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Influence of inoculant seed treatment and foliar fertilization on the duration of vegetation and interphase periods of soybean cultivars

Offering new soybean varieties to agricultural producers necessitates research on their adaptation to certain soil and climatic conditions of cultivation. Therefore, the sign of the length of the vegetation period is crucial for growing soybeans in specifc soil and climatic conditions. The studies carried out in 2019–2021 have shown a signifcant dependence of the length of the vegetation period on weather conditions. Thus, the weather conditions in 2021 caused the longest vegetation period for soybean varieties, and the weather conditions in 2020 determined the shortest vegetation period for this legume. It was found that with the introduction of N 30P60K60 the shortest vegetation period was in the precocious variety of soybean Samorodok and it lasted 101 days. The longer vegetation period was in the precocious soybean cultivar Rogiznyanka and lasted with an average of 113 days. Early maturing soybean cultivars Orpheus and Triada had an average vegetation period of 112 and 122 days. For the middle early maturing varieties of Eurydice and Arrata the vegetation period lasted 113 and 127 days, respectively. In medium-ripe varieties Azimuth and Aurora the vegetation period lasted 118 and 121 days, respectively. Pre-sowing seed treatment with Rhizoactive extended the vegetation period of the Samorodok soybean cultivar by one day, and the Rogiznyanka, Triada, Orpheus, Arrata, Eurydice, Azimuth and Aurora soybean varieties by two days. On average, over the three years of research, it was found that in the Western Forest-Steppe conditions against the background of N30P60K60 application, seed treatment with Rhizoactive and Fulvohumin foliar fertilization, the Arrata soybean cultivar had the longest vegetation period with the duration of 130 days. Thus, varietal characteristics made the most significant factor influencing the duration of soybean vegetation in the research. At the same time, inoculation of seeds with Rhizoactive and foliar fertilization of crops with Fulvohumin changed the duration of the vegetation period of the studied soybean varieties by only 1–3 days. The studied varieties differed signifcantly in the initiation and rate of growth and development phases of soybean plants. Since the degree of compliance of growth and development factors with the optimal value varies signifcantly depending on the phenological phase, it is advisable to grow several varieties of different maturity groups in order to achieve stable soybean production.
Key words: soybean, cultivar, vegetation period, fertilizers, Rhizoactive, Fulvohumin.

 

Reference: 
1. Biljavs'ka, L.G., Biljavs'kyj, Ju.V., Shapoval, O.S., Panchenko, S.S. (2020). Suchasnyj stan ta perspektyvy nasinnyctva soi' v Lisostepu Ukrai'ny [Current state and prospects of soybean seed production in the Forest-Steppe of Ukraine]. Visnyk PDAA [Bulletin of Poltava State Agrarian Academy], no. 4, рр. 45–52.
2. Babych, A.O., Babych-Poberezhna, A.A. (2011). Selekcija, vyrobnyctvo, torgivlja i vykorystannja soi' u sviti [Selection, production, trade and use of soybeans in the world]. Kyiv, Agricultural science, 548 р.
3. Bahmat, O.M. (2012). Modeljuvannja adaptyvnoi' tehnologii' vyroshhuvannja soi': monografja [Modeling of adaptive technology of soybean cultivation]. Kamianets-Podilskyi, Publisher Zvoleyko D.H., 436 р.
4. Ivanjuk, S.V. (2012). Formuvannja sortovyh resursiv soi' vidpovidno do bioklimatychnogo potencialu regionu vyroshhuvannja [Formation of soybean varietal resources according to the bioclimatic potential of the growing region]. Kormy i kormovyrobnyctvo [Feed and feed production]. Issue 71, рр. 34–40.
5. Moldovan, V.G., Moldovan, Zh.A., Sobchuk, S.I. (2020). Formuvannja vrozhajnosti nasinnja sortamy soi' z riznym vegetacijnym periodom v umovah Lisostepu zahidnogo [Formation of seed yield by soybean varieties with different growing season in the Western Forest-Steppe]. Kormy i kormovyrobnyctvo [Feed and feed production]. Issue 89, рр. 46–56. DOI: 10.31073/ kormovyrobnytstvo202089-04.
6. Ivanjuk, S.V., Temchenko, I.V., Semcov, A.V. (2012). Tryvalist' vegetacijnogo periodu soi' – osnova formuvannja sortovyh resursiv regionu [The duration of the soybean growing season is the basis for the formation of varietal resources of the region]. Kormy i kormovyrobnyctvo [Feed and feed production]. Issue 73, рр. 67–71.
7. Biljavs'ka, L.G., Rybal'chenko, A.M. (2018). Minlyvist' tryvalosti veg'etacijnogo periodu u kolekcijnyh zrazkiv soi' [Variability of vegetation period duration in soybean collection samples]. Visnyk Poltavs'koi' derzhavnoi' agrarnoi' akademii' [Bulletin of Poltava State Agrarian Academy], no. 2, рр. 85–92.
8. Chinchik, O.S. (2016). Trivalіst' vegetacіjnogo perіodu ta faz rostu і rozvitku roslin soї zalezhno vіd sortovih osoblivostej ta udobrennja [The duration of the growing season and phases of growth and development of soybean plants depending on varietal characteristics and fertilizers]. Kormi і kormovirobnictvo [Feed and feed production]. Issue 82, рр. 133–137.
9. Milenko, O.G. (2016). Optymizacija normy vysivu nasinnja soi' zalezhno vid grupy styglosti sortu dlja umov central'nogo Lisostepu Ukrai'ny [Optimization of soybean seed sowing rate depending on the maturity group of the variety for the conditions of the central Forest-Steppe of Ukraine]. Naukovi dopovidi NUBiP [Scientifc reports of NUBiP], no. 4 (61), рр. 1–8. DOI: 10.31548/dopovidi2016.04.009
10. Mihjejeva, O.O. (2018). Tryvalist' periodu vegetacii' soi' zalezhno vid norm vysivu i sposobiv sivby [The duration of the soybean growing season depending on sowing rates and sowing methods]. Visnyk HNAU. Roslynnyctvo, selekcija i nasinnyctvo, plodoovochivnyctvo i zberigannja [Bulletin of KNAU. Plant growing, selection and seed production, fruit and vegetable growing and storage]. Issue 2, рр. 171–182.
11. Usenko, T.V. (2018). Vplyv stroku ta sposobu sivby na tryvalist' vegetacijnogo periodu soi' v umovah Lisostepu Pravoberezhnogo [Influence of sowing term and method on the duration of soybean growing season in the conditions of the Right-Bank Forest-Steppe]. Kormy i kormovyj bilok: materialy X mizhnarodnoi' nauk. konf. (4-5 lypnja 2018 roku) [Feed and feed protein: materials of the X International Science. conf.]. Institute of Feed and Agriculture of Podillya NAAS, Vinnitsa, 55 p.
12. Furman, O.V. (2019). Tryvalist' vegetacijnogo periodu ta faz rostu i rozvytku roslyn soi' zalezhno vid tehnologichnyh zahodiv vyroshhuvannja [The duration of the growing season and phases of growth and development of soybean plants depending on technological measures of cultivation]. Tavrijs'kyj naukovyj visnyk [Taurida Scientifc Herald], no. 109, рр. 148–154.
13. Cygans'ka, O.I., Cygans'kyj, V.I. (2019). Vplyv systemy udobrennja na prohodzhennja faz rostu i rozvytku sortiv soi' ta na koefcijent zberezhennja roslyn [Influence of fertilizer system on the phases of growth and development of soybean varieties and on the coefcient of plant conservation]. Sil's'ke gospodarstvo ta lisivnyctvo [Agriculture and forestry], no. 13, рр. 119–133.
14. Grygorchuk, N.F., Jakubenko, O.V. (2013). Stvorennja sortiv soi' skorostyglogo typu [Creation of soybean varieties of precocious type]. Naukovotehnichnyj bjuleten' Instytutu olijnyh kul'tur NAAN [Scientifc and technical bulletin of the Institute of Oilseeds of NAAS], no. 19, рр. 43–48.
15. Polishhuk, I.S., Polishhuk, M.I., Jurchenko, N.A. (2019). Tryvalist' periodu vegetacii' ta mizhfaznyh periodiv sortiv soi' zalezhno vid strokiv sivby ta norm vysivu nasinnja [The duration of the growing season and interphase periods of soybean varieties depending on the timing of sowing and seeding rates]. Sil's'ke gospodarstvo ta lisivnyctvo [Agriculture and forestry], no. 15, рр. 64–71.
16. Kobyzjeva, L.N., Rjabchun, V.K., Bezugla, O.M. (2004). Shyrokyj unifkovanyj klasyfkator rodu Glycine max. (L). Merr [Broad unifed classifer of the genus Glycine max. (L). Merr.]. Inst. Of Plant Breeding named after V.Ya. St. George, Kharkiv, 37 p.
17. Kohanjuk, N.V., Temchenko, I.V., Shtuc', T.M. (2019). Riznomanittja kolekcijnogo materialu soi' za tryvalistju vegetacijnogo periodu. Kormy i kormovyj bilok: materialy XI Mizhnarodnoi' nauk. konf. (28 zhovtnja 2019 roku) [Variety of soybean collection material according to the length of the growing season. Feed and feed protein: materials of XI International Sciences. conf. (October 28, 2019)]. Vinnitsa, Institute of Feed and Agriculture of Podillya NAAS, рр. 8–9.
18. Babych, A.O., Babych, A.A. (2010). Selekcija i zonal'ne rozmishhennja soi' v Ukrai'ni [Selection and zonal distribution of soybeans in Ukraine.]. Zbirnyk naukovyh prac' Selekcijno-genetychnogo instytutu – Nacional'nogo centru nasinnjeznavstva ta sortovyvchennja [Collection of scientifc works of the Breeding and Genetic Institute – National Center for Seed Science and Variety Research]. Issue 15 (55), рр. 25–32.
19. Metodika derzhavnogo sortoviprobuvannja sіl's'kogospodars'kih kul'tur [Methodology for state variety testing of agricultural crops]. Kyiv, Alefa, 2000, 100 р.
20. Ermantraut, E.R., Malinovs'kij, A.S., Dіdora, V.G. (2010). Metodika naukovih doslіdzhen' v agronomіi': navch. posіb. [Methods of scientifc research in agronomy]. Zhitomir, ZhNAEU, 124 р.

 

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