THE FEATURES OF THE ACCUMULATION OF FLAVONOIDS IN BIOTECHNOLOGICAL RAW MATERIAL OF IRIS SIBIRICA L. THE DEVELOPMENT OF METHODS OF QUANTIFICATION
UDC 615.322:582. 579.2:581.192
Abstract
Identification of scientific regularities of accumulation of physiologically active compounds is relevant to the issues of plant biology, as it can create conditions for the rapid development of biotechnological approaches and the solution of a number of environmental and economic problems associated with the use of plant raw materials. The aim of this work was to identify the features of the accumulation of flavonoids and the development of methods of differential spectrophotometry allows to assess the quality of biotechnological raw materials Iris sibirica L. (Siberian iris) on the content of flavonoids.
The most important regulators of the synthesis of secondary compounds in plant tissue cultures include such components of nutrient media as hormones. As a result of our experiments it was noted for I. sibirica characteristic relationship between the accumulation of biomass and the content of quercetin and rutin. On the medium with 5.0 µm BAP, supplemented by auxins with an increase in the total height of the shoots, the quercetin content and rutin in the phytomass decreased dramaticly. To maintain a balance between biomass accumulation and flavonoid content for I. sibirica, we recommend using media with 2.5 µm BAP supplemented with auxins.
The developed method allows to determine the content of the total of flavonoids in Iris sibirica raw materials in the presence of other compounds, is simple in execution and does not require expensive equipment. A validation evaluation of the technique indicates its suitability for quality control of biotechnological raw materials Iris sibirica.
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Middleton E., Kandaswami C., Theoharides T. Pharmacol. Rev., 2000, vol. 52, no. 4, pp. 673–701.
Parr A.J., Bolwell G.P. J. Sci. Food Agr., 2000, vol. 80, pp. 985–1012. DOI: 10.1002/(SICI)1097-0010(20000515)80:7<985::AID-JSFA572>3.0.CO;2-7
Levitskiy A.P. Visnyk farmakolohiyi ta farmatsiyi, 2004, no. 2, pp. 2–4. (in Russ.).
Korenskaya I.M., Ivanovskaya N.P., Izmalkova I.Ye. Lekarstvennyye rasteniya i lekarstvennoye rastitel'noye syr'ye, soderzhashchiye flavonoidy. [Medicinal plants and medicinal plant materials containing flavonoids]. Voronezh, 2007, 81 p. (in Russ.).
Smirnov O., Kosyk O. Visn. Lʹviv. un-tu. Ser. Biolohiya, 2011, vol. 56, pp. 3–11. (in Ukr.).
Tarakhovskiy Yu.S., Kim Yu.A., Abdrasilov B.S., Muzafarov Ye.N. Flavonoidy: biokhimiya, biofizika, meditsina. [Flavonoids: biochemistry, biophysics, medicine]. Pushchino: Sunchrobook, 2013, 310 p. (in Russ.).
Borisova G.G., Yermoshin A.A., Maleva M.A., Chukina N.V. Osnovy biokhimii vtorichnogo obmena rasteniy. [Fun-damentals of biochemistry of secondary metabolism of plants]. Yekaterinburg, 2014, 128 p. (in Russ.).
Karimov A.M., Popkov A.S., Ostroushko Yu.V., Turtayeva R.I., Botirov E.Kh. Khimiya rastitel'nogo syr'ya, 2018, no. 4, pp. 89–94. DOI: 10.14258/jcprm.2018043728. (in Russ.).
Sagaradze V.A., Babayeva Ye.Yu., Ufimov R.A., Zagurskaya Yu.V., Trusov N.A., Korotkikh I.N., Markin V.I., Pe-shchanskaya Ye.V., Mozhayeva G.F., Kalenikova Ye.I. Khimiya rastitel'nogo syr'ya, 2018, no. 4, pp. 95–104. DOI: 10.14258/jcprm.2018044039. (in Russ.).
Korkina L.G., Afanas'ev I.B. Adv. Pharmacol., 1997, vol. 38, pp. 151–163. DOI: 10.1016/s1054-3589(08)60983-7.
Kostyuk V.A., Potapovich A.I. Bioradikaly i bioantioksidanty. [Bioradicals and bioantioxidants]. Minsk, 2004, 174 p. (in Russ.).
Andersen O.M., Markham K.R. Flavonoids: chemistry, biochemistry and application, New York: CRC Press, 2005, pp. 397–441.
Es-Safi N.E., Ghidouche S., Ducrot P.H. Molecules, 2007, vol. 12, pp. 2228–2258.
Hooper L., Kroon P.A., Rimm E.B., Cohn J.S., Harvey I., Le Cornu K.A., Ryder J.J., Hall W.L., Cassidy A. Am. J. Clin. Nutr., 2008, vol. 88, pp. 38–50.
Kuhad A., Chopra K. Drugs of the Future, 2008, vol. 33 (3), pp. 249–287.
Aslanyants L.K., Marshavina Z.V., Kazaryan A.G. Rastitel'nyye resursy, 1988, vol. 24, pp. 107–110. (in Russ.).
Bagdasarova Z.M., Aslanyants L.K., Uzunyan L.V. Prikladnaya biokhimiya i mikrobiologiya, 1988, vol. 24, pp. 774–778. (in Russ.).
Kaššák P. Journal of Pharmacognosy and Phytochemistry, 2014, no. 3, pp. 11–14.
Sedel'nikova L.L., Kukushkina T.A. Uchonyye zapiski ZabGU, 2016, vol. 11, no. 1, pp. 123–128. (in Russ.).
Tarbeyeva D.V. Polifenol'nyye metabolity Iris rseudacorus L. i yego kletochnoy kul'tury: dis. … kand. khim. nauk. [Polyphenolic metabolites of Iris pseudacorus L. and its cell culture: dis. ... cand. Chem. sciences]. Vladivostok, 2016, 126 p. (in Russ.).
Zaprometov M. Advances in Cell. Culture, 1989, vol. 7, pp. 201–260.
Butenko R.G. Biologiya kletok vysshikh rasteniy in vitro i biotekhnologiya na ikh osnove. [Biology of cells of higher plants in vitro and biotechnology based on them]. Moscow, 1999, 152 p. (in Russ.).
Zagoskina N.V., Dubravina G.A., Zaprometov M.N. Fiziologiya rasteniy, 2000, vol. 47, no. 4, pp. 537–543. (in Russ.).
Tadhani M., Patel V., Subhash R. J. Food Compos. Analysis, 2007, vol. 20, no. 3–4, pp. 323–329. DOI: 10.1016/j.jfca.2006.08.004.
Matkowski A. Biotechnology Advances, 2008, vol. 26, pp. 548–560.
Nosov A.M. Applied Biochemistry and Microbiology, 2012, vol. 48, pp. 609–624. DOI: 10.1016/j.biotechadv.2008.07.001.
Marchev A., Haas C., Schulz S., Georgiev V., Steingroewer J., Bley T., Pavlov A. Biotechnol Lett., 2014, vol. 36, pp. 211–221. DOI: 10.1007/s10529-013-1350-z.
Tikhomirova L.I., Il'ichova T.N., Bazarnova N.G., Sysoyeva A.V. Khimiya rastitel'nogo syr'ya, 2016, no. 3, pp. 59–66. DOI: 10.14258/jcprm.2016031228. (in Russ.).
Tikhomirova L.I., Bazarnova N.G., Sysoyeva A.V. Khimiya rastitel'nogo syr'ya, 2018, no. 1, pp. 145–154. (in Russ.). DOI: 10.14258/jcprm.2018012734.
Tikhomirova L.I., Bazarnova N.G., Il'icheva T.N., Martirosyan Yu.Ts. Khimiya rastitel'nogo syr'ya, 2018, no. 4, pp. 235–245. (in Russ.). DOI: 10.14258/jcprm.2018043887.
Konovalov D.A., Konovalova D.S. Nauchnyye vedomosti. Meditsina. Farmatsiya, 2012, no. 16 (135), pp. 165–159. (in Russ.).
OFS.1.1.0013.15. Statisticheskaya obrabotka rezul'tatov eksperimenta. [OFS.1.1.0013.15. Statistical processing of ex-perimental results]. URL: https://pharmacopoeia.ru/ofs-1-1-0013-15-statisticheskaya-obrabotka-rezultatov-eksperimenta/ (in Russ.).
AOAC Peer Verified methods Program, Manual on policies and procedures, Arlington, VA, 1993, Nov. Development Pharmaceutics and Process Validation: Directive 75/318/EEC – 1998.
Antipova Ye.A., Kudrikova L.Ye. Farmatsevticheskiye nauki: ot teorii k praktike, 2016, pp. 110–112. DOI: 10.14258/jcprm.2019024291. (in Russ.).
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