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Relationship of elements of the ear structure to plant productivity of samples × Trititrigia cziczinii Tzvel

https://doi.org/10.26897/0021-342X-2022-5-57-69

Abstract

Changing climatic conditions have led to increased focus on sustainable farming methods, which include the development of adaptive varieties. Interspecific and intergenerational hybridization makes it possible to significantly strengthen the resistance of new varieties to abiotic and biotic stress. Trititrigia (×Trititrigia cziczinii Tzvel., 1973) is a new grain crop with features and economically useful properties derived from wild cereals. The purpose of the research is to evaluate the contribution of ear productivity elements of modern trititrigia samples to its productivity. Studies conducted in the conditions of sod-podzolic heavy loamy soils of Moscow region (2008–2016) confirm the specific features of the formation of productivity of trititrigia samples that distinguish it from wheat. The studied samples had an ear length of 7.9 cm to 18.3 cm, the maximum number of samples (42.2%) had an ear length of 12.0 to 13.9 cm. The highest number of samples (21.1%) had 20.1 to 20.9 spikelets per ear, 32.4% of samples formed 60.6–69.5 grains per ear, 29 samples or 41.4% formed on average 1.5–2.0 g of grains per ear. Studies have shown that the elements of the structure of the ear of trititrigia: the length of the ear, the number of grains per ear, the number and weight of grains per do not have a direct positive relationship with productivity. This may be due to the contribution of productive bushiness and biological features of trititrigia in the form of a tendency to generative shoot formation throughout the growing season.

About the Authors

O. A. Shchuklina
N.V. Tsitsin’s Botanical Garden of the Russian Academy of Sciences
Russian Federation

Olga A. Shchuklina, PhD (Ag), Senior Research Associate

4 Botanicheskaya Str., Moscow, 127276

phone: (926) 703–84–93



S. V. Zavgorodniy
N.V. Tsitsin’s Botanical Garden of the Russian Academy of Sciences
Russian Federation

Sergey V. Zavgorodniy, Research Associate

4 Botanicheskaya Str., Moscow, 127276

phone: (499) 390–94–82



A. D. Alenicheva
N.V. Tsitsin’s Botanical Garden of the Russian Academy of Sciences
Russian Federation

Anastasia D. Alenicheva, Junior Research Associate

4 Botanicheskaya Str., Moscow, 127276

phone: (968) 899–48–66



L. P. Ivanova
N.V. Tsitsin’s Botanical Garden of the Russian Academy of Sciences
Russian Federation

Lyubov’ P. Ivanova, Research Associate

4 Botanicheskaya Str., Moscow, 127276

phone: (968) 733–83–56



V. E. Kvitko
N.V. Tsitsin’s Botanical Garden of the Russian Academy of Sciences
Russian Federation

Valeriya E. Kvitko, Junior Research Associate

4 Botanicheskaya Str., Moscow, 127276

phone: (922) 817–68–59



V. V. Pyl’nev
Russian State Agrarian University - Moscow Timiryazev Agricultural Academy
Russian Federation

Vladimir V. Pyl’nev, DSc (Bio), Professor, Doctor of Biological Sciences

49 Timiryazevskaya Str., Moscow, 127434

phone: (915) 093–07–85



V. P. Upelniek
N.V. Tsitsin’s Botanical Garden of the Russian Academy of Sciences
Russian Federation

Vladimir P. Upelniek, Director

4 Botanicheskaya Str., Moscow, 127276

phone: (903) 517–42–60



References

1. Belov V.I., Ivanova L.P., Zavgorodniy S.V., Upelniek V.P. Selektsionno-geneticheskie resursy otrastayushchikh promezhutochnykh pshenichno-pyreynykh gibridov (2n=56) [Breeding and genetic resources of regrowth intermediate wheat-rye hybrids (2n=56)]. Byulleten’ Glavnogo botanicheskogo sada. 2013; 4 (199): 49–55. (In Rus.)

2. Voronchihin V.V., Pyl’nev V.V., Rubets V.S., Voronchihina I.N. Urozhaynost’ i elementy struktury urozhaya kollektsii ozimoy geksaploidnoy tritikale v Tsentral’nom rayone Nechernozemnoy zony [Productivity and yield structure elements of a winter hexaploid triticale collection in the Central region of the Non-Chernozem zone]. Izvestiya TSKhA. 2018; 1: 69–81. (In Rus.)

3. Grabovets A.I., Fomenko M.A. Ozimaya pshenitsa [Winter wheat]. Rostov-na-Donu. Izd-vo “Yug”, 2007: 544. (In Rus.)

4. Dospekhov B.A. Metodika polevogo opyta (s osnovami statistichesko y obrabotki rezul’tatov issledovaniy) [Field experiment methodology (with basics of statistical processing of research results)]. M., 1985: 352. (In Rus.)

5. Zavgorodniy S.V., Ivanova L.P., Alenicheva A.D., Shchuklina O.A., Kvitkov V.E., Klimenkova I.N., Solov’ev A.A., Upelniek V.P. Morfobiologicheskie i khozyaystvenno tsennye osobennosti obraztsov iz sovremennoy kollektsii trititrigii (×Trititrigia cziczinii Tzvel.) GBS RAN [Morphobiological and economically valuable features of specimens from the modern tritritrigia collection (×Trititrigia cziczinii Tzvel.) of N.V. Tsitsin’s Botanical Garden of the Russian Academy of Sciences]. Ovoshchi Rossii. 2022; 2: 10–14. (In Rus.)

6. Krupin P.Yu., Divashuk M.G., Karlov G.I. Ispol’zovanie geneticheskogo potentsiala mnogoletnikh dikorastushchikh zlakov v seleksionnom uluchshenii pshenitsy [Using the genetic potential of perennial wild cereals in the selective improvement of wheat]. Sel’skokhozyaystvennaya biologiya. 2019; 54 (3): 409–425. (In Rus.)

7. Kudryashov I.N., Bespalova L.A., Vasil’ev A.V. Ekologicheskaya plastichnost’ i stabil’nost’ novykh sortov – potomkov Bezostoy 1 po urozhaynosti [Ecological plasticity and stability of the new Bezosta 1 progeny varieties in terms of yield]. Bezostaya 1–50 let triumfa. Mat. mezhd. konf., posvyashchennoy 50-letiyu sozdaniya sorta ozimoy myagkoy pshenitsy Bezostoy 1. Krasnodar. 2005: 169–177. (In Rus.)

8. Luk’yanenko P.P. Selektsiya vysokourozhaynykh nizkostebel’nykh sortov ozimoy pshenitsy [Breeding high-yielding, low-stemmed winter wheat varieties]. Sel’skokhozyaystvennaya biologiya. 1969; 4: 483–492. (In Rus.)

9. Marchenko D.M., Kostylev P.I., Grichanikova G.A. Korrelyatsionnyy analiz v selektsii ozimoy pshenitsy (obzor) [Correlation analysis in winter wheat breeding (review)]. Zernovoe khozyaystvo Rossii. 2013; 3: 28–32. (In Rus.)

10. Nekrasova O.A., Kostylev P.I. P.I., Nekrasov E.I. Model’ sorta v selektsii ozimoy pshenitsy (obzor) [Variety model in winter wheat breeding (review)]. Zernovoe khozyaystvo Rossii. 2017; 5 (53): 29–32. (In Rus.)

11. Samofalov A.P., Podgorniy S.V. Iskhodniy material v selektsii ozimoy pshenitsy na produktivnost’ [Source material in winter wheat breeding for productivity]. Agrarniy vestnik Urala. 2014; 5: 13–16. (In Rus.)

12. Belov V.I., Zavgorodniy S.V. Selektsionnoe dostizhenie: Trititrigiya Pamyati Lyubimovoy: pat. 11203 Ros. Federatsiya: 22.07.2020. Zayavitel’ i patentoobladatel’: Glavniy botanicheskiy sad im. N.V. TSitsina RAN; zayavl. 14.01.2019; opubl. 22.07.2020 [Breeding achievement: Trititrigia memoria Lyubimova: Pat. no. 11203 of the Russian Federation: 22.07.2020. Applicant and patentee is N.V. Tsitsin’s Botanical Garden of the Russian Academy of Sciences; appl. 14.01.2019; publ. 22.07.2020]. (In Rus.)

13. Upelniek V.P., Belov V.I., Ivanova L.P. et al. Nasledie akademika N.V. Tsitsina – sovremennoe sostoyanie i perspektivy ispol’zovaniya kollektsii promezhutochnykh pshenichno- pyreynykh gibridov [Legacy of Academician N.V. Tsitsin – current status and prospects of using the collection of intermediate wheat-grass hybrids]. Vavilovskiy zhurnal selektsii i genetiki. 2012; 16 (3): 667–674. (In Rus.)

14. Tsvelev N.N., Probatova N.S. Zlaki Rossii [Grains of Russia]. M. tov. nauch.izd. KMK, 2019: 646. (In Rus.)

15. TsitsinN.V. Mnogoletnyaya pshenitsa [Perennial wheat]. M.: Nauka, 1978: 287. (In Rus.)

16. Tsitsin N.V., Lyubimova V.F. Sort zernokormovoy pshenitsy Otrastayushchaya 38 [Variety of feed wheat Otrastayushchaya 38]. M.: Glav. bot. sad, 1972: 8. (In Rus.)

17. Enzekrey E.S., Shchuklina O.A., Zavgorodniy S.V. Vliyanie meteorologicheskikh usloviy i azotnykh udobreniy na urozhaynost’ yarovoy tritikale sorta Timiryazevskaya 42 [Effect of meteorological conditions and nitrogen fertilisers on the yield of spring triticale variety Timiryazevskaya 42]. Zernovoe khozyaystvo. 2021; 2 (74): 88–93. (In Rus.)

18. Cui L., Ren Y., Murray T.D., Yan W., Guo Q., Niu Y., Sun Y., Li H. Development of Perennial Wheat Through Hybridization Between Wheat and Wheatgrasses: A Review. Engineering. 2018; 4 (4): 1–7.

19. Curwen-McAdams C., Arterburn M., Murphy K., Cai X., Jones S.S. Toward a taxonomic definition of perennial wheat: a new species ×Tritipyrum aaseae described. Genet Resour Grop Evol. 2017; 64: 1651–1659.

20. Department of Economic and Social Affairs of the United Nation. The 2017 revision of word population prospect. Report. New York: United Nations; 2017. Report No.: ESA/P/WP/248.

21. Department of Economic and Social Affairs of the United Nation. Why population growth matters for sustainable development. Report. New York: United Nations; 2022. UN DESA Policy Brief No. 130.

22. Eswaran H., Beinroth F., Reich P. Global land resources and population-supporting capacity. American Journal of Alternative Agriculture. 1999; 14 (3): 129–36.

23. IPNI (2022). International Plant Names Index. The Royal Botanic Gardens, Kew, Harvard University Herbaria & Libraries and Australian National Botanic Gardens. URL: http://www.ipni.org (Access date: 29.09.2022)

24. Li H., Wang X. Thinopyrum ponticum and Th. intermedium: the promising source of resistance to fungal and viral diseases of wheat. J. Genet. Genomics. 2009; 36 (9): 557–565.

25. WFO (2022): World Flora Online. Published on the Internet; URL: http://www.worldfloraonline.org (Access date: 28.09.2022)


Review

For citations:


Shchuklina O.A., Zavgorodniy S.V., Alenicheva A.D., Ivanova L.P., Kvitko V.E., Pyl’nev V.V., Upelniek V.P. Relationship of elements of the ear structure to plant productivity of samples × Trititrigia cziczinii Tzvel. IZVESTIYA OF TIMIRYAZEV AGRICULTURAL ACADEMY. 2022;(5):57-69. (In Russ.) https://doi.org/10.26897/0021-342X-2022-5-57-69

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