Нажмите на эту строку чтобы перейти к Новостям сайта "Русский врач"

Перейти
на сайт
журнала
"Врач"
Перейти на сайт журнала "Медицинская сестра"
Перейти на сайт журнала "Фармация"
Перейти на сайт журнала "Молекулярная медицина"
Перейти на сайт журнала "Вопросы биологической, медицинской и фармацевтической химии"
Журнал включен в российские и международные библиотечные и реферативные базы данных

ВАК (Россия)
РИНЦ (Россия)
Эко-Вектор (Россия)

INFLUENCE OF CULTIVATION CONDITIONS ON THE GROWTH AND ACCUMULATION OF BIOLOGICALLY ACTIVE SUBSTANCES OF HYSSOPUS OFFICINALIS L. UNDER IN VITRO CONDITIONS

DOI: https://doi.org/10.29296/25877313-2024-05-06
Issue: 
5
Year: 
2024

M.Yu. Cherednichenko
Ph.D. (Biol.), Associate Professor, Acting Head of the Department of Biotechnology,
Russian State Agrarian University – Moscow Timiryazev Agricultural Academy (Moscow, Russia)
E-mail: cherednichenko@rgau-msha.ru
D.A. Khlebnikova
Ph.D. (Biol.), Assistant Professor of the Department of Biotechnology,
Russian State Agrarian University – Moscow Timiryazev Agricultural Academy (Moscow, Russia)
E-mail: khlebnikova@rgau-msha.ru
P.A. Fedotova
Student, Russian State Agrarian University – Moscow Timiryazev Agricultural Academy (Moscow, Russia)
E-mail: polifedou@yandex.ru
Brem E.S.
Director of Research and Development Department, Ltd. «Natura Siberica (Moscow, Russia)
E-mail: e.brem@1reshenie.ru
V.A. Romanenko
Technologist-Developer, Ltd. «Natura Siberica» (Moscow, Russia)
E-mail: v.romanenko@1reshenie.ru

Introduction. Since ancient times, aromatic plants have been widely used to treat diseases of various natures due to the content of valuable metab-olites and essential oils (EOs). In modern medicine, cosmetology and the food industry, the importance of aromatic plants is also not in doubt; the chemical composition, accumulation features, synthesis and properties of EO are being actively studied. With the development of clonal micropropaga-tion technology, it has become relevant to study the accumulation of biologically active substances in aseptic in vitro culture (microclones and cell cul-tures) under various propagation protocols. Material and methods. Hyssop (Hyssopus officinalis L.) is a common aromatic plant from the family Lamiaceae Martinov. The aerial parts and EO of the plant have a wide range of biological activities - anti-inflammatory, antioxidant, antimicrobial, etc., which determines the use of plant biomass and extracts in food and light industries, medicine, and pharmacology. In this work, the influence of the mineral and hormonal composition of nutrient me-dia on the growth of aseptic plants of two cultivars of Hyssopus officinalis – Lekar and Iney – was studied. Results and conclusion. A comparison was also made of the accumulation of the total flavonoids in an aseptic culture depending on the cultivation mode - the degree of aeration of the culture vessel and the addition of cytokinin or auxin components to the nutrient medium. It was found that the leaves of aseptic plants of Hyssopus officinalis accumulate more flavonoids (up to 3.6 mg/g fresh weight) than the stems (0.3–1.1 mg/g fresh weight for most experimental variants), in addition, the cv. Lekar was significantly richer in compounds of this group (2.7–3.6 mg/g fresh weight in leaves) compared to the cv. Iney (no more than 1.5 mg/g fresh weight in leaves).

Keywords: 
hyssop
Hyssopus officinalis
Lamiaceae
flavonoids
in vitro culture
secondary metabolites
composition of the nutrient medium.

References: 
  1. Bakhtenko E.Yu., Kurapov P.B. Mnogoobrazie vtorichnyh metabolitov vysshikh rastenij. Vologda: Izd-vo Vologodskij gos. ped. un-t. 2008; 266 p.
  2. Tarakhovskij Yu.S., Kim Yu.A., Abdrasilov B.S. I dr. Flavonoidy: biohimiya, biofizika, medicina. Pushchino: Sunchrobook, 2013; 310 p.
  3. Eibl R., Senn Y., Gubser G. et al. Cellular agriculture: opportunities and challenges. Annual Review of Food Science and Technology. 2021; 12(1): 51–73.
  4. Gubser G., Vollenweider S., Eibl D. Food ingredients and food made with plant cell and tissue cultures: State-of-the art and future trends. Engineering in Life Sci-ences. 2021; 21: 87–98.
  5. Grebennikova O.A., Palij A.E., Khlypenko L.A. i dr. Biologicheski aktivnye veshchestva Hyssopus officinalis L. Orbital'. 2017: 1: 1–8.
  6. Logvinenko L.A., Khlypenko L.A., Marko N.V. Aromaticheskie rasteniya semejstva Lamiaceae dlya fitoterapii. Farmaciya i farmakologiya. 2016; 4: 34–45.
  7. Pungin A.V., Popova E.A., Lartseva L.O. Povyshenie sinteza vtorichnykih metabolitov v kul'ture borodatykh kornej H. officinalis. Vestnik Baltijskogo federal'nogo universiteta im. I. Kanta. Seriya: Estestvennye i meditsinskie nauki. 2022; 1: 98–107.
  8. Rabotyagov V.D. Izuchenie soderzhaniya efirnogo masla v razlichnykh organakh Hyssopus officinalis L. Byulleten' GNBS. 2017; 125: 46–49.
  9. Kotyuk L.A. Antimikrobnaya aktivnost' efiromaslichnyh rastenij semejstva Lamiaceae Lindl. otnositel'no Escherichia coli. Ukrainian Journal of Ecology. 2016; 1: 20–25.
  10. Jankovský M., Landa T. Genus Hyssopus L. – recent knowledge: A review. Horticultural Science. 2018; 29: 119–123.
  11. Mazzanti G., Lu M., Salvatore G. Spasmolytic action of the essential oil from Hyssopus officinalis L. var. decumbens and its major components. Phytotherapy Re-search. 1998; 12: 2–9.
  12. Mitic V., Dordevic S. Essential oil composition of Hyssopus officinalis L. cultivated in Serbia. Facta Universit. 2000; 2(2): 105–108.
  13. Ozer H., Fikrettin S., Kilic H. et al. Essential oil composition of Hyssopus offcinalis L. subsp. angustifolius (Bieb.) Arcangeli from Turkey. Flavour. Fragrance J. 2005; 20: 42–44.
  14. Shoja H.M., Shishavan H.K. Effects of different hormonal treatments on growth parameters and secondary metabolite production in organ culture of Hyssopus offici-nalis L. BioTechnologia (Pozn). 2021; 102(1): 33–41.
  15. Svoboda K.P., Salambosi B., Deans S.G. et al. Agronomical and photochemical investigation of Hyssopus officinalis L. Agric Sci Finl. 1993; 2(4): 29–33.
  16. Vallejo M.C.G., Herraiz J.G., Pérez-Alonso M. Volatile Oil of Hyssopus officinalis L. from Spain. Journal of Essential Oil Research. 1995; 7: 567–568.
  17. Protsenko M.A., Mazurkova N.A., Filippova E.I. i dr. Protivogrippoznaya aktivnost' ekstraktov rastenij semejstva Lamiaceae. Himiya rastitel'nogo syr'ya. 2021; 2: 181–190.
  18. Murashige T., Skoog F. A revised medium for rapid growth and bio-assays with tobacco tissue cultures. Physiol Plant. 1962; 15(3): 473–497.