PLANT HEIGHT IN SYNTHETIC POPULATIONS OF WINTER RYE IN THE CONDITIONS OF THE NORTHERN FOREST STEPPE OF UKRAINE
Keywords:
winter rye, selection, inheritance, plant height, synthetic populations
References
1. Andersson, R., Fransson, G., Tietjen, M. & Aman, P. (2009). Content and molecular-weight distribution of dietary fiber components in wholegrain rye flour and bread. J Agric Food Chem., 57(5), 2004–2008.
2. Börner, A., Korzun, V., Voylokov, A.V., & Weber, W.E. (1999). Detection of quantitative trait loci on chromosome 5R of rye (Secale cereale L.). Theor Appl Genet., 98(6–7), 1087–1090.
3. Brzozowski, L.J., Szuleta, E., Phillips, T.D., Van Sanford, D.A., & Clark, A.J. (2023). Breeding cereal rye (Secale cereale) for quality traits. Crop Science, 63, 1964–1987. doi: 10.1002/csc2.21022
4. Bundessortenamt (2023). Beschreibende Sortenliste: Getreide, Mais; Öl- und Faserpflanzen; Leguminosen, Rüben, Zwischen-Früchte; Bundessortenamt [Federal plant variety office]. Hannover, Germany. (in German).
5. Bunyak, O.I. (2010). Osoblyvosti uspadkuvannya kilkisnykh oznak donoriv korotkosteblovosti zhyta ozymoho ta yikh vykorystannya v selektsiyi [Peculiarities of the inheritance of quantitative traits of short-stemmed donors of winter rye and their use in breeding]. Dys. na zdobuttya nauk. stupenya kand. s.h. nauk: spets. 06.01.05 «Selektsiya i nasinnytstvo» (in Ukrainian).
6. Crespo-Herrera, L.A., Garkava-Gustavsson, L., & Åhman, I. (2017). A systematic review of rye (Secale cereale L.) as a source of resistance to pathogens and pests in wheat (Triticum aestivum L.). Hereditas. May 25. 154, 14. doi: 10.1186/s41065-017-0033-5.
7. Demydov, O.A., Khomenko, S.O., Chuhunkova, T.V., & Fedorenko, I.V. (2019). Urozhaynist ta homeostatychnist kolektsiynykh zrazkiv pshenytsi yaroyi. [Productivity and homeostaticity of collection samples of spring wheat]. Visn. ahrar. Nauky, 9(798), 47–51 (in Ukrainian).
8. Eberhart, S.A. & Russel, W.A. (1966). Stability parameters for comparing varieties. Crop Science, 6, 36–40.
9. Fedorenko, M.V. (2016). Selektsiya pshenytsi tverdoyi yaroyi na stiykist do vylyahannya ta produktyvnist roslyn dlya umov Lisostepu Ukrayiny [Breeding of durum wheat for burning resistance and productivity of plants for the conditions of the Forest Steppe of Ukraine]. Dys. na zdobuttya nauk. stupenya kand. s.h. nauk: spets. 06.01.05 «Selektsiya i nasinnytstvo» (in Ukrainian).
10. Gale, M.D. & Youssefian, S. (1985). Dwarfing genes in wheat. In Progress in plant breeding 1. Edited by Russell G.E. London: Butterworth, 1–35.
11. Hackauf, B., Siekmann, D. & Fromme, F.J. (2022). Improving yield and yield stability in winter rye by hybrid breeding. Plants. 11, 2666. doi: 10.3390/plants11192666.
12. Information and search system "Register of varieties" (2024). Access mode: http://service.ukragroexpert.com.ua.
13. Khanhyldyn, V.V., & Lytvynenko, N.A. (1981). Homeostaticity and adaptability of winter wheat varieties. Nauch.- tekhn. byul. VSHY, 1(39), 8–14.
14. Kobylyanskyy, V.D. (1982) Rye. genetic bases of selection, М., 221.
15. Korzun, V., Malyshev, S., Voylokov, A.V, & Borner, A. (2001). A genetic map of rye (Secale cereale L.) combining RFLP, isozyme, protein, microsatellite and gene loci. Theor Appl Genet., 102, 709–717.
16. Laidig, F., Piepho, H.P., Rentel, D. Drobek, T., & Meyer, U. Huesken, A. (2017). Breeding progress, variation, and correlation of grain and quality traits in winter rye hybrid and population varieties and national on-farm progress in Germany over 26 years. Theor Appl Genet., 130, 981–998. doi: 10.1007/s00122-017-2865-9.
17. Litun, P.P., Kyrychenko, V.V., Petrenkova, V.P., & Kolomatska, V.P. (2009). Systemnyy analiz v selektsiyi polovykh kultur. [Systematic analysis in the selection of field crops]. Mahda, Kharkiv (in Ukrainian).
18. Mazur, Z.O., Kornieieva, M.O., & Orlov, S.D. (2023). Fenotypovyi proiav asotsiatyvnykh morfohenetychnykh oznak u prostykh sterylnykh hibrydiv zhyta ozymoho (Secale cereale L.) [Рhenotypic manifestation of associative morphogenetic traits in single-cross sterile hybrids of winter rye (Secale cereale L.)]. Zernovi kultury, 7 (2), 258–269 (in Ukrainian).
19. Miedaner, T., Hübner, M., Korzun, V., Schmiedchen, B., Bauer, E., Haseneyer, G., Wilde, P., & Reif, J. C. (2012). Genetic architecture of complex agronomic traits examined in two testcross populations of rye (Secale cereale L.). BMC Genomics. 13, 706. doi:10.1186/1471-2164-13-706.
20. Miedaner, T., Müller, B.U., Piepho, H.P., & Falke, K.C. (2011). Genetic architecture of plant height in winter rye introgression libraries. Plant Breeding, 130(2), 209–216.
21. Niedziela, A.,& Bednarek, P.T. (2023) Population structure and genetic diversity of a germplasm for hybrid breeding in rye (Secale cereale L.) using high-density DArTseq-based silicoDArT and SNP markers. J Appl Genetics, 64, 217–229. doi: 10.1007/s13353-022-00740-w.
22. Olkhovyk, M.S. (2023). Variiuvannia oznak «vysota roslyn» ta «vysota prykriplennia kachana» u skorostyhlykh hibrydiv kukurudzy v umovakh optymalnoho ta piznoho strokiv sivby. [Variation of plant height and ear insertion height traits in short-season maize hybrids under the optimal and late sowing dates]. Zernovi kultury, 7 (1), 13–18 (in Ukrainian).
23. Rakoczy-Trojanowska, M., Bolibok-Brągoszewska, H., Myśków, B., Dzięgielewska, M., Stojałowski, S., Grądzielewska, A., Boczkowska, M., & Moskal, K. (2021). Genetics and genomics of stress tolerance. In M. T. Rabanus-Wallace, & N. Stein (Eds.), The rye genome, 213–251. Springer International Publishing.
24. Rysin, A.L., & Volohdina, H.B. (2023). Minlyvist elementiv struktury vrozhainosti sortiv i selektsiinykh linii pshenytsi ozymoi v umovakh Lisostepu Ukrainy [Variability of yield components in winter wheat varieties and breeding lines under environment of Ukrainian Forest-Steppe]. Zernovi kultury, 7(1), 43–54 (in Ukrainian).
25. Shelepov, V.V., Havrylyuk, M.M., Chebakov, M.P., Honchar, O.M. & Verhunov, V.A. (2007). Selektsiya, nasinnytstvo ta sortoznavstvo pshenytsi [Breeding, seed production and varietal science of wheat]. Myronivka, 405 (in Ukrainian).
26. Siekmann, D., Jansen, G., Zaar, A., Kilian, A., Fromme, F.J., & Hackauf, B. (2021). A genome-wide association study pinpoints quantitative trait genes for plant height, heading date, grain quality, and yield in rye (Secale cereale L.). Frontiers in Plant Science, 12, 718081.
27. Skoryk, V.V. (2013) Donor korotkosteblosti zhyta ozymoho (Secale cereale L.) Hnom 1. [Gnome 1 as a donor for winter rye (Secale cereale L.) short stem] Sortovyvchennya ta okhorona prav na sorty roslyn, 4, 4–17 (in Ukrainian).
28. Skoryk, V.V. (2013) Donor korotkosteblosti zhyta ozymoho (Secale cereale L.) Hnom 2. [Gnome 2 as a donor for winter rye (Secale cereale L.) short stem]. Sortovyvchennya ta okhorona prav na sorty roslyn, 2, 4–11 (in Ukrainian).
29. Skoryk, V.V. (2013). Rezultaty tryvaloho spryamovanoho doboru na korotkosteblist zhyta ozymoho (Secale cereale L.). [Output of continuous directed selection aimed at short stem development in Winter Rye (Secale cereale L.)] Sortovyvchennya ta okhorona prav na sorty roslyn, 2(19), 23–30 (in Ukrainian).
30. Wright, S. (1921) Correlation and causation. J. of Agric. Res. 20(7), 557–585.
31. Zmiyevska, O.A., & Yehorov, D.K. (2015). Uspadkuvannya tsinnykh oznak u prostykh hibrydiv F1 zhyta ozymoho. [Inheritance of valuable traits in F1 simple hybrids of winter rye]. Selektsiya i nasinnytstvo, 108, 92–98. (in Ukrainian).
32. Zohary, D. & Hopf, M. (2000). Domestication of plants in the Old World, third edition. University Press, Oxford, 75.
2. Börner, A., Korzun, V., Voylokov, A.V., & Weber, W.E. (1999). Detection of quantitative trait loci on chromosome 5R of rye (Secale cereale L.). Theor Appl Genet., 98(6–7), 1087–1090.
3. Brzozowski, L.J., Szuleta, E., Phillips, T.D., Van Sanford, D.A., & Clark, A.J. (2023). Breeding cereal rye (Secale cereale) for quality traits. Crop Science, 63, 1964–1987. doi: 10.1002/csc2.21022
4. Bundessortenamt (2023). Beschreibende Sortenliste: Getreide, Mais; Öl- und Faserpflanzen; Leguminosen, Rüben, Zwischen-Früchte; Bundessortenamt [Federal plant variety office]. Hannover, Germany. (in German).
5. Bunyak, O.I. (2010). Osoblyvosti uspadkuvannya kilkisnykh oznak donoriv korotkosteblovosti zhyta ozymoho ta yikh vykorystannya v selektsiyi [Peculiarities of the inheritance of quantitative traits of short-stemmed donors of winter rye and their use in breeding]. Dys. na zdobuttya nauk. stupenya kand. s.h. nauk: spets. 06.01.05 «Selektsiya i nasinnytstvo» (in Ukrainian).
6. Crespo-Herrera, L.A., Garkava-Gustavsson, L., & Åhman, I. (2017). A systematic review of rye (Secale cereale L.) as a source of resistance to pathogens and pests in wheat (Triticum aestivum L.). Hereditas. May 25. 154, 14. doi: 10.1186/s41065-017-0033-5.
7. Demydov, O.A., Khomenko, S.O., Chuhunkova, T.V., & Fedorenko, I.V. (2019). Urozhaynist ta homeostatychnist kolektsiynykh zrazkiv pshenytsi yaroyi. [Productivity and homeostaticity of collection samples of spring wheat]. Visn. ahrar. Nauky, 9(798), 47–51 (in Ukrainian).
8. Eberhart, S.A. & Russel, W.A. (1966). Stability parameters for comparing varieties. Crop Science, 6, 36–40.
9. Fedorenko, M.V. (2016). Selektsiya pshenytsi tverdoyi yaroyi na stiykist do vylyahannya ta produktyvnist roslyn dlya umov Lisostepu Ukrayiny [Breeding of durum wheat for burning resistance and productivity of plants for the conditions of the Forest Steppe of Ukraine]. Dys. na zdobuttya nauk. stupenya kand. s.h. nauk: spets. 06.01.05 «Selektsiya i nasinnytstvo» (in Ukrainian).
10. Gale, M.D. & Youssefian, S. (1985). Dwarfing genes in wheat. In Progress in plant breeding 1. Edited by Russell G.E. London: Butterworth, 1–35.
11. Hackauf, B., Siekmann, D. & Fromme, F.J. (2022). Improving yield and yield stability in winter rye by hybrid breeding. Plants. 11, 2666. doi: 10.3390/plants11192666.
12. Information and search system "Register of varieties" (2024). Access mode: http://service.ukragroexpert.com.ua.
13. Khanhyldyn, V.V., & Lytvynenko, N.A. (1981). Homeostaticity and adaptability of winter wheat varieties. Nauch.- tekhn. byul. VSHY, 1(39), 8–14.
14. Kobylyanskyy, V.D. (1982) Rye. genetic bases of selection, М., 221.
15. Korzun, V., Malyshev, S., Voylokov, A.V, & Borner, A. (2001). A genetic map of rye (Secale cereale L.) combining RFLP, isozyme, protein, microsatellite and gene loci. Theor Appl Genet., 102, 709–717.
16. Laidig, F., Piepho, H.P., Rentel, D. Drobek, T., & Meyer, U. Huesken, A. (2017). Breeding progress, variation, and correlation of grain and quality traits in winter rye hybrid and population varieties and national on-farm progress in Germany over 26 years. Theor Appl Genet., 130, 981–998. doi: 10.1007/s00122-017-2865-9.
17. Litun, P.P., Kyrychenko, V.V., Petrenkova, V.P., & Kolomatska, V.P. (2009). Systemnyy analiz v selektsiyi polovykh kultur. [Systematic analysis in the selection of field crops]. Mahda, Kharkiv (in Ukrainian).
18. Mazur, Z.O., Kornieieva, M.O., & Orlov, S.D. (2023). Fenotypovyi proiav asotsiatyvnykh morfohenetychnykh oznak u prostykh sterylnykh hibrydiv zhyta ozymoho (Secale cereale L.) [Рhenotypic manifestation of associative morphogenetic traits in single-cross sterile hybrids of winter rye (Secale cereale L.)]. Zernovi kultury, 7 (2), 258–269 (in Ukrainian).
19. Miedaner, T., Hübner, M., Korzun, V., Schmiedchen, B., Bauer, E., Haseneyer, G., Wilde, P., & Reif, J. C. (2012). Genetic architecture of complex agronomic traits examined in two testcross populations of rye (Secale cereale L.). BMC Genomics. 13, 706. doi:10.1186/1471-2164-13-706.
20. Miedaner, T., Müller, B.U., Piepho, H.P., & Falke, K.C. (2011). Genetic architecture of plant height in winter rye introgression libraries. Plant Breeding, 130(2), 209–216.
21. Niedziela, A.,& Bednarek, P.T. (2023) Population structure and genetic diversity of a germplasm for hybrid breeding in rye (Secale cereale L.) using high-density DArTseq-based silicoDArT and SNP markers. J Appl Genetics, 64, 217–229. doi: 10.1007/s13353-022-00740-w.
22. Olkhovyk, M.S. (2023). Variiuvannia oznak «vysota roslyn» ta «vysota prykriplennia kachana» u skorostyhlykh hibrydiv kukurudzy v umovakh optymalnoho ta piznoho strokiv sivby. [Variation of plant height and ear insertion height traits in short-season maize hybrids under the optimal and late sowing dates]. Zernovi kultury, 7 (1), 13–18 (in Ukrainian).
23. Rakoczy-Trojanowska, M., Bolibok-Brągoszewska, H., Myśków, B., Dzięgielewska, M., Stojałowski, S., Grądzielewska, A., Boczkowska, M., & Moskal, K. (2021). Genetics and genomics of stress tolerance. In M. T. Rabanus-Wallace, & N. Stein (Eds.), The rye genome, 213–251. Springer International Publishing.
24. Rysin, A.L., & Volohdina, H.B. (2023). Minlyvist elementiv struktury vrozhainosti sortiv i selektsiinykh linii pshenytsi ozymoi v umovakh Lisostepu Ukrainy [Variability of yield components in winter wheat varieties and breeding lines under environment of Ukrainian Forest-Steppe]. Zernovi kultury, 7(1), 43–54 (in Ukrainian).
25. Shelepov, V.V., Havrylyuk, M.M., Chebakov, M.P., Honchar, O.M. & Verhunov, V.A. (2007). Selektsiya, nasinnytstvo ta sortoznavstvo pshenytsi [Breeding, seed production and varietal science of wheat]. Myronivka, 405 (in Ukrainian).
26. Siekmann, D., Jansen, G., Zaar, A., Kilian, A., Fromme, F.J., & Hackauf, B. (2021). A genome-wide association study pinpoints quantitative trait genes for plant height, heading date, grain quality, and yield in rye (Secale cereale L.). Frontiers in Plant Science, 12, 718081.
27. Skoryk, V.V. (2013) Donor korotkosteblosti zhyta ozymoho (Secale cereale L.) Hnom 1. [Gnome 1 as a donor for winter rye (Secale cereale L.) short stem] Sortovyvchennya ta okhorona prav na sorty roslyn, 4, 4–17 (in Ukrainian).
28. Skoryk, V.V. (2013) Donor korotkosteblosti zhyta ozymoho (Secale cereale L.) Hnom 2. [Gnome 2 as a donor for winter rye (Secale cereale L.) short stem]. Sortovyvchennya ta okhorona prav na sorty roslyn, 2, 4–11 (in Ukrainian).
29. Skoryk, V.V. (2013). Rezultaty tryvaloho spryamovanoho doboru na korotkosteblist zhyta ozymoho (Secale cereale L.). [Output of continuous directed selection aimed at short stem development in Winter Rye (Secale cereale L.)] Sortovyvchennya ta okhorona prav na sorty roslyn, 2(19), 23–30 (in Ukrainian).
30. Wright, S. (1921) Correlation and causation. J. of Agric. Res. 20(7), 557–585.
31. Zmiyevska, O.A., & Yehorov, D.K. (2015). Uspadkuvannya tsinnykh oznak u prostykh hibrydiv F1 zhyta ozymoho. [Inheritance of valuable traits in F1 simple hybrids of winter rye]. Selektsiya i nasinnytstvo, 108, 92–98. (in Ukrainian).
32. Zohary, D. & Hopf, M. (2000). Domestication of plants in the Old World, third edition. University Press, Oxford, 75.
Published
2024-10-23
How to Cite
Bunyak, O. I., & Shovkun, S. V. (2024). PLANT HEIGHT IN SYNTHETIC POPULATIONS OF WINTER RYE IN THE CONDITIONS OF THE NORTHERN FOREST STEPPE OF UKRAINE. Bulletin of Sumy National Agrarian University. The Series: Agronomy and Biology, 56(2), 10-16. https://doi.org/10.32782/agrobio.2024.2.2