Vavilov Institute of Plant Genetic Resources: Historical Legacy, Collections, and Contributions to Global Seed Conservation


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Authors

  • YULIA V UKHATOVA N.I. Vavilov All-Russian Institute of Plant Genetic Resources (VIR), 42, 44, Bolshaya Morskaya Street, St. Petersburg, 19000, Russia Author
  • IGOR G LOSKUTOV N.I. Vavilov All-Russian Institute of Plant Genetic Resources (VIR), 42, 44, Bolshaya Morskaya Street, St. Petersburg, 19000, Russia Author
  • ELENA K KHLESTKINA N.I. Vavilov All-Russian Institute of Plant Genetic Resources (VIR), 42, 44, Bolshaya Morskaya Street, St. Petersburg, 19000, Russia Author

https://doi.org/10.56093/SR.v54i1.2

Keywords:

Biocollections, Genebanks, Plant genetic resources, Nicolay Vavilov, VIR

Abstract

The conservation of plant genetic resources (PGR) forms the cornerstone of sustainable agriculture, food, and nutritional security. Seed, being a compact, stable, and easily storable biological entity, provides the most cost-effective means for ex situ conservation. Early in the 20th century, N.I. Vavilov emphasized the systematic collection and preservation of crop diversity, laying the foundation of global genebank systems. This article reviews the legacy, infrastructure, collections, and contributions of the Vavilov Institute of Plant Genetic Resources (VIR), St. Petersburg, one of the world’s oldest and most comprehensive repositories of cultivated plants and their wild relatives. Its scientific frameworks, operational scale, and continuing role in breeding and policy are discussed, with emphasis on its enduring relevance for contemporary seed science and conservation.

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References

1. ENGELS JMM AND L VISSER (2003). A Guide to Effective Management of Germplasm

Collections. IPGRI, Rome.

2. FAO (2014). Genebank Standards for Plant Genetic Resources for Food and Agriculture. Food and Agriculture Organization, Rome.

3. KHLESTKINA EK, IG CHUKHINA (2020). Genetic Resources of Plants: The Conservation and Use Strategy in the 21 Century // Herald of

the Russian Academy of Sciences, 2020, Vol. 90, No. 3, pp. 298-302. DOI: 10.1134/S1019331620030089

4. VAVILOV NI (1922). The law of homologous series in variation. Journal of Genetics 12: 47–89. DOI: 10.1007/BF02983073 (In Russian)

5. LOSKUTOV I (1999). Vavilov and his Institute: A History of the World Collection of Plant Genetic Resources in Russia. International

Plant Genetic Resources Institute (IPGRI), Rome, Italy.

6. LOSKUTOV IG (2009). The history of the world collection of plant resources in Russia (St Petersburg: VIR), 293 p, (In Russ.).

7. LOSKUTOV IG (2020). Vavilov Institute (VIR): historical aspects of international cooperation for plant genetic resources (Dedicated to

the 125th anniversary of the foundation of the institute). Genetic Resources and Crop Evolution, 67(8), 2237–2253.doi:

https://doi.org/10.1007/s10722-020-00979-4

8. LOSKUTOV IG (2025). The history of the global collection of plant genetic resources in Russia. 2nd edition, revised and supplemented.

Under the General editorship of E. K. Khlestkina. St. Petersburg. (In Russian)

9. KHLESTKINA EK (2025). Vavilov’s law in the era of nextgeneration sequencing: answers, puzzles, hints. Proceedings on Applied

Botany, Genetics and Breeding,186(3): 187-198. (In Russ.) https://doi.org/10.30901/2227-8834-2025-3-187-198

10. FAO (1996). Global Plan of Action for the Conservation and Sustainable Utilization of Plant Genetic Resources for Food and

Agriculture. Food and Agriculture Organization, Rome.

11. FOWLER, C AND T HODGKIN (2004). Plant genetic resources for food and agriculture: Assessing global availability. Annual Review of

Environment and Resources, 29: 143-179.

12. LOSKUTOV IG, YV UKHATOVA, EK KHLESTKINA. (2025). VIR: from a small Bureau in the Russian Empire to thepresentday National

Center for Plant Genetic Resources. Genetic Resources, (S2): 58-69. doi: 10.46265/genresj.EVEF5522

13. KHLESTKINA EK (2022). Genetic resources in Russia: from collections to bioresource centers. Proceedings on Applied Botany,

Genetics and Breeding, 183(1): 9-30. DOI: 10.30901/2227-8834-2022-1-9-30 (in Russian)

14. VAVILOV NI (1926). Studies on the origin of cultivated plants. Bulletin of Applied Botany, Genetics and Plant Breeding, 16(2): 1-248 (In

Russian)

15. HARLAN JR, AND JMJ DE WET (1971). Toward a rational classification of cultivated plants. Taxon, 20(4): 509-517.

16. KONAREV VG, IP GAVRILYUK, NK GUBAREVA, TI PENEVA (1986). The proteins as genetical markers. Vestniksel’skohozajstvennoi

Nauki, 12: 45-51. (In Russian)

17. MEREZHKO AF (1994). The problem of donors in plant breeding. St. Petersburg: VIR, 128 p. (In Russian)

18. GAVRILENKO TA, IG CHUKHINA (2020). Nomenclatural standards of modern Russian potato cultivars preserved at the VIR herbarium

(WIR): A new approach to cultivar genepool registration in a genebank. Plant Biotechnology and Breeding, 3(3): 6-17. DOI:

10.30901/2658-6266-2020-3-o2 (in Russian)

19. KHLESTKINA EK, MA GEKHT, TA GAVRILENKO, IG CHUKHINA, OYU ANTONOVA, YUV UKHATOVA (2025). Genetic Passports: Science for

Economics. Plant Biotechnology and Breeding, 8(2). DOI: 10.30901/2658-6266-2025-2-o5 (in Russian)

20. FAO (2019). The State of the World’s Biodiversity for Food and Agriculture. Food and Agriculture Organization, Rome.

21. UKHATOVA YV AND TA GAVRILENKO (2018). Cryoconservation methods for vegetatively propagated crops. Plant Biotechnology and

Breeding, 1(1): 52-63. https://doi.org/10.30901/2658-6266-2018-1-52-63 (In Russian)

22. GAVRILENKO TA, NA SHVACHKO, NN VOLKOVA, YUVA UKHATOVA (2019). modified droplet vitrification method for cryopreservation

of shoot tips from in vitro potato plants. Vavilovskii Zhurnal Genetiki i Selektsii=Vavilov Journal of Genetics and Breeding, 23(4): 422-429. DOI 10.18699/VJ19.505 (in Russian)

23. UKHATOVA YV, EV OVES, NN VOLKOVA, AND TA GAVRILENKO (2017b). cryoconservation of potato breeding cultivars at VIR.

Proceedings on applied botany, genetics and breeding, 178(3): 13-20. https://doi.org/10.30901/2227-8834-2017-3-13-20 (In Russian)

24. EFREMOVA OS, NN VOLKOVA, DA RYBAKOV, OV LISITSYNA, PV OZERSKI, AND TA GAVRILENKO (2023). Development of the potato

cryocollection preserved in the VIR cryobank. Proceedings on Applied Botany, Genetics and Breeding, 3: 9-20.

25. EFREMOVA OS, NN VOLKOVA AND TA GAVRILENKO (2021). Long-term preservation of modern Russian potato cultivars in the VIR

cryobank. Plant Biotechnology and Breeding, 3: 68-76.

26. UKHATOVA YV, SE DUNAEVA, OY ANTONOVA, OV APALIKOVA, KS POZDNIAKOVA, LY NOVIKOVA, LE SHUVALOVA AND TA GAVRILENKO

(2017a). Cryopreservation of red raspberry cultivars from the VIR in vitro collection using a modified droplet vitrification method. In

Vitro Cellular & Developmental Biology–Plant, 53: 394-401.

27. KONAREV AV (2025). Biochemistry of cultivated plants and the global collection of VIR in the context of healthy nutrition issues. Plant

Biotechnology and Breeding, 8(1): 46-52. (In Russ.) https://doi.org/10.30901/2658-6266-2025-1-o4 (In Russian)

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Submitted

2026-08-31

Published

2026-09-01

How to Cite

YULIA V UKHATOVA, IGOR G LOSKUTOV, & ELENA K KHLESTKINA. (2026). Vavilov Institute of Plant Genetic Resources: Historical Legacy, Collections, and Contributions to Global Seed Conservation. Seed Research, 54(1), 13-18. https://doi.org/10.56093/SR.v54i1.2