Preview

Agrarian science

Advanced search

The complex influence of natural and climatic factors on adaptive reactions in hybrid combinations of sugar beet

https://doi.org/10.32634/0869-8155-2024-388-11-87-91

Abstract

Relevance. Currently, climatic anomalies are observed on the territory of the Russian Federation, including in the Central Chernozem region, to which cultivated plants adapt.

The aim of the study is to evaluate the adaptive reactions of hybrid sugar beet combinations based on productivity characteristics to contrasting weather conditions.

Methods. Male-sterile (MS) separate-fruited forms of sugar beet were crossed with fertile diploid cross-fruited pollinators (selection of the A.L. Mazlumov VNIISS). The obtained hybrids were evaluated for signs of productivity using standard methods. The signs of productivity meant yield, sugar content and sugar collection.

Relevance. Currently, on the territory of the Russian Federation, including in the Central Black Earth Region, there are climatic anomalies to which cultivated plants adapt. The purpose of the study was to evaluate the adaptive responses of sugar beet hybrid combinations to the contrast weather conditions in signs of productivity.

About the Authors

T. V. Vostrikova
A.L. Mazlumov All-Russian Scientific Research Institute of Sugar Beet and Sugar
Russian Federation

Tatyana V. Vostrikova - Candidate of Biological Sciences, Researcher.

86 VNIISS, Ramonsky district, Voronezh region, 396030



M. A. Bogomolov
A.L. Mazlumov All-Russian Scientific Research Institute of Sugar Beet and Sugar
Russian Federation

Mikhail A. Bogomolov - Doctor of Agricultural Sciences, Leading Researcher.

86 VNIISS, Ramonsky district, Voronezh region, 396030



References

1. Zhuchenko A.A. The role of predictive possibilities of homologous series law in hereditary changeability when searching both adaptively significant and valuable in agriculture gene-donors. Izvestiya of Timiryazev Agricultural Academy. 2012; (4): 28‒38 (in Russian). https://www.elibrary.ru/pgbisl

2. Nadeem T., Khalil I.H., Jadoon S.A. Combining ability analysis for maturity and yield attributes in sweet corn across environments. SABRAO. Journal of Breeding and Genetics. 2023; 55(2): 319‒328. https://doi.org/10.54910/sabrao2023.55.2.5

3. Sial N.Y. et al. Exotic wheat genotypes response to water-stress conditions. SABRAO Journal.of.Breeding.and.Genetics. 2022; 54(2): 297‒304. https://doi.org/10.54910/sabrao2022.54.2.7

4. Susanto G.W.A. Estimation of gene action through combining ability for maturity in soybean. SABRAO.Journal.of.Breeding.and.Genetics. 2018; 50(1): 62‒71.

5. Doroshenko T.N, Zakharchuk N.V., Ryazanova L.G. Adaptive potential of fruit plants in the south of Russia. Monograph. Krasnodar: Prosveshcheniye-Yug. 2010; 140 (in Russian). ISBN 978-5-93491-306-0 https://www.elibrary.ru/qcsjbx

6. Yushkov A.N., Borzykh N.V. Comparative estimate of initial apple and cherry selected seedlings in natural and modeled conditions. Contemporary. horticulture. 2013; (2): 65‒70 (in Russian). https://www.elibrary.ru/seienr

7. Pivovarov V.F., Dobrutskaya E.G., Soldatenko A.V. Ecological methods of lettuce breeding on minimal accumulation of radioactive nuclide (137 CS). Agricultural Biology. 2009; 44(1): 21‒27 (in Russian). https://www.elibrary.ru/jzfqdv

8. Shumilina D.V., Shmykova N.A., Bondareva L.L., Suprunova T.P. Effect of genotype and medium culture content on microspore-derived embryo formation in Chinese cabbage (Brassica rapa ssp. chinensis) cv. Lastochka. Biology Bulletin. 2015; 42(4): 302‒309. https://doi.org/10.1134/S1062359015040135

9. Bome N.A., Salekh S., Korolev K.P., Kolokolova N.N., Weisfeld L.I., Tetyannikov N.V. Biological potential of winter cereals in the Northern TransUrals, Russia. SABRAO. Journal of Breeding and Genetics. 2022; 54(4): 789‒802. https://doi.org/10.54910/sabrao2022.54.4.10

10. Abdelaal K.A.A., Rhashed S.H., Hossain A., El Sabagh A. Yield and quality of two sugar beet (Beta.vulgaris L. ssp. vulgaris var. altissima Döll) cultivars are influenced by foliar application of salicylic acid, irrigation timing, and planting density. Acta Agriculturae Slovenica. 2020; 115(2): 273‒282. https://doi.org/10.14720/aas.2020.115.2.1159

11. Bastaubayeva S.O., Tabynbayeva L.K., Yerzhebayeva R.S., Konusbekov K., Abekova A.M., Bekbatyrov M.B. Climatic and agronomic impacts on sugar beet (Beta.vulgaris L.) production. SABRAO. Journal of Breeding and Genetics. 2022; 54(1): 141‒152. https://doi.org/10.54910/sabrao2022.54.1.13

12. Bogomolov M.A., Vostrikova T.V. Evaluation of the combining ability of MS lines and multigerm pollinators of sugar beet for selection of pairs in crossing. Sakhar. 2022; (6): 44‒48 (in Russian). https://doi.org/10.24412/2413-5518-2022-6-44-48

13. Bogomolov M.A., Vostrikova T.V. Comparing the productivity of sugar beet breeding material. Biosphere. 2022; 14(4): 275‒276 (in Russian). https://www.elibrary.ru/hexplp

14. Volgin V.V. Recurrent selection in plant breeding. Oil.Crops. 2012; (1): 161‒171 (in Russian). https://www.elibrary.ru/pbmqyb

15. Gulnyashkin A.V., Anashenkov S.S., Varlamov D.V. Study results of ecological adaptability of new early ripening hybrids of maize. Grain Economy of Russia. 2014; (4): 31‒36 (in Russian). https://www.elibrary.ru/smxmln

16. Gulnyashkin A.V., Anashenkov S.S., Varlamov D.V. Selection of maize hybrids adapted to dry conditions of the south of Russia. Grain.Economy.of.Russia. 2013; (4): 7‒11 (in Russian). https://www.elibrary.ru/rcoxsp

17. Chistyakov S.N., Suprunov A.I. Evaluation of combining ability of new lines of maize according to productivity and harvesting moisture in top-cross hybridizations. Grain.Economy.of.Russia. 2013; (1): 42‒46 (in Russian). https://www.elibrary.ru/pxwldf

18. Saleem H., Sadaqat H.A., Razzaq H., Chattha A.A., Khan S.H. Heterotic grouping with combining ability and gene action in Sesamum indicum L. using line × tester analysis. SABRAO. Journal of Breeding and Genetics. 2023; 55(2): 367‒378. https://doi.org/10.54910/sabrao2023.55.2.9

19. Logvinov A.V. et al. Features of growing hybrids of sugar beet in the conditions of drought. Sakharnaya.svekla. 2020; (7): 16‒21 (in Russian). https://doi.org/10.25802/SB.2020.28.37.002

20. Deryugin V.A. The critical periods of development beet crops plants in the south of Russia. Sakharnaya svekla. 2013; (8): 10‒15 (in Russian). https://www.elibrary.ru/rxstqb

21. Vostricova T.V., Kalaev V.N., Devyatova T.A. The influence of nature-climatic factors and growth stimulators for eсоlоgо-biоlоgical characteristics of greater smapdragon. Proceeding of Voronezh State University. Series: Chemistry. Biology. Pharmacy. 2012; (1): 64‒70 (in Russian). https://www.elibrary.ru/ozcxjl

22. Krivosheev G.Ya., Ignatiev A.S. Evaluation of total and specific combinative capacity of new self-pollinated lines of maize in top cross hybridization system. Grain Economy of Russia. 2011; (6): 41‒46 (in Russian). https://www.elibrary.ru/onlpsn

23. Krivosheev G.Ya., Shevchenko N.A. General and specific combinational ability of self-pollinated maize lines on the basis of “grain yield”. KubGAU. Scientific.Journal. 2014; 104: 664–674 (in Russian). https://www.elibrary.ru/tfwsrd


Review

For citations:


Vostrikova T.V., Bogomolov M.A. The complex influence of natural and climatic factors on adaptive reactions in hybrid combinations of sugar beet. Agrarian science. 2024;(11):87-91. (In Russ.) https://doi.org/10.32634/0869-8155-2024-388-11-87-91

Views: 606


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 0869-8155 (Print)
ISSN 2686-701X (Online)
X