Preview

Bulletin of NSAU (Novosibirsk State Agrarian University)

Advanced search

Yield and adaptability of spring wheat varieties of different maturity groups under forest-steppe conditions of the Northern Trans-Urals

https://doi.org/10.31677/2072-6724-2022-64-3-67-75

Abstract

In the article, the authors present data on the yield of spring wheat varieties based on the results of their testing on a fallow predecessor in the conditions of the northern forest-steppe zone of the Tyumen region for 2019–2021. The study aims to comprehensively assessment of mid-early and mid-season varieties of spring wheat based on their ranking in terms of yield and adaptability parameters. The authors note a significant variation in the index of environmental conditions during the years of variety testing. The highest average yield was noted in the varieties Tyumenskaya 25 (mid-early, 47.7 c/ha) and KVS Akvilon (mid-ripening, 47.8 c/ha). The stress resistance index is low in all varieties and mid-season ones especially. All varieties were characterized by significant yield variability - from 21.0 (Novosibirskaya 15) to 28.7% (KVS Akvilon). Strong responsiveness to changing conditions was found in varieties Tyumenskaya 25 (bi = 1.25) and KVS Akvilon (bi = 1.21). These varieties are intense. Most varieties with a regression coefficient equal to or close to one were characterized as plastic and classified as semi-intensive. The level of yield stability of varieties is low. The best varieties in this parameter were Ekaterina (Ist = 1.91) and Ikar (Ist = 1.93). The varieties Tyumenskaya 25 (OAS = 4.1) and KVS Akvilon (OAS = 2.2) were characterized by the highest general adaptive ability. According to the sum of the ranks assessing the parameters of productivity and adaptability, the varieties Tyumenskaya 25 and Ekaterina were recognized as the best in the group of mid-early varieties (the sum of ranks, respectively, 17) and the group of mid-ripening varieties, KVS Akvilon (the sum of ranks, 17).

About the Authors

V. A. Sapega
Tyumen Industrial University
Russian Federation

Doctor of Agricultural Sciences, Professor 

Tyumen



G. Sh. Tursumbekova
State Agrarian University of the Northern Trans-Urals
Russian Federation

Doctor of Agricultural Sciences, Professor 

Tyumen



References

1. Stasyuk A.I., Leonova I.N., Ponomareva M.L., Vasilova N.Z., SHamanin V.P., Silina E.A., Sel’skokhozyajstvennaya biologiya, 2021, No. 56(1), pp. 78–91. (In Russ.)

2. Magomedov N.R., Magomedov N.N., Abdullaev ZH.N., Gadzhiev M.M., Zernovoe khozyajstvo Rossii, 2020, No. 4(70), pp. 3–5. (In Russ.)

3. Alabushev A.V., Gureeva A.V., Zemledelie, 2011, No. 6, pp. 6–7. (In Russ.)

4. ZHuchenko A.A., Adaptivnyj potentsial kul’turnykh rastenij: ehkologo-geneticheskie osnovy (Adaptive potential of cultivated plants: ecological and genetic foundations), Kishinev: Shtiinets, 1988, 766 p.

5. Rybas’ I.A., Sel’skokhozyajstvennaya biologiya, 2016, No. 51(5), pp. 617–626. (In Russ.)

6. Karsai I., Meszaros K., Lang L., Plant breeding, 2001, No. 120 (3), pp. 217–222.

7. Goncharenko A.A., Zernovoe khozyajstvo Rossii, 2016, No. 2(44), pp. 31–36. (In Russ.)

8. ZHuchenko A.A., Sel’skokhozyajstvennaya biologiya, 2000, No. 3, pp. 3–29. (In Russ.)

9. Gerasimenko V.F., Sel’skokhozyajstvennaya biologiya, 1981, No. 6, pp. 938–941. (In Russ.)

10. Sapega V.A., Sel’skokhozyajstvennaya biologiya, 2008, No. 1, pp. 55–59. (In Russ.)

11. Nikitina V.I., Kolichenko A.A., Vestnik KrasGAU, 2019, No. 3, pp. 58–64. (In Russ.)

12. Goncharenko A.A., Rossijskaya sel’skohozyajstvennaya nauka, 2019, No. 3, pp. 3–9. (In Russ.)

13. Syukov V.V., Zaharov V.G., Mal’chikov P.N., Krivobochek V.G., Nikonov V.I., Vasilova N.Z., Ganeev V.A., Gulaeva N.V., Menibaev A.I., Agrarnyj nauchnyj zhurnal, 2019, No. 2, pp. 4–12. (In Russ.)

14. Gudzenko V.N., Vavilovskij zhurnal genetiki i selekcii, 2019, No. 23(1), pp. 110–118. (In Russ.)

15. Nikolaev P.N., YUsova O.A., Safonova I.V., Anis’kov N.I., Agrarnyj vestnik Urala, 2020, No. 12 (203), pp. 22–34. (In Russ.)

16. Mut Z., Aydin N., Bayramoglu H.O., Ozcan H., Stability of some quality trains in bread wheat (Triticum aestivum) genotypes, Journal of Environmental Biology, 2010, No. 31, pp. 489–495.

17. Das S., Misra R.S., Sinha S.K., Pattanaik M.C., Variation in streptomycin-induced bleaching and dark induced senescence of rice (Oryza sativa) genotypes and their relationship whith yield and adaptability, Plant. Breed.Crop. Sci., 2010, No. 2 (6), pp. 139–147.

18. Raja S., Bagle B.G., More T.A., Drumstick (Moringa oleifera Lamk.) improvement for semiarid and arid ecosystem: analysis of environmental stability for yield, Plant Breed. Crop Sci., 2013, No. 5 (8), pp. 164–170.

19. Grebennikova I.G., CHeshkova A.F., Styopochkin P.I., Alejnikov A.F., CHanyshev D.I., Sibirskij vestnik sel’skohozjajstvennoj nauki, 2020, No. 50(2), pp. 100–107. (In Russ.)

20. Vydrin V.V., Fedoruk T.K., Sortovoe rajonirovanie sel’skokhozyajstvennykh kul’tur i rezul’taty sortoispytaniya po Tyumenskoj oblasti za 2021 god (Varietal zoning of crops and results of variety testing in the Tyumen region for 2021), Tyumen: Tyumen Publishing House, 2021, 95 p.

21. Eberhart S.A., Russell W.A., Stability parameters for comparing varieties, Crop. Sci., 1966, No. 6(1), pp. 36–40.

22. Rossielle A.A., Hamblin J., Theoretical aspects of selection for yield in stress and non-stress environments, Crop. Sci., 1981, No. 21(6), pp. 27–29.

23. Goncharenko A.A., Vestnik RASKHN, 2005, No. 6, pp. 49–53. (In Russ.)

24. Dospekhov B.A., Metodika polevogo opyta (s osnovami statisticheskoj obrabotki rezul’tatov issledovanij) (Field experience methodology (with the basics of statistical processing of study results), Moscow: Alliance, 2011, 352 p.

25. Nettevich EH.D., Morgunov A.I., Maksimenko M.I., Vestnik sel’skokhozyajstvennoj nauki, 1985, No. 1, pp. 66–73. (In Russ.)

26. Kil’chevskij A.V., KHotylyova L.V., EHkologicheskaya selektsiya rastenij (Ecological plant breeding), Minsk: Technology, 1997, 372 p.

27. Nettevich E.D., Doklady RASKHN, 2001, No. 3, pp. 3–6. (In Russ.)

28. ZHuchenko A.A., Adaptivnaya sistema selekcii rastenij (ekologo-geneticheskie osnovy) (Adaptive system of plant breeding (ecological and genetic basis)), Moscow: Izd-vo RUDN, 2001, T. 1, 780 p. (In Russ.)

29. Geiger H.H., Breeding methods in diploid rye (Secale cereale L.), Tag.-Ber.Akad.Landwirtsch.- Wiss.DDR, Berlin, 1982, 198, pp. 305–332.

30. Nikolaev P.N., Anis’kov N.I., YUsova O.A., Safonova I.V., Popolzukhin P.V., Vestnik NGAU, 2018, No. 2(47), pp. 37–44. (In Russ.)


Review

For citations:


Sapega V.A., Tursumbekova G.Sh. Yield and adaptability of spring wheat varieties of different maturity groups under forest-steppe conditions of the Northern Trans-Urals. Bulletin of NSAU (Novosibirsk State Agrarian University). 2022;(3):67-75. (In Russ.) https://doi.org/10.31677/2072-6724-2022-64-3-67-75

Views: 333


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


ISSN 2072-6724 (Print)