Preview

Siberian Herald of Agricultural Science

Advanced search

DEVELOPMENT OF SPRING TRITICALE VARIETY MODEL

https://doi.org/10.26898/0370-8799-2018-1-12

Abstract

The model of spring triticale variety adapted to the conditions of the forest-steppe zone of Western Siberia was developed based on  empirical data obtained during breeding. The work was carried out  using the results of the analysis of the relationships between the  indexes of plant grains mass and morphobiological characteristics of  the plant. According to the results of breeding studies of spring  triticale in 2009–2016, there was created computer database  containing information on productivity, product quality, resistance to diseases, pests and other characteristics. The materials for  breeding were intervarietal hybrids of hexaploid spring triticale  obtained by diallel crossings of four spring triticale varieties from the world collection of the N.I. Vavilov Research Institute of Plant  Industry (Sokol Kharkovskiy, Ukro, Gabo, K-3881) as well as by  crossing of these varieties with Sirs 57– a winter triticale variety  bred at Siberian Research Institute of Plant Production and Breeding  – branch of IC&G SB RAS. A conceptual scheme of the spring triticale variety model was elaborated, revealing a logical sequence  of operations required to build a variety model version. We used the  practical data to correct the parameters of the model variety that  allowed us to determine the limits of variability of the potential yield, provided by the climate resources in a specific soil-climatic zone. The following main parameters of spring triticale variety model were  determined: the number of grains of the main ear is 50–60 pieces,  the length of the ear is 11–13 cm; weight of 1000 grains is 60 g, grain yield is 50 c/ha.

About the Authors

I. G. Grebennikova
Siberian Federal Scientific Center of Agro-BioTechnologies of the Russian Academy of Sciences
Russian Federation

Candidate of Agricultural Sciences, Leading Researcher

Krasnoobsk, Novosibirsk Region, 630501, Russia



P. I. Stepochkin
Siberian Federal Scientific Center of Agro-BioTechnologies of the Russian Academy of Sciences Siberian Institute of Plant Production and Breeding – Branch of the Institute of Cytology and Genetics SB RAS
Russian Federation

Doctor of Agricultural Sciences, Leading Researcher

Krasnoobsk, Novosibirsk Region, 630501, Russia

Krasnoobsk, Novosibirsk Region, 630501, Russia



A. F. Cheshkova
Siberian Federal Scientific Center of Agro-BioTechnologies of the Russian Academy of Sciences
Russian Federation

Candidate of Physic-Mathematics, Leading Researcher

Krasnoobsk, Novosibirsk Region, 630501, Russia



A. F. Aleynikov
Siberian Federal Scientific Center of Agro-BioTechnologies of the Russian Academy of Sciences Novosibirsk State Technical University
Russian Federation

Doctor of Technics, Professor, Chief Researcher

Krasnoobsk, Novosibirsk Region, 630501, Russia

20, Karl Marx Ave, Novosibirsk, 630073, Russia



References

1. Gudinova L.G., Zykin V.A., Kalashnik N.A. K modeli sorta yarovoi myagkoi pshenitsy dlya uslovii Zapadnoi Sibiri // Primenenie fiziologicheskikh metodov pri otsenke selektsionnogo materiala i modelirovanie novykh sortov sel’skokhozyaistvennykh kul’tur: mater. I Vsesoyuz. konf. po primeneniyu fiziologicheskikh metodov v selektsii rastenii. g. Zhodino, Minskoi obl. – M., 1983. – C. 47–52.

2. Kukenov V.G., Karamyshev R.M. O modelirovanii selektsionnogo protsessa. Genetika kolichestvennykh priznakov sel’skokhozyaistvennykh rastenii. – M.: Izdvo Nauka, 1978. – C. 10–15.

3. Orlyuk A.P. Fiziologo-geneticheskii printsip sozdaniya intensivnykh sortov ozimoi pshenitsy dlya oroshaemogo zemledeliya // Primenenie fiziologicheskikh metodov pri otsenke selektsionnogo materiala i modelirovanie novykh sortov sel’skokho- zyaistvennykh kul’tur: mater. I Vsesoyuz. konf. po primeneniyu fiziologicheskikh meto-dov v selektsii rastenii. g. Zhodino, Minskoi obl. – M., 1983. – C. 42–47.

4. F. Giunta, P. Vita, A. Mastrangelo, G. Sanna, R. Motzo. Environmental and ge- netic variation for yield-related traits of durum wheat as affected by development // Frontiers in plant science, 2018. – Vol. 9.– Article 8. – 19 p.

5. Tritikale – pervaya zernovaya kul’tura, sozdannaya chelovekom / per. s angl. / pod red. i s predisl. Yu.L. Guzhova. – M.: Kolos, 1978. – 285 s.

6. Zhu F. Triticale: Nutritional composition and food uses // Food Chemistry. – 2018 – Vol. 241. – P. 468–479.

7. Foltyn I. Model’ sorta (ideotip) pshenitsy // Mezhdunar. s.-kh. zhurn. – 1980. – № 2.– S. 54–57.

8. Volodarskii N.I., Tsiunovich O.D. Morfofiziologicheskie osobennosti rastenii pshenitsy v svyazi s razrabotkoi modelei vysokoproduktivnogo sorta // Sel’- skokhozyaistvennaya biologiya.– 1978. – № 3 (13).– S. 323–332.

9. Untila I.P., Gaina L.V., Postolatii A.A. Osnovnye parametry modelei sortov ozimoi pshenitsy dlya zony nedostatochnogo uvlazhneniya // Genetika i selektsiya rastenii: Mater. V s”ezda VOGiS. – M.: Nauch. tsentr biol. issledovanii, 1987. – T. 4, ch. 2. – S. 206–207.

10. Goncharov P.L. Optimizatsiya selektsionnogo protsessa // Povyshenie effek- tivnosti selektsii i semenovodstva sel’skokhozyaistvennykh rastenii: dokl. VIII gene-tiko-selekts. shk., 11–16 noyabrya 2001 g. – Novosibirsk: SibNIIRS SO RASKhN, 2001. – S. 5–16.

11. Zobova N.V., Pozdnyakova O.V., Surin N.A. Sozdanie i ispol’zovanie elek-tronnoi bazy dannykh v selektsii // Informatsionnye tekhnologii, informatsionnye izmeritel’nye sistemy i pribory v issledovanii sel’-skokhozyaistvennykh protsessov – AGROINFO–2003: mater. mezhdunar. nauch.-prak. konf. – Novosibirsk: RASKhN, Sib. otd- nie, 2003. – T. 1. – S. 118– 120.

12. Koval’ S.F., Koval’ B.C., Chernakov V.M. Chto takoe model’ sorta. – Omsk: Izd-vo FGOU VPO OmGAU,2005. – 277 s.

13. Merezhko A.F. Ispol’zovanie mendelevskikh printsipov v komp’yuternom analize nasledovaniya var’iruyushchikh priznakov // Ekologicheskaya genetika kul’turnykh rastenii: mater. shkoly molodykh uchenykh. RASKhN, VNII risa. – Krasnodar, 2005. – S. 107–117.

14. Grebennikova I.G. Sovershenstvovanie metodiki otsenki khozyaistvenno–tsennykh svoistv kollektsionnykh i selektsionnykh form tritikale s primeneniem kom-pleksa komp’yuternykh programm: avtoref. dis…kand. s.-kh. nauk. – Novosibirsk, 2016. – 18 s.

15. Grebennikova I.G., Aleinikov A.F., Stepochkin P.I. Komp’yuternaya pro-gramma obespecheniya selektsionnogo protsessa zernovykh kul’tur (na primere tritikale) // Polzunovskii vestnik. – 2011. – № 2/2. – S. 128– 133.

16. Grebennikova I.G., Aleinikov A.F., Stepochkin P.I. Komp’yuternye tekh-nologii otsenki selektsionnogo materiala yarovykh tritikale // Dostizheniya nauki i tekhniki APK. – 2012. – № 9. – S. 79–82.

17. Tsukhiya T. Tsitologicheskaya nestabil’nost’ tritikale. – V kn.: Tritikale per- vaya zernovaya kul’tura, sozdannaya chelovekom.– M: Kolos, 1978.– S. 80–105.

18. Sedlovskii A.I., Tyupina L.N., Novokhotin V.V. Izuchenie netraditsionnykh metodov selektsii samoopylyayushchikhsya kul’tur // Problemy teoreticheskoi i pri- kladnoi genetiki v Kazakhstane: mater. resp. konf. Alma-Ata, 18–22 noyabrya, 1990 g. – Alma-Ata, 1990. – S. 4–5.

19. Mirza Faisal Qaseem, Rahmatullah Qureshi, Noshin Illyas. Multivariate statistical analysis for yield and yield components in bread wheat planted under rainfed conditions // Pakistan Journal of Botany. – 2017. – N. 49(6).– R. 2445–2450.

20. Grebennikova I.G., Aleinikov A.F., Stepochkin P.I. Analiz ekologiche-skoi plastichnosti tritikale // Sib. vestn. s.-kh. nauki. – 2013. – № 3. – S. 101–106.

21. Tsil’ke R.A. Genetika, tsitogenetika i selektsiya rastenii. – Novosibirsk: NGAU, 2003. – 621 s.


Review

For citations:


Grebennikova I.G., Stepochkin P.I., Cheshkova A.F., Aleynikov A.F. DEVELOPMENT OF SPRING TRITICALE VARIETY MODEL. Siberian Herald of Agricultural Science. 2018;48(1):89-98. (In Russ.) https://doi.org/10.26898/0370-8799-2018-1-12

Views: 665


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


ISSN 0370-8799 (Print)
ISSN 2658-462X (Online)