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Application of revitalize liquid biocomplex to increase adaptability of grapes at planting in open ground conditions

https://doi.org/10.26897/2949-4710-2024-2-1-22-34

Abstract

At present, the range of modern grape varieties suitable for cultivation in the conditions of the Non-Black Earth zone of the Russian Federation is represented by hybrids of different species origin derived from Vitis berlandieri Planch., Vitis Amurensis Rupr., Vitis riparia Michx., Vitis Labrusca L., which are characterized by low ability to vegetative propagation. Therefore, the development of techniques to improve the technology of accelerated propagation of these varieties, including the technology of clonal micropropagation is currently urgent. However, most studies in the field of in vitro propagation of grapes are devoted to laboratory experiments, but there is little information on the influence of the propagation method on the development indicators and vegetative productivity of grape mother plantations in protected and open ground conditions. Therefore, the purpose of this study was to develop methods of application of Revitalize liquid to increase the adaptability and stress resistance of ex vitro grape plants during summer transplanting into the open ground to create mother plantations. The research objectives are to reveal the effectiveness of feeding (root, foliar, combined) with Revitalize liquid during summer transplanting ex vitro grape plants of grape varieties Kishmish № 342, Moscow White and Kober 5BB rootstock into the open ground. The obtained results indicate that double combined treatments (root 500 ml: 500 ml H2O + foliar 25 ml:1000 ml H2O) are effective for pre-growing of ex vitro mother plants of Kishmish № 342 and Kober 5BB rootstock in open ground conditions, and double root feeding (at a concentration of 25 ml:1000 ml H2O) with Revitalize liquid is promising for Moscow White variety.

About the Authors

D. M. Godlin
Russian State Agrarian University – Moscow Timiryazev Agricultural Academy
Russian Federation

Dmitriy M. Godlin, Bachelor’s degree student in 35.03.05 «Gardening»

49 Timiryazevskaya St., Moscow, 127434



G. E. Ter-Petrosyants
Russian State Agrarian University – Moscow Timiryazev Agricultural Academy
Russian Federation

Georg E. Ter-Petrosyants, Assistant at the Department of Horticulture, Viticulture and Winemaking

49 Timiryazevskaya St., Moscow, 127434



S. V. Akimova
Russian State Agrarian University – Moscow Timiryazev Agricultural Academy
Russian Federation

Svetlana V. Akimova, Dsc (Agr), Associate Professor, Associate Professor at the Department of Horticulture, Viticulture and Winemaking

49 Timiryazevskaya St., Moscow, 127434



References

1. Abyzov V.V. Grapes productivity in the conditions of the Central Black Soil region. XVIII mezhdunarodnaya nauchnaya konferentsiya “Agroekologicheskie aspekty ustoychivogo razvitiya APK”. May 24-25, 2021. Bryansk, Russia: Bryansk State Agrarian University, 2021:9-13. (In Russ.)

2. Akimova S.V., Kirkach V.V., Radzabov A.K., Panova M.B., Ter-Petrosyants G.E. Introduction of grapes of interspecific origin into in vitro culture. In: Prospects for the development of horticulture and garden construction. Moscow, Russia: OOO “Megapolis”, 2022:48-56. (In Russ.)

3. Akimova S.V., Radzhabov A.K., Bukhtin D.A., Kirkach V.V. Development of elements of technology for accelerated clonal micropropagation of grape varieties of interspecific origin for risky viticulture zones: study guide. Moscow, Russia: Russian State Agrarian University-Moscow Agricultural Academy named after K.A. Timiryazev, 2018:80. (In Russ.)

4. Akimova S.V., Radzabov A.K., Bukhtin D.A., Trofimova M.S. Influence of organosilicon bioactive substances of nature on rooting and further development of lignified and green cuttings of grape varieties of interspecific origin. Izvestiya of Timiryazev Agricultural Academy (TAA). 2015;4:36-48. (In Russ.)

5. Philippenko L.I. Inheritance of early maturation character in grape vine in offspring of European-Amur hybrids. Russkiy vinograd. 2016;4:47-51. (In Russ.)

6. Philippenko L.I. Promising frost-resistant grape varieties. Mezhdunarodnaya nauchno-prakticheskaya konferentsii, posvyashchennaya 275-letiyu Andreya Timofeyevicha Bolotova “Sovremennye sorta i tekhnologii dlya intensivnykh sadov”. July 15-18, 2013. Orel, Russia: Russian Research Institute of Fruit Crop Breeding, 2013;258-260. (In Russ.)

7. Hannah L., Roehrdanz P.R., Ikegami M., Shepard A.V. et al. Climate Change, Wine, and Conservation. Proceedings of the National Academy of Sciences of the United States of America. 2013;110(17):6907-6912. https://doi.org/10.1073/pnas.1210127110

8. Schultz H.R., Jones G.V. Climate Induced Historic and Future Changes in Viticulture. Journal of Wine Research. 2010;21(2-3):137-145. https://doi.org/10.1080/09571264.2010.530098

9. Smirnov K.V., Maltabar L.M., Radzabov A.K., Matuzok N.V. Viticulture: textbook. Moscow, Russia: Russian State Agrarian University-Moscow AgriculturalAcademy named after K.A. Timiryazev, 1998:510. (In Russ.)

10. Guryanova Ju., Nasonov K. Research of methods of rooting of cuttings of grapes during the forced rest. The Bulletin of Michurinsk State Agrarian University. 2020;1(60):11-15. (In Russ.)

11. Dutov V.N., Lobankova O.Yu., Goryaynov D.O., Martsinkevich V.M. Effect of growth stimulants on the rooting of grape cuttings during rooting. Mezhdunarodnaya nauchno-prakticheskaya konferentsiya “Sovremennoe sostoyanie i perspektivy razvitiya plodoovoshchevodstva, vinogradarstva i vinodeliya v Rossiyskoy Federatsii”. April 27‑28, 2021. Stavropol, Russia: OOO “Stavropol’skoe izdatel’stvo “Paragraf”, 2021:170-174. (In Russ.)

12. Ivanenko E.N., Polukhina E.V. Rooting of grape varieties in arid conditions when propagated by cuttings. II Mezhdunarodnaya nauchno-prakticheskaya internet-konferentsiya “Sovremennoe ekologicheskoe sostoyanie prirodnoy sredy i nauchno-prakticheskie aspekty ratsional’nogo prirodopol’zovaniya”. February 28, 2017. Solenoe Zaymishche, Russia: Caspian Research Institute of arid agricultural, 2017:730-733. (In Russ.)

13. Kostrikin I.A., Maystrenko L.A., Maystrenko A.N., Krasokhina S.I. et al. Propagation of grapes and cultivation of planting material: monograph. Zaporozhe; Rostov-on-Don, Russia: Voenniy vestnik Yuga Rossii, 2001:96. (In Russ.)

14. Kumpan V.N., Sukhotskaya S.G. The effect of terms of grape drawing on the output of the seeding material with a closed root system under the conditions of artificial fog. In: Industrial horticulture in Siberia. Varieties, technologies, practice. Barnaul, Russia: IP Kolmogorov I.A., 2019:100-110. (In Russ.)

15. Minin A.N., Minina I.V. The ability of hardwood grape cuttings to take roots in greenhouse conditions. Contemporary Horticulture. 2013;2(6):105-110. (In Russ.)

16. Toropov D.I., Lavrovskaya G.N., Eliseeva N.V., Popova O.A. et al. State of social and labor sphere of the village and proposals for its regulation: Annual report on the results of monitoring 2009. Moscow: Russian Research Institute of Information and Technical and Economic Studies on engineering and technical support of agro-industrial complex. 2010:260. (In Russ.)

17. Abdulalishoeva S.F., Bobodzhanova H.I., Kukharchik N.V. Introduction to in vitro culture of seedless grape cultivars. In: Plodovodstvo. Samokhvalovichy, Belarus: Institute for Fruit Growing, 2016;28:307-315. (In Russ.)

18. Doroshenko N.P. Adaptation of healthy test-tube grape plants to non-sterile conditions. Regional’naya nauchno-prakticheskaya konferentsiya “Perspektivy vnedreniyasovremennykh biotekhnologicheskikh razrabotokdlya povysheniya effektivnosti sel’skokhozyaystvennogo proizvodstva. Krasnodar, June 6, 2000. Stavropol, Russia: Stavropol’skaya gosudarstvennaya sel’skokhozyaystvennaya akademiya, 2000:28. (In Russ.)

19. Ter-Petrosyants G.Е., Akimova S.V., Radzhabov А.К., Solovyov А.V., Marchenko L.А. Effect of the production technology of vine mother plants on their ability to vegetative propagation. Izvestiya of Timiryazev Agricultural Academy (TAA). 2024;1(1):53-67. (In Russ.) https://doi.org/10.26897/0021-342X-2024-1-53-67

20. Bratkova L.G., Tsatsenko N.N., Malykhina A.N., Mashchenko M.N., Makarov K.A. Accelerated obtaining of high-quality planting material of grape by using in vitro biotechnology. Izvestiya Orenburgskogo gosudarstvennogo agrarnogo universiteta. 2018;6(74):70-73. (In Russ.) http://doi/10.25930/62zt-4086

21. Batukaev A.A., Shishaev M.G., Butakaev M.S. Optimization of nutrient medium composition and adaptation of grapes plants in vitro to conditions in vivo optimization of nutritional medium composition and adaptation of vintages in vitro to in vivo conditions. Izvestiya of Kabardino-Balkarian State Agrarian University named after V.M. Kokov. 2017;1(15):10-16.

22. Akimova S.V., Kirkach V.V., Radjabov A.K., Panova M.B. et al. Introduction of in Vitro Grapes of Interspecific Origin. Journal of Physics: Conference Series. 2021:012047. https://doi.org/10.1088/1742-6596/1942/1/012047

23. Batukaev A.A., Batukaev M.S., Palaeva D.O., Sobralieva E.A. In vitro introduction and ex-vitro adaptation of grape varieties Augustin and Moldova. Development Problems of Regional Agro-Industrial Complex. 2018;4(36):20-26. (In Russ.)

24. Bobodzhanova Kh.I., Yasaulova Sh.K., Kukharchik N.V. Optimization of the stage of sterilization of grape explants when introduced into in vitro culture. Aktual’naya biotekhnologiya. 2018;3(26):524-525. (In Russ.)

25. Bobojahnova K.I., Kukharchik N.V. Efficiency of in vitro rhizogenesis and ex vitro adaptation of certain seedless varieties of grapes. In: Plodovodstvo: Minsk, Belarus: Republican Unitary Enterprise Publishing House Belarusian Science, 2021;33:159-166. (In Russ.) http://doi/10.47612/0134-9759-2021-33-159-166

26. Doroshenko N.P., Rebrov A.N. Effect of emistim and potassium lignohumate on the regeneration capacity of grapes in vitro. Vinodelie i vinogradarstvo. 2009;6:36-37. (In Russ.)

27. Trukhachev V.I., Binatov Y.G., Gerasimov A.N., Skripnichenko Y.S. Competitiveness of Russian agriculture: essence, trends and prospects. Journal of Economy and entrepreneurship. 2015;11-1(64):528-534 (In Russ.)

28. Andreeva E.A., Zueva L.V., Yakovleva V.M., Korshunov E.A. Grapes in the northern latitudes. In: XXVII Mezhdunarodnaya nauchno-prakticheskay konferentsiy “Sovremennaya nauka: aktual’nyye voprosy, dostizheniya i innovatsii”. November 05, 2022. Penza: Nauka i Prosveshchenie (IP Gulyaev G.Yu.), 2022:99-104. (In Russ.)

29. Batukaev A.A. Improvement of technology of accelerated multiplication and improvement of grape planting material by in vitro method: monograph. Moscow, Russia: Russian State Agrarian University-Moscow Agricultural Academy named after K.A. Timiryazev, 1998:223. (In Russ.)

30. Bratkova L., Malyhina A., Zuzenko N. The ways of grapes mery clones adaptation to the conditions in vivo. Plodovodstvo i vinogradarstvo Yuga Rossii. 2015;34(4):14-29. (In Russ.)

31. Moscow White. (In Russ.) [Electronic source] URL: https://vinograd.info/sorta/arhiv/moskovskii-belyi.html (accessed: February 02, 2024)

32. Trukhachev V.I., Sycheva O.V., Starodubtseva G.P., Veselova M.V. Technology of milk phyto tea “Stevilakt”. Pishchevaya industriya. 2012;2:18-20. (In Russ.)

33. Kishmish 342 – grape variety. Encyclopedia of grape varieties Vineyard. (In Russ.) URL: https://grape-sort.vineyard.su/seedless/item/kishmish-342 (accessed: February 19, 2024)

34. Dospekhov B.A. Methods of field experiment (with the basics of statistical processing of research results): textbook for students of higher agricultural educational institutions on agronomic specialties. 6th ed., ster, reprinted from the 5th ed., 1985. Moscow, Russia: Al’yans, 2011:350. (In Russ.)

35. Isachkin A.V., Kryuchkova V.A., Bogdanova V.D. Fundamentals of scientific research in horticulture (self-control): study guide. Moscow, Russia: Redaktsiya zhurnala “Mekhanizatsiya i elektrifikatsiya sel’skogo khozyaystva”, 2021:62. (In Russ.)


Review

For citations:


Godlin D.M., Ter-Petrosyants G.E., Akimova S.V. Application of revitalize liquid biocomplex to increase adaptability of grapes at planting in open ground conditions. Timiryazev Biological Journal. 2024;(1):22-34. (In Russ.) https://doi.org/10.26897/2949-4710-2024-2-1-22-34

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