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The trait-specific collection of large-seeded sunflower at VIR: ba source for breeding cultivars and hybrids

https://doi.org/10.30901/2227-8834-2023-4-64-78

Abstract

Background. In recent years, an increase has been observed in the share of sunflower seeds in the confectionery and food industries. There are 30 cultivars and only 3 hybrids for confectionery use among 839 zoned sunflower cultivars and hybrids listed in the State Register for Selection Achievements Admitted for Usage in 2023. Thus, the development of source material for breeding large-seeded cultivars and hybrids remains a relevant task.

Materials and methods. The studied material included 90 accessions selected for their large seed size from VIR’s sunflower collection. The following characters were assessed: 1000 seed weight, days from sprouting to maturation, plant height, head diameter, cypsela color and size, and resistance to downy mildew. DNA markers were used to identify accessions with the Rf1 gene and CMS.

Results. Accessions k-2818 (Primorsky Territory), k-3633, k-3748, k-3782 (China), and k-3578 (Ukraine) were the best in 1000 seed weight. Russian cvs. ‘Alekseyevsky Krupnoplodny 2’ (k-3552), ‘Gyar-Gyar’ (k-1589), ‘SPK’ (k-3426), and ‘Lakomka’ (k-3526) confirmed their large seed size. The sterile type of cytoplasm was identified in 12 accessions. Fourteen accessions with fertile cytoplasm had diagnostic markers of the nuclear Rf1 gene.

Conclusion. The large-seeded cultivars developed at VNIIMK, ‘SPK’, ‘Lakomka’, and k-3782 from China were the best not only in their large seed size but also in downy mildew resistance. As a result of long-term studies, a trait-specific collection was established for the large seed size trait. It included 90 accessions that can be used in the development of confectionery cultivars. Large-seeded sunflower accessions carrying the Rf1 gene were identified. Some of them became the ancestors of donor lines for both pollen fertility restoration genes and large seed size.

About the Authors

V. A. Gavrilova
N.I. Vavilov All Russian Institute of Plant Genetic Resources
Russian Federation

Vera A. Gavrilova, Dr. Sci. (Biology), Chief Researcher

42, 44 Bolshaya Morskaya Street, St. Petersburg 190000



L. G. Makarova
N.I. Vavilov All Russian Institute of Plant Genetic Resources
Russian Federation

larisa G. Makarova, Leading Specialist

42, 44 Bolshaya Morskaya Street, St. Petersburg 190000



T. G. Stupnikova
N.I. Vavilov All-Russian Institute of Plant Genetic Resources, Kuban Experiment Station of VIR
Russian Federation

Tatyana G. Stupnikova, Specialist

2 Tsentralnaya St., Botanika Settlem., Krasnodar Territory 352183



N. V. Alpatieva
N.I. Vavilov All Russian Institute of Plant Genetic Resources
Russian Federation

Natalya V. Alpatieva, Cand. Sci. (Biology), Senior Researcher

42, 44 Bolshaya Morskaya Street, St. Petersburg 190000



E. B. Kusnetsova
N.I. Vavilov All Russian Institute of Plant Genetic Resources
Russian Federation

Elena B. Kusnetsova, Leading Specialist

42, 44 Bolshaya Morskaya Street, St. Petersburg 190000



I. N. Anisimova
N.I. Vavilov All Russian Institute of Plant Genetic Resources
Russian Federation

Irina N. Anisimova, Dr. Sci. (Biology), Leading Researcher

42, 44 Bolshaya Morskaya Street, St. Petersburg 190000



References

1. Anashchenko A.V. Guidelines for the study of the world collection of oil crops. Issue II. Sunflower (Metodicheskiye ukazaniya po izucheniyu mirovoy kollektsii maslichnykh kultur. Vypusk II. Podsolnechnik). G.G. Davidyan (ed.). Leningrad: VIR; 1978. [in Russian]

2. Anashchenko A.V. Long-fruited sunflower of Transcaucasia (Dlinnoplodny podsolnechnik Zakavkazya). Proceedings on Applied Botany, Genetics and Breeding. 1971;45(2):122-128. [in Russian]

3. Anisimova I.N., Alpatieva N.V., Abdullaev R.A., Karabitsina Yu.I., Kuznetsova E.B. Screening of plant genetic resources with the use of DNA markers: basic principles, DNA isolation, PCR setup, agarose gel electrophoresis: (guidelines). E.E. Radchenko (ed.). St. Petersburg: VIR; 2018. [in Russian]. DOI: 10.30901/978-5-905954-81-8

4. Anisimova I.N., Karabitsina Yu.I., Alpatieva N.V., Kuznetsova E.B., Titov N.V., Lyutko A.Yu., Gavrilova V.A. Diagnostic value of Rf1 gene molecular markers in sunflower. Plant Biotechnology and Breeding. 2021;4(2):28-37. [in Russian]. DOI: 10.30901/2658-6266-2021-2-o3

5. Bochkovoy A.D., Khatnyansky V.I, Kamardin V.A., Otrezova A.K. Technological certificate of the breeders seed growing of confectionary sunflower variety SPK. Oil Crops. 2019;2(178):14-21. [in Russian]. DOI: 10.25230/2412-608X-2019-2-178-14-21

6. Bochkovoy A.D., Pivnenko O.V. Domestic cultivar populations as source material for breeding large-fruited sunflower hybrids (Otechestvennye sorta-populyatsii kak iskhodny material dlya selektsii krupnoplodnykh gibridov podsolnechnika). Oil Crops. Scientific and Technical Bulletin of VNIIMK. 2007;1(136):3-8. [in Russian]

7. Fick C.N., Miller J.F. Sunflower breeding. In: J.F. Carter (ed.). Sunflower Technology and Production. Madison, WI: American Society of Agronomy; Crop Science Society of America; Soil Science Society of America; 1997.

8. Gavrilova V.A., Bratch E.A., Belov P.E., Gryaznov A.U. Radiography for breeding of large-fruited sunflower. In: Burning Problems of Science, Technology and Production. Proceedings of the III International Scientific and Practical Conference; November 21–22, 2014, St. Petersburg (Aktualnye voprosy nauki, tekhnologii i proizvodstva. Materialy III Mezhdunarodnoy nauchno-prakticheskoy konferentsii; 21–22 noyabrya 2014 g., g. Sankt-Peterburg). St. Petersburg; 2014. p.134-137. [in Russian]

9. Gavrilova V.A., Rozhkova V.T., Pepelyaeva E.A., Bratch E.A., Migacheva E.O., Anisimova I.N. Potential of VIR collection of sunflower for the breeding of large-seeded varieties and hybrids. Achievements of Science and Technology of AIC. 2015;29(7):35-38. [in Russian]

10. Gavrilova V.A., Stupnikova T.G., Makarova L.G., Alpatieva N.V., Karabitsina Yu.I., Kuznetsova E.B. et al. Lines resistant to downy mildew in the sunflower genetic collection at VIR.. Proceedings on Applied Botany, Genetics and Breeding. 2021;182(3):101-110. [in Russian]. DOI: 10.30901/2227-8834-2021-3-101-110

11. Hladni N, Miladinović D. Confectionery sunflower breeding and supply chain in Eastern Europe. OCL – Oilseeds and Fats Crops and Lipids. 2019;26(1):29. DOI: 10.1051/ocl/2019019

12. Horn R., Radanovic A., Fuhrmann L., Sprycha Y., Hamrit S., Jockovic M. et al. Development and validation of markers for the fertility restorer gene Rf1 in sunflower. International Journal of Molecular Sciences. 2019;20(6):1260. DOI: 10.3390/ijms20061260

13. Merezhko A.F. The system of genetic studying of source material for plant breeding: guidelines (Sistema geneticheskogo izucheniya iskhodnogo materiala dlya selektsii rasteniy: metodicheskiye ukazaniya). Leningrad: VIR; 1984. [in Russian]

14. Puzikov A.N., Suvorova Yu.N. Breeding for large fruit size: new opportunities for sunflower (Selektsiya na krupnoplodnost – novye vozmozhnosti podsolnechnika). Selektsiya i semenovodstvo = Plant Breeding and Seed Production. 2013;(2):155-156. [in Russian]

15. Schnabel U., Engelmann U., Horn R. Development of markers for the use of the PEF1 cytoplasm in sunflower hybrid breeding. Plant Breeding. 2008;127(6):587-591. DOI: 10.1111/j.1439-0523.2008.01516.x

16. Seiler G., Jan C.C. Basic information. In: J. Hu, G. Seiler, C. Kole (eds). Genetics, Genomics and Breeding of Sunflower. Boca Raton, FL: CRC Press; 2010. p.1-50.

17. State Register for Selection Achievements Admitted for Usage (National List). Vol. 1 “Plant varieties” (official publication). Moscow; Rosinformagrotekh; 2017. [in Russian]

18. State Register for Selection Achievements Admitted for Usage (National List). Vol. 1 “Plant varieties” (official publication). Moscow; Rosinformagrotekh; 2018. [in Russian]

19. State Register for Selection Achievements Admitted for Usage (National List). Vol. 1 “Plant varieties” (official publication). Moscow; Rosinformagrotekh; 2019. [in Russian]

20. State Register for Selection Achievements Admitted for Usage (National List). Vol. 1 “Plant varieties” (official publication). Moscow; Rosinformagrotekh; 2021. [in Russian]

21. State Register for Selection Achievements Admitted for Usage (National List). Vol. 1 “Plant varieties” (official publication). Moscow; Rosinformagrotekh; 2023. [in Russian]

22. Tan A.S., Tan A. Sunflower (Helianthus annuus L.) landraces of Turkey – their collection, conservation and morphometric characterization. Helia. 2010;33(53):55-62. DOI: 10.2298/hel1053055t

23. Yue B., Vick B.A., Cai X., Hu J. Genetic mapping for the Rf1 (fertility restoration) gene in sunflower (Helianthus annuus L.) by SSR and TRAP markers. Plant Breeding. 2010;129(1):24-28. DOI: 10.1111/j.1439-0523.2009.01661.x


Review

For citations:


Gavrilova V.A., Makarova L.G., Stupnikova T.G., Alpatieva N.V., Kusnetsova E.B., Anisimova I.N. The trait-specific collection of large-seeded sunflower at VIR: ba source for breeding cultivars and hybrids. Proceedings on applied botany, genetics and breeding. 2023;184(4):64-78. (In Russ.) https://doi.org/10.30901/2227-8834-2023-4-64-78

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ISSN 2227-8834 (Print)
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