Breeding value of mutant forms of spring barley in the conditions of the Volga-Vyatka region
https://doi.org/10.26897/0021-342X-2024-3-49-62
Abstract
Many crops have a very small genetic “base”. The use of a limited number of parental forms reduces the genetic diversity of commercial varieties and exacerbates the problem of their resistance to adverse environmental factors. Induced mutagenesis is one of the means to generate genetic variation in crops in a shorter time compared to crosses and can be used to develop source material for breeding and new varieties with high yields, excellent product quality, resistance to climate change and tolerance to biotic and abiotic stresses. The aim of the research is to evaluate mutant forms of spring barley for economic characters based on competitive variety testing data, to identify sources of breeding valuable traits for further use as source material in breeding. The research was carried out in 2021–2023 at the FARC of the North-East, Kirov. The object of research were nine mutant samples and variety Pamyati Dudina, created at the Vyatka State Agrotechnological University through the influence of various combinations of mutant factors on the seeds of spring barley variety Bios 1. During the research period a comprehensive study of mutant forms of spring barley was conducted in the nursery of competitive variety testing. The conducted research has confirmed the possibility of obtaining beneficial mutations on barley crop as a result of application of chemical and physical low-toxic and safe factors. Stress-resistant mutant forms capable of stable yield in both favorable and unfavorable years have been identified: M 4–10, M 5–3, M 9–5–3 and M 6–10. The conducted research has shown that all the studied mutant forms are characterized by a complex of breeding-valuable traits and are a valuable source material for the creation of new varieties of spring barley for the conditions of the Volga-Vyatka region. However, it is necessary to include them in crosses with lodging resistant genotypes.
About the Authors
I. Yu. ZaitsevaRussian Federation
Irina Yu. Zaitseva, CSc (Bio), Junior Research Associate at the Laboratory of Breeding and Primary Seed Production of Barley
166a Lenina St., Kirov, 610007
phone: (900) 528–38–96
L. V. Panikhina
Russian Federation
Lyubov V. Panikhina, post-graduate student, Junior Research Associate at the Laboratory of Breeding and Primary Seed Production of Barley
166a Lenina St., Kirov, 610007
phone: (912) 362–95–32
I. N. Schennikova
Russian Federation
Irina N. Schennikova, DSc (Ag), Corresponding Member of the Russian Academy of Sciences, head of the Laboratory of Breeding and Primary Seed Production of Barley
166a Lenina St., Kirov, 610007
phone: (912) 737–63–44
N. A. Zhilin
Russian Federation
Nikolay A. Zhilin, CSc (Bio), Research Associate at the Seed Production Department
166a Lenina St., Kirov, 610007
phone: (900) 525–01–97
References
1. Barkovskaya T.A., Gladysheva O.V., Kokoreva V.G. Assessment of adaptability and potential productivity of spring soft wheat in the conditions of the Ryazan region. Agricultural Science Euro-North-East. 2023;24(1):58–65. (In Russ.) https://doi.org/10.30766/2072-9081.2023.24.1.58-65
2. Belkina R.I., Gubanov M.V., Gryaznov A.A., Gubanova V.M. Grain quality of varieties of filmy and naked barley in the conditions of the Northern Urals. Agro-Food Policy in Russia. 2015;10:22–25. (In Russ.)
3. Boyko E.S., Salfetnikov A.A., Repko N.V., Nazarenko L.V. Estimation of initial material for breeding of winter barley in KubSAU. Polythematic Online Scientific Journal of Kuban State Agrarian University. 2014;97:799–809. (In Russ.)
4. Goncharenko A.A. On adaptivity and ecological resistence of grain crop varieties. Vestnik Rossiyskoy akademii sel’skokhozyaystvennykh nauk. 2005;6:49–53. (In Russ.)
5. Dospekhov B.A. Methodology of field experiment. Moscow, USSR: Kolos, 1985:416. (In Russ.)
6. Zhilin N.A., Schennikova I.N. Barley breeding methods and results in the Volga-Vyatka region. The Bulletin of Michurinsk State Agrarian University. 2020;1(60):79–82. (In Russ.)
7. Zykin V.A., Meshkov V.V., Sapega V.A. Parameters of ecological plasticity of agricultural plants, their calculation and analysis: methodical recommendations. Novosibirsk, USSR: SO VASKhNIL, 1984:11–21. (In Russ.)
8. Kozlova L.M., Popov F.A., Noskova E.N., Ivanov V.L. Improved resource-saving technology of soil cultivation and use of bio-preparations for spring cereals crops under conditions of central zone of North-East of European part of Russia. Agricultural Science Euro-North-East. 2017;(3):43–48. (In Russ.)
9. Krivchenko V.I., Shchelko L.G., Timoshenko Z.V. Methods for studying the resistance of barley and oats to smut diseases. Methods of phytopathological and entomological research in plant breeding. Moscow, USSR: Kolos, 1977:51–57. (In Russ.)
10. Lanochkina M.A., Blokhin V.I., Ganieva I.S., Dyurbin D.S., Vil’danova G.V. Source material for productivity in the breeding of spring barley. Vserossiyskaya nauchno-prakticheskaya konferentsiya, posvyashchennaya 95-letiyu so dnya osnovaniya TatNIISKH “Povyshenie effektivnosti APK v sovremennykh usloviyakh”. July 02–03, 2015. Kazan, Russia: OOO “Tsentr innovatsionnykh tekhnologiy”, 2015:161–175. (In Russ.)
11. Malchikov P.N., Myasnikova M.G. Approaches to the development of durum wheat cultivars (Triticum durum desf.) with wide variability of the growing season. Vavilov journal of genetics and breeding. 2015;19(2):176–184. (In Russ.)https://doi.org/10.18699/VJ15
12. Methodology of state variety testing of agricultural crops. Issue 1. General part. Moscow, Russia, 2019:329. (In Russ.)
13. Novikova V.M., Zharkova S.V., Dvornikova E.I., Shmidt R.V., Rosikhin P.S. Formation of indicators of the “yield” trait of spring barley varieties in the conditions of the grove belt of the Salair foothills. XII mezhdunarodnaya nauchno-prakticheskaya konferentsiya “ Agrarnaya nauka – sel’skomu khozyaystvu”. February 0 7–08, 2017. Barnaul, Russia: Altai State Agricultural University, 2017:221–223. (In Russ.)
14. Orlova E.A., Baechtold N.P. Characteristics of the gene pool of spring wheat (Triticum aestivum L.) for resistance to loose smut in the forest-steppe of Western Siberia. Vavilov Journal of Genetics and Breeding. 2019;23(5):551–558. (In Russ.)https://doi.org/10.18699/VJ19.524
15. Repko N.V., Koblyanskiy A.S., Khronyuk E.V. Plant height and lodging resistance of collection varieties of winter barley. Polythematic Online Scientific journal of Kuban State Agrarian University. 2017;133:160–172. (In Russ.)
16. Ryndin A.Yu. Physical of defining grain quality: analiysis of sources. Vestnik NGIEI. 2013;12(31):72–82. (In Russ.)
17. Selyaninov G.T. On agricultural climate assessment. Trudy po sel’skokhozyaystvennoy meteorologii. 1928;20:165–177. (In Russ.)
18. Talanov I.P., Vildanova G.V., Blokhin V.I., Lanochkina M.A. et al. Formation of protein in barley grain, cultivated in Tatarstan. Vestnik of the Kazan State Agrarian University. 2016;11(1):10–15. (In Russ.) https://doi.org/10.12737/19300
19. Tetyannikov N.V., Bome N.A. Studies on mutagenic effect of phosphemide in barley. Proceedings on Applied Botany, Genetics and Breeding. 2022;183(4):141–151. (In Russ.) https://doi.org/10.30901/2227-8834-2022-4-141-151
20. Usoltsev Yu.A. Reduction of losses of the harvest of spring barley from head diseases. Vestnik Kurganskoy GSKhA. 2018;3 (27):65–69. (In Russ.)
21. Sheshegova T.K. Analysis of a phytosanitary condition of sowings of spring grain crops in the Kirov region (Analytical review). Agricultural Science Euro-North-East. 2015;5 (48):10–14. (In Russ.)
22. Shchennikova I.N., Sheshegova T.K., Kokina L.P., Zaytseva I.Yu., Kovaleva O.N. Bioresources of spring barley for breeding new commercial varieties in the conditions of the Volga-Vyatka region: Methodological guidance. Kirov, Russia: Federal Agricultural Research Center of the North-East named N.V. Rudnitsky, 2022:28. (In Russ.)
23. Yusova O.A., Nikolaev P.N., Anis’kov N.I., Safonova I.V. Adaptability of barley varieties by the weight of 1000 grains under forest-steppe conditions of the Omsk region. Achievements of Science and Technology in Agro-Industrial Complex. 2020;34(2):24–28. (In Russ.) https://doi.org/10.24411/0235-2451-2020-10205
24. Yusova O.A., Nikolaev P.N. Highlights of the strategy for the implementation of the brewing barley variety program. Pomiculture and small fruits culture in Russia. 2023;72:13–15. (In Russ.) https://doi.org/10.31676/2073-4948-2023-72-13-15
25. Yakovlev VK., Pershakov A.Yu., Belkina R.I. Productivity and grain quality of malting barley in Northern Trans-Urals. Bulletin of KSAU. 2017;12:10–15. (In Russ.)
26. Ansari S.B., Raina A.A., Amin R., Jahan R. et al. Mutation breeding for quality improvement: A case study for oilseed crops shazia bi ansari, aamir raina. Mutagenesis, Cytotoxicity and Crop Improvement: Revolutionizing Food Science. 2021:171–221.
27. Fita A., Rodríguez B.A., Boscaiu M., Prohens J., Vicente O. Breeding and domesticating crops adapted to drought and salinity: a new paradigm for increasing food production. Frontiers in Plant Science. 2015;6:978. https://doi.org/10.3389/fpls.2015.00978
28. Ichida H., Morita R., Shirakawa Y., Hayashi Y., Abe T. Targeted exome sequencing of unselected heavy-ion beam-irradiated populations reveals less-biased mutation characteristics in the rice genome. The Plant Journal. 2019;98(2):301–314. https://doi.org/10.1111/tpj.14213
29. International Atomic Energy Agency (IEAE). URL: https://www.iaea.org/
30. Luxiang L., Xiong H ., Guo H ., Zhao L., Xie Y. New mutation techniques applied in crop improvement in China. FAO/IAEA International Symposium on Plant Mutation Breeding and Biotechnology, 2018.
31. Thomas C.D., Alison C., Green E., Bakkenes M. et al Extinction risk from climate change. Nature. 2004;427(6970):145–148.
32. Trukhachev V.I., Sklyarov I.Y., Sklyarova J.M., Latysheva L.A., Lapina H .N. Contemporary state of resource potential of agriculture in South Russia. International Journal of Economics and Financial Issues. 2016;6 (S5):33–41.
33. Viana V.E., Pegoraro C., Busanello C., Costa de Oliveira A. Mutagenesis in rice: the basis for breeding a new super plant. Frontiers in plant science. 2019;10. https://doi.org/10.3389/fpls.2019.01326
Review
For citations:
Zaitseva I.Yu., Panikhina L.V., Schennikova I.N., Zhilin N.A. Breeding value of mutant forms of spring barley in the conditions of the Volga-Vyatka region. IZVESTIYA OF TIMIRYAZEV AGRICULTURAL ACADEMY. 2024;1(3):49-62. (In Russ.) https://doi.org/10.26897/0021-342X-2024-3-49-62