikoplidna variety depends on the type of cutting. Analyzing the influence of the type of cutting on the rooting of cuttings of the Velikoplidna variety in the investigated time of cutting, it should be noted the high rooting of cuttings in the variant with three nodes. A gradual decrease in the number of nodes led to a significant decrease in the rooting of green cuttings. Green cuttings of the Velikoplidna variety harvested during the period of mass flowering from the basal part of the shoot with three nodes were characterized by significantly higher rooting, number and length of the root system compared to cuttings harvested from the medial and apical parts. Green cuttings of the Velikoplidna variety harvested during the period of intensive growth of shoots from the medial part of the shoot with three nodes were characterized by significantly higher rooting, number and length of the root system compared to cuttings harvested from the basal and apical parts. Green cuttings of the Velikoplidna variety harvested during the period of slow growth of shoots from the apical part of the shoot with three nodes were characterized by significantly higher rooting, number and length of the root system compared to cuttings harvested from the basal and medial parts.
Czasopismo
Rocznik
Tom
Strony
238--248
Opis fizyczny
Bibliogr. 37 poz., rys., tab.
Twórcy
autor
- Educational and Scientific Institute of Agrotechnology and Environmental Sciences, Vinnytsia National Agrarian University, Sonyachna St., 3, UA21008 Vinnytsia, Ukraine
autor
- Educational and Scientific Institute of Agrotechnology and Environmental Sciences, Vinnytsia National Agrarian University, Sonyachna St., 3, UA21008 Vinnytsia, Ukraine
autor
- Educational and Scientific Institute of Agrotechnology and Environmental Sciences, Vinnytsia National Agrarian University, Sonyachna St., 3, UA21008 Vinnytsia, Ukraine
autor
- Educational and Scientific Institute of Agrotechnology and Environmental Sciences, Vinnytsia National Agrarian University, Sonyachna St., 3, UA21008 Vinnytsia, Ukraine
Bibliografia
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- 2. Desurmont G.A., Weston P.A. 2014. Switched after birth: Performance of the viburnum leaf beetle Pyrrhalta viburni (Paykull) after transfer to a suboptimal host plant. Insects, 5(4), 805-817. deficiency system of fertilization. Bulletin of Uman National University of Horticulture, 1, 21–26. https://doi.org/10.3390/insects5040805
- 3. Desurmont G.A., Kerdellant E., Pfingstl T., Auger P. 2019. Mites associated with egg masses of the viburnum leaf beetle Pyrrhaltaviburni (Paykull) on Viburnum tinus L. Acarologia, 59(1), 57-72. https:// doi.org/10.24349/ acarologia/20194311
- 4. Desurmont G.A., Morelon S., Benrey B. 2020. First insights into the chemical ecology of an invasive pest: Olfactory preferences of the viburnum leaf beetle (Coleoptera: Chrysomelidae). Environmental Entomology, 49(2), 364-369. https:// doi.org/10.1093/ee/nvaa007
- 5. Konstantinov A.S., Prathapan K.D., Vencl F.V. 2018. Hiding in plain sight: Leaf beetles (Chrysomelidae: Galerucinae) use feeding damage as a masquerade decoy. Biological Journal of the Linnean Society, 123, 311-320. https://doi.org/10.1111/een.13096
- 6. Maier C.Т. 2019. Range expansion of the viburnum leaf beetle, Pyrrhalta viburni (Paykull, 1799) (Coleoptera: Chrysomelidae), in Connecticut. Proceedings-Entomological Society of Washington, 121(1), 54-62. https://doi. org/10.4289/0013-8797.121.1.54
- 7. Bulgakov V., Rucins A., Holovach I., Adamchuk O., Aboltins A., Zabolotnyi H., Kolomyets L., Polishchuk S. 2023. Computer investigation of mineral fertiliser particle movement along centrifugal spreader disc inclined under angle to horizontal plane. Engineering for Rural Development, 22, 506-516.
- 8. Titarenko O., Ibatullin I., Nedashkivskyi V., Nedashkivska N., Stepanchenko V. 2022. Accumulation of zn and cu by cereal and leguminous vegetation under agrochemical improvement of natural fodder lands of the right bank forest steppe of Ukraine. International Journal of Ecosystems and Ecology Science, 12(4), 245-250.
- 9. Pantsyreva H. 2021. Morphological and ecological-biological evaluation of the decorative species of the genus Lupinus L. Ukrainian Journal of Ecology, 9(3), 74-77. https://doi. org/10.15421/2019_711
- 10. Petrichenko, V.F., Kobak, S.Y., Chorna, V.M. 2017. Inf luence of inoculation and morphology of the regulator on the peculiarities of soybean plant growth in the Forest-Steppe. Bulletin of Agricultural Science, 11, 29-34.
- 11. Didur I.M., Prokopchuk V.M., Pantsyreva H.V. 2019. Investigation of biomorphological and decorative characteristics of ornamental species of the genus Lupinus L. Ukrainian Journal of Ecology, 9(3), 287-290.
- 12. Monarkh V.V., Pantsyreva H.V. 2019. Stages of the environmental risk assessment. Ukrainian Journal of Ecology, 9(4), 484-492. https://doi. org/10.15421/2019779
- 13. Pantsyreva H.V., Myalkovsky R.O., Yasinetska I.A., Prokopchuk V.M. 2020. Productivity and economical appraisal of growing raspberry according to substrate for mulching under the conditions of Podilia area in Ukraine. Ukrainian Journal of Ecology, 10(1), 210-214. https://doi.org/10.15421/202033
- 14. Honcharuk I., Matusyak M., Pantsyreva H., Kupchuk I., Prokopchuk V., Telekalo N. 2022. Peculiarities of reproduction of pinus Nigra arn. in Ukraine. Bulletin of the Transilvania University of Braşov. Series II: Forestry, Wood Industry, Agricultural Food Engineering, 15(64), 1, 33-42
- 15. Bakhmat M., Padalko T., Krachan T., Tkach O., Pantsyreva H., Tkach L. 2023. Formation of the Yield of Matricaria recutita and Indicators of Food Value of Sychorium intybus by Technological Methods of Co-Cultivation in the Interrows of an Orchard. Journal of Ecological Engineering, 24(8), 250-259. https://doi.org/10.12911/22998993/166553
- 16. Petrychenko V.F., Kobak S.Ya., Chorna V.M., Kolisnyk S.I., Likhochvor V.V., Pyda S.V. 2018. Formation of the nitrogen-fixing potential and productivity of soybean varieties selected at the institute of feeds and agriculture of Podillia of NAAS. Mikrobiol. Z, 80(5), 63-75.
- 17. Puyu V., Bakhmat M., Pantsyreva H., Khmelianchyshyn Y., Stepanchenko V., Bakhmat O. 2021. Social-and-ecological aspects of forage production reform in ukraine in the early 21st century. European Journal of Sustainable Development, 10(1), 221-228.
- 18. Snitynskyi V., Razanov S., Hnativ P., Bakhmat O., Kutsenko M., Kolisnyk O. 2023. Phytoremediation of 137Cs contaminated sod-podzolic soil in Northern Polissia white sweet clover (Melilotus albus). International Journal of Environmental Studies. 80(5), 1-7. https://doi.org/10.1080/00207 233.2023.2270305
- 19. Lutkovska S. 2020. Methodical approaches to evaluation of the processes of modernization of the environmental sustainable system. Scientific Horizons, 2, 111-118
- 20. Mazur V.A., Myalkovsky R.O., Pantsyreva H.V., Didur I.M., Mazur K.V., Alekseev O.O. 2020. Photosynthetic productivity of potato plants depending on the location of rows placement in agrophytocenosis. Ecology, Environment and Conservation, 26(2), 536-545
- 21. Mazur V., Didur I., Tkachuk O., Pantsyreva H., Ovcharuk V. 2021. Agroecological stability of cultivars of sparsely distributed legumes in the context of climate change. Scientific Horizons, 24(1), 54-60. https://doi.org/10.48077/scihor
- 22. Mazur V.A., Pantsyreva H.V., Mazur K.V. and Didur I.M. 2019. Influence of the assimilation apparatus and productivity of white lupine plants. Agronomy Research 17, 206-219.
- 23. Mazur V., Pantsyreva H., Mazur K., Myalkovsky R., Alekseev O. 2020. Agroecological prospects of using corn hybrids for biogas production. Agronomy Research, 18, 205–219. https://doi.org/10.15159/ ar.20.016
- 24. Mazur V., Alieksieieva O., Mazur K., Alieksieiev O. 2023. Ecologicai and economic aspects of the formation of hidhly productive soybean crops. Journal of Ecological Engineering, 24(12), 124-129. https://doi.org/10.12911/22998993/173008
- 25. Hnatiuk T.T., Zhitkevich N.V., Petrychenko V.F., Kalinichenko A.V., Patyka V.P. 2019. Soybean diseases caused by genus Pseudomonas Phytopathenes bacteria. Mikrobiol. Z, 81(3), 68-83. https://doi. org/10.15407/microbiolj81.03.068
- 26. Ivanyshyn O., Khomina V., Pantsyreva H. 2021. Influence of fertilization on the formation of grain productivity in different-maturing maize hybrids Ukrainian Journal of Ecology, 11(3), 262-269. https://doi.org/10.15421/2021_170
- 27. Kaletnik G., Lutkovska S. 2020. Strategic priorities of the system modernization environmental safety under sustainable development. Journal of Environmental Management and Tourism, 11, 5(45), 1124-1131.
- 28. Kaletnik, G., Honcharuk, I., Yemchyk, T., Okhota, Yu. 2020. the world experience in the regulation of the land circulation. European Journal of Sustainable Development, 9(2), 557-568
- 29. Mazur V., Alieksieievа O., Mazur K., Alieksieiev O. 2023. Ecological and economic aspects of the formation of highly productive soybean crops. Journal of Ecological Engineering. 24(12), 124-129.
- 30. Kaletnik H., Yaropud V. 2023. Research of pressure losses and justification of forms of side- evaporative heat exchangers channels in livestock premises. Przeglad Elektrotechniczny, 99(7), 247-252.
- 31. Pryshliak N., Dankevych V., Tokarchuk D., Shpykuliak O. 2023. The sowing and harvesting campaign in Ukraine in the context of hostilities: challenges to global energy and food security. Polityka Energetyczna, 26(1), 145-168.
- 32. Pohrishchuk B., Kolomiiets T., Chaliuk Y., Yaremko I., Hromadska N. 2023. Modeling the application of anti-crisis management business introduction for the engineering sector of the economy. International Journal of Safety and Security Engineering, 13(2), 187-194.
- 33. Khaietska O., Holovnia L., Pavlyuk T., Osipova L. 2023. Branch Structure of the national economy and directions of its optimization in the post-war period. Economics. Ecology. Socium, 7(3), 1-12.
- 34. Zagorulko A., Zahorulko A., Kasabova K., Chuiko L., Yakovets L., Pugach A., Barabolia O., Lavruk V. 2023. Improving the production technology of functional paste-like fruit-and-berry semi-finished products. Eastern-European Journal of Enterprise Technologies, 4(11), 43-52.
- 35. Okrushko S. 2022. Allelopathic effect of couch grass (Elymus repens L.) on germination of common wheat seeds. Zemdirbyste, 109(4), 323-328.
- 36. Pantsyreva H., Vovk V., Bronnicova L., Zabarna T. 2023. Efficiency of the use of lawn grasses for biology and soil conservation of agricultural systems under the conditions of the Ukraine’s Podillia. Journal of Ecological Engineering, 2(11), 249-256. https://doi.org/10.12911/22998993/171649
- 37. Bakhmat M., Padalko T., Krachan T., Tkach O., Pantsyreva H., Tkach L. 2023. Formation of the yield of matricaria recutita and indicators of food value of sychorium intybus by technological methods of co-cultivation in the interrows of an orchard. Journal of Ecological Engineering, 24(8), 250-259.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-32c2d72b-6d09-49fa-bb5f-ff2667ca8afd