PHYTOECDYSTEROIDS OF ROOT SILENE FRIVALDSZKYANA HAMPE

Authors

  • Лариса Николаевна Зибарева (Zibareva) Tomsk State University, Siberian Botanical Garden
  • Ольга Владимировна Волкова (Volkova) Tomsk State University, Siberian Botanical Garden
  • Сергей Владимирович Морозов (Morozov) Novosibirskij Institute of organic chemistry of SB RAS
  • Елена Ильинична Черняк (Chernayk) Novosibirskij Institute of organic chemistry of SB RAS

DOI:

https://doi.org/10.14258/jcprm.2017011416

Keywords:

Phytoecdysteroids, identification, roots of Silene frivaldszkyana

Abstract

Ecdysteroids were isolated from roots of Silene frivaldszkyana (Caryophyllaceae) introduced into culture in Western Siberia: 20-hydroxyecdysone, polypodine B, integristerone A, 2-deoxy-20-hydroxyecdysone, 2-deoxyecdysone, 20,26-dihydroxyecdysone, 26-hydroxypolypodine B, 26-hydroxyintegristerone A, 20-hydroxyecdysone-25-β-D-glucoside. Structures are installed using NMR, mass spectroscopy, HPLC. The presence of 26-hydroxyintegristerone A in the roots established by comparative HPLC analysis with compound isolated from overground part of plants.

It is shown that this Silene species synthesizes characteristic for this genus of ecdysteroids: 2-deoxy-20-hydroxyecdysone, 2-deoxyecdysone, 20-hydroxyecdysone, polypodine B, integristerone A, and is a rich source of their 26-hydroxy derivatives. Among the common ecdysteroids of the genus Silene 20-hydroxyecdysone-25-β-D-glycoside was isolated for the first from roots of S. frivaldszkyana.

Comparative analysis of ecdysteroids in aboveground and underground parts showed that the roots contain a richer composition of them that is likely so that the roots of perennial plants accumulate these compounds. And 20-hydroxyecdysone-25-β-D-glycoside is a spare substance of major component 20-hydroxyecdysone.

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Author Biographies

  • Лариса Николаевна Зибарева (Zibareva), Tomsk State University, Siberian Botanical Garden
    доктор химических наук, заведующая лабораторией фитохимии
  • Ольга Владимировна Волкова (Volkova), Tomsk State University, Siberian Botanical Garden
    старший лаборант
  • Сергей Владимирович Морозов (Morozov), Novosibirskij Institute of organic chemistry of SB RAS
    кандидат химических наук, заведующий лабораторией
  • Елена Ильинична Черняк (Chernayk), Novosibirskij Institute of organic chemistry of SB RAS
    старший научный сотрудник

References

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2. Zibareva L. Distribution and levels of phytoecdysteroids in plants of genus Silene during development // Archives
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3. Zibareva L., Yeriomina V. I., Munkhjargal N., Girault J.-P., Dinan L.,. Lafont R. The Phytoecdysteroid Profiles of 7 Species of Silene (Caryophyllaceae) // Archives of insect biochemistry and physiology. 2009. Vol. 72. N4. Pp. 234–248.
4. Патент № 2445110 (РФ). Способ получения 26-интегристерона А из растительного сырья / Л.Н. Зибарева, О.В. Волкова / 07.12.2010.
5. Ecdybase [Electronic resource]. URL: http://www.ecdybase.org
6. Зибарева Л.Н., Волкова О.В., Лафон Р. Виды рода Silene – продуценты 26-гидроксиэкдистероидов // Теоретиче-ская и прикладная экология. 2012. №1. С. 66–72.
7. Nishimoto N., Shiobara Y., Inoue S., Fujino M. Three ecdysteroid glycosides from Pfaffia iresinoides // Phytochemis-try. 1988. Vol. 27. Рp. 1665–1668.
8. Girault J.-P., Bathori M., Varga E., Szendrei K., Lafont R. Isolation and identification of new ecdysteroids from the Caryophyllaceae // J. of Natural Products. 1990. Vol. 53. Pp. 279–293.

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Published

2016-10-23

Issue

Section

Low-molecular weight compounds

How to Cite

[1]
2016. PHYTOECDYSTEROIDS OF ROOT SILENE FRIVALDSZKYANA HAMPE. chemistry of plant raw material. 1 (Oct. 2016), 71–75. DOI:https://doi.org/10.14258/jcprm.2017011416.

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