Preview

Proceedings on applied botany, genetics and breeding

Advanced search

Triticum ispahanicum Heslot: a genetic resource for improving the species T. aestivum L.

https://doi.org/10.30901/2227-8834-2025-3-218-230

Abstract

Background. Studying Triticum ispahanicum Heslot (Ispahan emmer wheat) to improve Triticum aestivum L. is relevant and promising, since Ispahan emmer is rarely used in programs to increase the genetic diversity of the bread wheat gene pool.

Materials and methods. As part of the study, the GEN2021-512 spring bread wheat line was studied. This line was obtained by crossing cv. ‘Dobrynya’ with an accession of T. ispahanicum var. ispahanorufum Udachin. Genetic, phenological, phytopathological and breadmaking analyses were performed using conventional methods.

Results. The GEN2021-512 line is resistant to leaf rust due to a combination of the Lr19 gene and an unidentified Lr gene from T. ispahanicum and surpasses ‘Dobrynya’ and T. ispahanicum in ear productivity, ear length, and 1000-grain weight. The line’s duration of the period from germination to ear emergence is 3 days longer than that of ‘Dobrynya’. Its grain productivity is at the level of the recipient cultivar, but the line has higher protein and gluten content. Dough and bread quality is not lower than in the recipient cultivar. The study demonstrated that the genetic variability of bread wheat might be expanded through Ispahan emmer.

Conclusion. Combining the genetic material of T. ispahanicum var. ispahanorufum with spring bread wheat cv. ‘Dobrynya’ resulted in the GEN2021-512 line. This line demonstrated a combination of resistance to the leaf rust pathogen and high breadmaking quality. It is promising for breeding and genetic research as a genetic resource to improve spring bread wheat cultivars.

About the Authors

A. E. Druzhin
Federal Center of Agriculture Research of the South-East Region
Russian Federation

Alexander E. Druzhin - Cand. Sci. (Agriculture), Leading Researcher.

7 Tulaikova St., Saratov 410010



S. N. Sibikeev
Federal Center of Agriculture Research of the South-East Region
Russian Federation

Sergey N. Sibikeev - Dr. Sci. (Biology), Chief Researcher.

7 Tulaikova St., Saratov 410010



E. I. Gultyaeva
All-Russian Research Institute of Plant Protection
Russian Federation

Elena I. Gultyaeva - Dr. Sci. (Biology), Leading Researcher.

3 Podbelskogo Hwy., Pushkin, St. Petersburg 196608



Z. E. Fitileva
Federal Center of Agriculture Research of the South-East Region
Russian Federation

Zulfiya E. Fitileva - Associate Researcher.

7 Tulaikova St., Saratov 410010



L. V. Andreeva
Federal Center of Agriculture Research of the South-East Region
Russian Federation

lubov V. Andreeva - Cand. Sci. (Agriculture), Leading Researcher.

7 Tulaikova St., Saratov 410010



References

1. Badaeva E.D., Keilwagen J., Knüpffer H., Waßermann L., Dedkova O.S., Mitrofanova O.P. et al. Chromosomal passports provide new insights into diffusion of emmer wheat. PloS One. 2015;10(5):e0128556. DOI: 10.1371/journal.pone.0128556

2. Barsukova V.S. Wheat’s potential for resistance to heavy metals (Potentsial pshenitsy po ustoychivosti k tyazhelym metallam) [dissertation]. Novosibirsk; 1993. [in Russian]

3. Belyanchikova Yu.V. Wheat striped mosaic virus, its properties and distribution (Virus polosatoy mozaiki pshenitsy, yego svoystva i rasprostraneniye) [dissertation]. Moscow: All-Union Research Institute of Phytopathology; 1969. [in Russian]

4. Chelak V.R. Phylogeny of the Ispahan emmer wheat T. ispahanicum Heslot. Cytology and Genetics. 1978;12(4):322-330. [in Russian]

5. Chen Y., Liu Y., Zhang J., Torrance A., Watanabe N., Adamski N. et al. The Triticum ispahanicum elongated glume locus P2 maps to chromosome 6A and is associated with the ectopic expression of SVP-A1. Theoretical and Applied Genetics. 2022;135(7):2313-2331. DOI: 10.1007/s00122-02204114-y

6. Dorofeev V.F., Filatenko A.A., Migushova E.F., Udachin R.A., Yakubtsiner M.M. Flora of cultivated plants. Vol. 1. Wheat. D.D. Brezhnev (ed.). Leningrad: Kolos; 1979. [in Russian]

7. Dorofeev V.F., Udachin R.A., Semenova L.V., Novikova M.V., Gradchaninova O.D., Shitova I.P., Merezhko A.F., Filatenko A.A. Wheats of the world: species composition, breeding achievements, modern problems, and source material (Pshenitsy mira: vidovoy sostav, dostizheniya selektsii, sovremennye problemy i iskhodny material). V.F. Dorofeev (ed.). 2nd ed. Leningrad: Agropromizdat; 1987. [in Russian]

8. Fedin M.A. (ed.). Methodology for state crop variety trials. First issue. General provisions (Metodika gosudarstvennogo sortoispytaniya selskokhozyaystvennykh kultur. Vypusk pervy. Obshchaya chast). Moscow: State Commission for Crop Variety Trials; 1989. [in Russian]

9. Grigorieva O.G. Resistance of various wheat and Aegilops taxa to rust pathogens (Ustoychivost razlichnykh taksonov pshenitsy i egilopsa k vozbuditelyam rzhavchiny) [dissertation]. Leningrad: VIR; 1975. [in Russian]

10. Guidelines for trials for distinctness, uniformity, and stability: [website]. [in Russian] (Методики испытаний на ООС (однородность, отличимость, стабильность): [сайт]). URL: https://gossortrf.ru/publication/metodiki-ispytaniyna-oos.php [дата обращения: 05.12.2024].

11. Gultyaeva E.I. Methods for the identification of genes for resistance of wheat to leaf rust using DNA markers and characteristics of effective Lr genes (Metody identifikatsii genov ustoychivosti pshenitsy k buroy rzhavchine s ispolzovaniyem DNK-markerov i kharakteristika effektivnosti Lr-genov). St. Petersburg: VIZR; 2012. [in Russian]

12. Gultyaeva E.I., Sibikeev S.N., Druzhin A.E., Shaydayuk E.L. Enlargement of genetic diversity of spring bread wheat resistance to leaf rust (Puccinia triticina Eriks.) in Lower Volga region. Agricultural Biology. 2020;55(1):27-44. DOI: 10.15389/agrobiology.2020.1.27eng

13. Khoshbakht K. Esfahanian emmer (Triticum ispahanicum Heslot) – a case of an extinct on-farm crop. Journal of Agriculture and Rural Development in the Tropics and Subtropics. 2009: Suppl 92:189-195.

14. Kihara H., Yamashita K., Tanaka M. Morphological, physiological, genetic and cytological studies in Aegilops and Triticum collected from Pakistan, Afghanistan and Iran. In: K. Yamashita (ed.). Results of the Kyoto University Scientific Expedition to the Karakoram and Hindukush. Kyoto: Kyoto University; 1965. p.1-118.

15. Kuckuck H. Report to the Government of Iran on the distribution and variation of cereals in Iran (including their related wild species). Rome: Food and Agricultural Organization of the United Nations. Report number: 517; 1956.

16. Mac Key J. Species relationship in Triticum. In: J. Mac Key (ed.). Proceedings of the Second International Wheat Genetics Symposium. Lund: Hereditas; 1966. p.237-276.

17. Mains E.B., Dietz S.M. Physiologic forms of barley mildew Erysiphe graminis hordei. Phytopathology. 1930;20(3):229-239. Mains E.B., Jackson H.S. Physiologic specialization in the leaf rust of wheat Puccinia triticina Erikss. Phytopathology. 1926;16(2):89-120.

18. McIntosh R.A. Catalogue of Gene Symbols for Wheat, 2024 edition: [website]. Available from: https://wheat.pw.usda.gov/GG3/Wheat_Gene_Catalog_Documents [accessed Apr. 10, 2025].

19. Merezhko A.F., Udachin R.A., Zuev E.V., Filatenko A.A. Serbin A.A., Lyapunova O.A., Kosov V.Yu., Kurkiev U.K., Okhotnikova T.V., Navruzbekov N.A., Boguslavskiy R.L., Abdulaeva A.K., Chikida N.N., Mitrofanova O.P., Potokina S.A. Replenishment, preservation in living form and study of the world collection of wheat, Aegilops and triticale: guidelines (Popolneniye, sokhraneniye v zhivom vide i izucheniye mirovoy kollektsii pshenitsy, egilopsa i triticale: metodicheskiye ukazaniya). A.F. Merezhko (ed.). St. Petersburg: VIR; 1999. [in Russian]

20. Migushova E.F., Zhukovsky P.M. Towards the knowledge of wheat T. ispahanicum Heslot. Proceedings on Applied Botany, Genetics and Breeding. 1969;39(3):71-90. [in Russian]

21. Miller T.E. Systematics and evolution. In: F.G.H. Lupton (ed.). Wheat Breeding. Dordrecht: Springer; 1987. p.1-30. DOI: 10.1007/978-94-009-3131-2_1

22. Murashev V.V., Morozova Z.A. Morphogenesis and structural organization of Isfahan wheat – Triticum ispahanicum Heslot; 2n = 28, the AuB genomes. Science Almanac. 2018;4-3(42):172-180. [in Russian] DOI: 10.17117/na.2018.04.03.172

23. Pausheva Z.P. Workshop on plant cytology (Praktikum po tsitologii rasteniy). 4th ed. Moscow: Agropromizdat; 1988. [in Russian]

24. Prins R., Marais G.F., Marais A.S., Janse B.J., Pretorius Z.A. A physical map of the Thinopyrum­derived Lr19 translocation. Genome. 1996;39(5):96-126. DOI: 10.1139/g96-126

25. Roelfs A.P., Singh R.P., Saari E.E. Rust diseases of wheat: concepts and methods of disease management. Mexico: CIMMYT; 1992. Available from: https://repository.cimmyt.org/entities/publication/e8a64950-5c39-4df2b292-1ee1bfa5aa91 [accessed Jan. 20, 2025].

26. Shaimyardyanov N.A. Resistance of wheat species to Septoria nodorum Berk. (Ustoychivost vidov pshenitsy k Septoria nodorum Berk.). Izvestiya of Timiryazev Agricultural Academy. 1989;(6):188-192. [in Russian]

27. Watanabe N., Sekiya T., Sugiyama K., Yamagishi Y., Imamura I. Telosomic mapping of the homoeologous genes for the long glume phenotype in tetraploid wheat. Euphytica. 2002;128:129-134. DOI: 10.1023/a:1020633904782

28. Zhou Y., Zhao X., Li Y., Xu J., Bi A., Kang L. et al. Triticum population sequencing provides insights into wheat adaptation. Nature Genetics. 2020;52(12):1412-1422. DOI: 10.1038/s41588-020-00722-w

29. Zhukovsky P.M., Migushova E.F. The most highly immune endemic gene pool for breeding resistant wheat cultivars through remote hybridization (Naiboleye vysokoimmunny endemichny genofond dlya vyvedeniya ustoychivykh sortov pshenitsy putem otdalennoy gibridizatsii). Vestnik selskokhozyaystvennoy nauki = Agricultural Science Bulletin. 1969;(2):9-20. [in Russian]


Review

For citations:


Druzhin A.E., Sibikeev S.N., Gultyaeva E.I., Fitileva Z.E., Andreeva L.V. Triticum ispahanicum Heslot: a genetic resource for improving the species T. aestivum L. Proceedings on applied botany, genetics and breeding. 2025;186(3):218-230. (In Russ.) https://doi.org/10.30901/2227-8834-2025-3-218-230

Views: 10


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


ISSN 2227-8834 (Print)
ISSN 2619-0982 (Online)