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The effectiveness of Ryzoboft and Ryzohumin microbiological preparations use for beans biometric indicators (Faba bona Medic)

The use of biological preparations based on nodule bacteria and complexes containing, except rhizobia, biologically active substances is a cost-effective and environmentally sound element of legumminous cultivation technologies. The study aimed to establish the influence of pre-sowing treatment of seeds with microbiological preparations Ryzoboft and Ryzohumin according to the indicators of growth processes (Faba bona Medic) of Khorostkivskyi variety beans in the conditions of Western Forest-Steppe of Ukraine. The research was conducted during 2018–2020 in the felds of agrobiolaboratory of Ternopil National University named after Volodymyr Hnatiuk. During the vegetation period, the height of the stem was measured, the number of leaves on the plant was counted, and the raw and dry weight of the aboveground organs and the root system were determined. It was established that microbiological preparations Ryzoboft and Ryzohumin affect the growth processes of beans against the background of spontaneous inoculation by local populations of nodule bacteria. The increase in stem height of the experimental plants in comparison with the control of pre-sowing treatment of seeds with Ryzohumin at the beginning of flowering was 13,9 %, during flowering –14,1 %, and in the green bean phase – 9,0 %. Pre-sowing inoculation with Ryzoboft signifcantly increased the height of the bean stalk only in the green bean phase – 11,8 %. During flowering of beans with the use of the Ryzohumin signifcantly increased the number of leaves on the plant – by 25,7 % compared to the control. In the green bean phase, both studied preparations signifcantly influenced the process of leaf formation. There was a signifcant effect on the foliage of plants of the Ryzohumin, compared with Ryzoboft during the study period. Statistically signifcant increase in the indicators of raw and dry mass of aboveground organs of beans in the green bean phase under the influence of Ryzoboft and Ryzohumin was revealed. During flowering in the conditions of pre-sowing treatment of seeds with Ryzohumin, a signifcant increase in the raw mass of the root system was found. The obtained results indicate the prospects of further studies of production processes of bean plants under the influence of microbiological preparations Ryzoboft and Ryzohumin.

Key words: beans, inoculation, Ryzoboft, Ryzohumin, vegetation period, biometric indicators.

 

Reference: 
1. Marchuk, Yu. M., Ilchenko, I. V., Matviienko, V. O., Biletska, I. V. (2016). Vplyv riznykh rehuliatoriv rostu roslyn na nasinnievu produktyvnist roslyn bobiv kormovykh [Influence of different plant growth regulators on seed productivity of fodder bean plants]. Materialy ХII Meznarodni vedecko-practicka konference «Dny veda – 2016» [Materials ХII International scientifc-practical conference «Science Days – 2016»]. Vol. 16, рр. 49–51.
2. Kuryata, V.G., Kravets, O.O. (2018). Features of morphogenesis, accumulation and redistribution of assimilate and nitrogen containing compounds in tomatoes under retardants treatment. Ukrainian journal of ecology. no. 8(1), pp. 356–362.
3. Khodanitska, O.O., Kolisnyk, O.M. (2020). Zastosuvannia stymuliatoriv rozvytku v praktytsi roslynnytstva [Application of development stimulants in the practice of crop production]. Materiály XVI Mezinárodní vĕdecko-praktická conference «Moderní vymoženosti vědy» [Materials XVI International scientifc and practical conference «Modern conveniences of science»]. Vol. 10, рр. 45–49.
4. Shevchuk, O.A., Kravchuk, H.I., Verhelis, V.I. (2018). Yakisni kharakterystyky nasinnia bobiv kormovykh zalezhno vid peredposivnoi obrobky rehuliatoramy rostu roslyn [Qualitative characteristics of fodder bean seeds depending on pre-sowing treatment with plant growth regulators]. Silske hospodarstvo ta lisivnytstvo [Agriculture and forestry], no. 10, pp. 66–73.
5. Shevchuk, O.A., Tkachuk, O.O., Bakhmat, Yu.O. (2017). Zastosuvannia rehuliatoriv rostu roslyn u roslynnytstvi [Application of plant growth regulators in crop production]. Materialy ХIII Meznarodni vedecko-practicka conference «Veda a technologia: krok do budoucnosti – 2017» [Materials ХIII International scientifc-practical conference «Science and Technology: A Step into the Future – 2017»]. Vol. 9, pp. 38–43.
6. Kvitko, H.P., Sauliak, O.M. (2015). Formuvannia urozhaiu nasinnia sochevytsi kharchovoi v umovakh Lisostepu Pravoberezhnoho [Formation of a lentil seed crop in the conditions of the forest-steppe of the right bank]. Materialy dop. uchasn. III Mizhnar. nauk.-prakt. konf. «Orhanichne vyrobnytstvo i prodovolcha bezpeka» [Materials ext. participant III International. scientifc-practical conf. «Organic production and food security»]. pp. 564–568.
7. Orekhivskyi, V.D., Sichkar, V.I., Ovsiannykova, L.K. (2017). Sochevytsia – dzherelo roslynnoho bilka [Lentils – a source of vegetable protein]. Zernovi produkty i kombikormy [Grain products and compound feeds]. Vol. 17, no. 4, pp. 22–29.
8. Pyda, S.V., Tryhuba, O.V. (2019). Funktsionuvannia symbiotychnoi systemy liupyn – Bradyrhizobium sp. (Lupinus) za sumisnoho zastosuvannia ryzoboftu ta rehuliatoriv rostu roslyn: monohrafia [Functioning of the symbiotic system of lupines – Bradyrhizobium sp. (Lupinus) with the combined use of rhizobophyte and plant growth regulators: a monograph]. Ternopil, TNPU im. Volodymyra Hnatiuka, 172 p.
9. Shevchuk, V.V., Didur, I.M. (2019). Perspektyvy vykorystannia horokhu ozymoho u umovakh Lisostepu Pravoberezhnoho [Prospects for the use of winter peas in the forest-steppe of the right bank]. Tezy II Vseukr. nauk.-prakt. konf. «Orhanichne ahrovyrobnytstvo: osvita i nauka» [These II All-Ukrainian. scientifc-practical conf. «Organic agricultural production: education and science»]. pp. 105–107.
10. Cucci, G., Lacolla, G., Summo, C., Pasqualone, A. (2019). Effect of organic and mineral fertilization on faba bean (Vicia faba L.). Scientia Horticulturae. Vol. 243, pp. 338–343. Available at: https://doi.org/10.1016/j.scienta.2018.08.051.
11. Hamid, Khazaei, Randy, W. Purves, Jessa, Hughes, Wolfgang, Link, Donal, M. O'Sullivan, Alan, H. Schulman, Emilie, Björnsdotter, Fernando, Geu-Flores, Marcin, Nadzieja, Stig, U. Andersen, Jens, Stougaard, Albert, Vandenberg, Frederick, L. Stoddard (2019). Eliminating vicine and convicine, the main anti-nutritional factors restricting faba bean usage. Trends in Food Science & Technology. Vol. 91, pp. 549–556. Available at: https://doi. org/10.1016/j.tifs.2019.07.051.
12. Kuldeep, A. Rahate, Mitali, Madhumita, Pramod, K. Prabhakar (2021). Nutritional composition, anti-nutritional factors, pretreatments-cum-processing impact and food formulation potential of faba bean (Vicia faba L.): A comprehensive review. LWT. Vol. 138, аrt. 110796. Available at: https://doi.org/10.1016/j.lwt.2020.110796.
13. Rupesh, Kumar Singh, Nitin, Bohra, Lav, Sharma (2019). Valorizing faba bean for animal feed supplements via biotechnological approach: Opinion. Biocatalysis and Agricultural Biotechnology. Vol. 17, pp. 366–368. Available at: https://doi.org/10.1016/j.bcab.2018.12.020.
14. Manu, P. Gangola, Bharathi, Raja Ramadoss, Sarita, Jaiswal, Catharine, Chan, Rebecca, Mollard, Hrvoje, Fabek, Mehmet, Tulbek, Peter, Jones, Diana, Sanchez-Hernandez, G. Harvey, Anderson, Ravindra, N. Chibbar (2021). Faba bean meal, starch or protein fortifcation of durum wheat pasta differentially influence noodle composition, starch structure and in vitro digestibility. Food Chemistry. Vol. 349, аrt. 129167. Available at: https://doi:org/10.1016/j. foodchem.2021.129167.
15. Fengyuan, Liu, Susanna, Kariluoto, Minnamari, Edelmann, Vieno, Piironen (2021) Bioaccessibility of folate in faba bean, oat, rye and wheat matrices. Food Chemistry. Vol. 350, аrt. 129259. Available at: https://doi.org/10.1016/j. foodchem.2021.129259.
16. Rami, Akkad, Ereddad, Kharraz, Jay, Han, James, D. House, Jonathan, M. Curtis (2019) Characterisation of the volatile flavour compounds in low and high tannin faba beans (Vicia faba var. minor) grown in Alberta, Canada. Food Research International. Vol. 120, pp. 285–294. Available at: https://doi.org/10.1016/j.foodres.2019.02.044.
17. Jeremy, Marshall, Haixia, Zhang, Hamid, Khazaei, Kevin, Mikituk, Albert, Vandenberg (2021). Targeted quantifcation of B vitamins using ultra-performance liquid chromatography-selected reaction monitoring mass spectrometry in faba bean seeds. Journal of Food Composition and Analysis. Vol. 95, аrt. 103687. Available at: https://doi. org/10.1016/j.jfca.2020.103687.
18. Fatemeh, Etemadi, Masoud, Hashemi, Allen, V. Barker, Omid, Reza Zandvakili, Xiaobing, Liu (2019) Agronomy, Nutritional Value, and Medicinal Application of Faba Bean (Vicia faba L.). Horticultural Plant Journal. Vol. 5, no. 4, pp. 170–182. Available at: https://doi.org/10.1016/j. hpj.2019.04.004.
19. Petrychenko, V.F., Lykhochvor, V.V. (2020). Roslynnytstvo. Novi tekhnolohii vyroshchuvannia polovykh kultur. Vyd. 5-e. [Roslinnystvo. New technologies for the development of polish cultures. View. 5th.]. Lviv, NVF Ukrainian technologies, pp. 384–392.
20. Osadets, Ya., Vivcharyk, V. (2002). Kormovi boby – tsinna kormova kultura [Fodder beans are a valuable fodder crop]. Propozytsiia [Proposition], no. 11, pp. 45–47.
21. Elsayed, Mansour, El-Sayed, M. Desoky, Mohamed, M.A. Ali, Mohamed, I. Abdul-Hamid, Hayat, Ullah, Ahmed, Attia, Avishek, Datta (2021). Identifying droughttolerant genotypes of faba bean and their agro-physiological responses to different water regimes in an arid Mediterranean environment. Agricultural Water Management. Vol. 247, аrt. 106754. Available at: https://doi.org/10.1016/j. agwat.2021.106754.
22. Barvinchenko, V.I., Materynskyi, P.V., Kobak, S.Ya. (2009) Effektyvnist vyrobnytstva zerna bobiv kormovykh zalezhno vid vplyvu systemy udobrennia [Efciency of grain production of fodder beans depending on the influence of the fertilizer system]. Kormy i kormovyrobnytstvo [Feed and feed production], no. 65, pp. 24–33.
23. Nidzelskyi, V.A., Mokriienko, V.A. (2014). Kormovi boby – tsinna zernobobova kultura [Fodder beans – a valuable legume]. Naukovyi visnyk Natsionalnoho universytetu bioresursiv i pryrodokorystuvannia Ukrainy. Ahronomiia [Scientifc bulletin of the National university of life and environmental sciences of Ukraine. Agronomy], no. 176, pp. 71–75.
24. Terek, O.I., Patsula, O.I. (2011). Rist i rozvytok roslyn : navch. Posibnyk [Growth and development of plants: textbook manual]. Lviv, LNU imeni Ivana Franka, 328 p.
25. Lisovyi, M., Parkhomenko, O., Didovych, S., Parkhomenko, T., Chaika, V. (2010). Rozrobka systemy kompleksnoho zastosuvannia mikrobnykh preparativ v ahrotekhnolohii vyroshchuvannia nutu [Development of a system of complex application of microbial preparations in agrotechnology of chickpea cultivation]. Silskohospodarska mikrobiolohiia [Agricultural microbiology], no. 11, pp. 90–101.
26. Kholod, S. M., Kholod, S. H., Illichov, Yu. H. (2013). Nut – perspektyvna zernobobova kultura dlia Lisostepu Ukrainy [Chickpeas are a promising legume for the foreststeppe of Ukraine]. Visnyk Poltavskoi derzhavnoi ahrarnoi akademii [Bulletin of the Poltava state agrarian academy], no. 2, pp. 49–54.
27. Broshchak, I.S, Hnopko, N.Ya., Berbetsa, O.M., Soroka, M.R. (2019). Vplyv mikrobiolohichnykh preparativ na formuvannia symbiotychnykh system na koreniakh bobovykh kultur [Influence of microbiological preparations on the formation of symbiotic systems on the roots of legumes]. Mat. Vseukr. nauk.-prakt. konf. «Ternopilski biolohichni chytannia – Ternopil Bioscience – 2019» [Mate. All-Ukrainian scientifc-practical conf. «Ternopil biological readings – Ternopil Bioscience – 2019]. Ternopil, Vektor, pp. 79–83.
28. Kyryzyi, D.A. (2004). Fotosyntez y rost rastenyi v aspekte donorno-aktseptornykh otnoshenyi [Photosynthesis and plant growth in the aspect of donor-acceptor relations]. Kіev, Lohos, 191 p.

 

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