SCREENING OF ROOT SYSTEM PARAMETERS OF THE INTERNATIONAL COLLECTION OF WINTER WHEAT IN WESTERN SIBERIA
Rubrics: AGRONOMY
Abstract and keywords
Abstract:
The development of varieties with improved root system architecture is a promising direction in winter wheat breeding, aimed at enhancing yield and stress adaptability. This study presents a comparative analysis of 96 winter wheat accessions from Russia, Germany, Finland, Kazakhstan, Bulgaria, Turkey, the USA, and the IWWIP international program. Field experiments were conducted at the experimental field of Omsk State Agrarian University in 2023-2024 using standard agronomic and laboratory methods. Under conditions of both moisture deficit and excess, a weak positive correlation was found between yield and root system parameters (r = 0.01-0.16), suggesting that excessive root development is not a critical factor for plant productivity. Varieties with moderately developed root systems demonstrated more efficient resource allocation toward yield formation (334-612 g/m²), including varieties Zhiva, Line 2293 (Russia), Darunok Podilla (Bulgaria), Gelibolu, MV-Dandar (Türkiye), CO13D1299, SY Wolf, Judee (USA), and lines IWWIP program. Russian breeding program emphasized longer main root (13.7-15.1 cm), total root length (135-146 cm), surface area (42.7-54.9 cm²), diameter (1.19-1.38 mm), volume (1.03-1.75 cm³), and root tips (196-299), outperforming foreign accessions. For hybridization programs, Russian varieties with elongated and branched root systems are recommended to improve drought tolerance and yield: Line K 18918, Etnos, Duplet, Tanais, Barynya, Anka.

Keywords:
winter wheat, root system, yield, correlation
References

1. Nikolaev P.N., Yusova O.A. Ozimye kul'tury v agroekologicheskih usloviyah Zapadnoy Sibiri // Ekologicheskie chteniya-2021: materialy HII Nac. nauch.-prakt. konf. s mezhdunar. uchastiem. Omsk. Izd-vo: Omskiy GAU im. P.A. Stolypina, 2021. S. 484-492. EDN: https://elibrary.ru/RAPJPG

2. Genotipirovanie sortoobrazcov ozimoy pshenicy dlya selekcii na urozhaynost' v usloviyah Zapadnoy Sibiri / I.V. Potockaya, S.S. Shepelev, A.S. Chursin [i dr.] // Agrarnyy nauchnyy zhurnal. 2025. № 5. S. 26-33. DOI:https://doi.org/10.28983/asj.y2025i5pp26-33 EDN: https://elibrary.ru/PDWJNE

3. Bapela T., Shimelis H., Tsilo T.J., Mathew I. Genetic improvement of wheat for drought tolerance: Progress, challenges and opportunities. Plants. 2022; 11(10): article number 1331. 10.3390/ plants11101331. DOI:https://doi.org/10.3390/plants11101331 EDN: https://elibrary.ru/FHYJAE

4. Tao X., Wang Y., Sheng H. The research progress on wheat root system architecture and drought re-sistance: Morphological characteristics, genetic regulation, and application prospects // Geographical Research Bulletin. 2024;3:558-576. DOI:https://doi.org/10.50908/grb.3.0_558

5. Djanaguiraman M., Prasad P.V.V., Kumari J., Rengel Z. Root length and root lipid composition con-tribute to drought tolerance of winter and spring wheat // Plant and Soil. 2019;439(1):57-73. DOI:https://doi.org/10.1007/s11104-018-3794-3 EDN: https://elibrary.ru/EVWZXZ

6. Stress-induced deeper rooting in-trogression enhances wheat yield under terminal drought / H. Bacher, A. Montagu, I. Herrmann [et al.] // Journal of experimental botany. 2023;74(16):4862-4874. DOI:https://doi.org/10.1093/jxb/erad059 EDN: https://elibrary.ru/DDJEHL

7. Root system architecture of historical spring wheat cultivars is associated with alleles and transcripts of major functional genes / S. Maqbool, S. Ahmad, Z. Kainat [et al.] // BMC Plant Biology. 2022);22(1). article number: 590. DOI:https://doi.org/10.1186/s12870-022-03937-7 EDN: https://elibrary.ru/YGLMYG

8. Metodicheskie ukazaniya. Izuchenie kollekcii pshenicy; pod red. V.F. Dorofeeva. L.: VIR, 1985. 27 s.

9. Ehdaie B., Layne A.P., Waines J.G. Root system plasticity to drought influences grain yield in bread wheat. Euphytica. 2012;186(1):219-232. DOI:https://doi.org/10.1007/s10681-011-0585-9 EDN: https://elibrary.ru/VMACOB

10. The role of root architectural traits in adap-tation of wheat to water-limited environments / A.M. Manschadi, J. Christopher, P. de Voil [et al.] // Functional Plant Biology. 2006;33(9):823-837. DOI:https://doi.org/10.1071/FP06055

11. Limited-irrigation improves water use efficiency and soil reservoir capacity through regulating root and canopy growth of winter wheat / C. Xu, H. Tao, B. Tian [et al.] // Field Crops Research. 2016;196:268-275. DOI:https://doi.org/10.1016/j.fcr.2016.07.009

12. The relationships between seedling root screens, root growth in the field and grain yield for wheat. C. Bai, Y. Ge, R.W. Ashton [et al.] // Plant and Soil. 2019;440(1):311-326. DOI:https://doi.org/10.1007/s11104-019-04088-9 EDN: https://elibrary.ru/EMNBBW

13. FENOTIPIROVANIE I GENOTIPIROVANIE SORTOV I LINIY OZIMOY PShENICY PO ZIMOSTOYKOSTI, PRIZNAKAM PRODUKTIVNOSTI RASTENIY, KAChESTVU ZERNA, USTOYChIVOSTI K BOLEZNYaM I ZASUHE, VYYaVLENIE ISTOChNIKOV I SOZDANIE ISHODNOGO MATERIALA DLYa SELEKCII V ZAPADNOY SIBIRI Potockaya I.V. NIR: grant № 23-16-20006. Rossiyskiy nauchnyy fond. 2023. EDN: https://elibrary.ru/GAJOLF

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