2023 Ecosystem Transformation 6 (5), 3-10
The phenolic compound content in plants of the family Ericaceae under cryolithozone conditions
Ivanova N.N. , Chirikova N.K.
DOI: https://doi.org/10.23859/estr-230123Volume: 6
Number: 5
Pages: 3-10
Received: 23.01.2023
Accepted: 15.02.2023
Available online: 01.12.2023
Published: 15.12.2023
ISSN 2619-0931 Online
The content of phenolic compounds in the fruits of various plant species of the family Ericaceae, collected on the territory of the Republic of Sakha (Yakutia) during the fruiting period in July–August, was studied. The study confirms that plants growing in permafrost conditions accumulate large amounts of phenolic compounds. As a result of phytochemical analysis, it was found that the most valuable plant raw material in terms of content of phenolic compounds is Vaccinium uliginosum.
N. N. Ivanova 
M.K. Ammosov North-Eastern Federal University
Russia, Republic of Sakha (Yakutia), 677000, Yakutsk, Belinsky, 58
niklaida@mail.ru
N. K. Chirikova
M.K. Ammosov North-Eastern Federal University
ul. Kulakovskogo 46, Yakutsk, Republic of Sakha (Yakutia), 660049 Russia
hofnung@mail.ru
Afanasiyeva, E.A., 2020. Opredelitel’ vysshikh rasteniy Yakutii [Key to higher plants of Yakutia]. KMK Scientific Press Ltd, Moscow, Russia, 896 p. (In Russian).
Belova, E.A., Krivykh, E.A., Kavushevskaya, N.S., Bystrevskaya, L.K., Zhautikova, S.B., 2020. Tsitoprotektornyi potentsial polifenol’nykh ekstraktov plodov roda Vaccinium, proizrastaiushchikh na territorii Iugry, v usloviiakh in vitro [Cytoprotective potential of polyphenolic extracts of fruits of the genus Vaccinium growing on the territory of Ugra under in vitro conditions]. Vestnik SurGU. Meditsina [Bulletin of Surgut State University. Medicine] 1 (43), 86–93. (In Russian).
Borisov, V.E., Nogovitsyn, R.R., 2019. Osobennosti prirodno-klimaticheskikh faktorov dlya sozdaniya novykh biotekhnologicheskikh proizvodstv v respublike Sakha (Yakutiya) [Features of natural and climatic factors for the creation of new biotechnological production in the Republic of Sakha (Yakutia)]. Materialy Mezhdunarodnoi nauchno-prakticheskoi konferentsii “Resursnaia ekonomika v kontekste sovremennykh tendentsii globalizatsii” [Proceedings of the International Scientific and Practical Conference “Resursnaya ekonomika v kontekste sovremennykh tendentsiy globalizatsii”], Yakutsk, 22–23.03.2019. Yakutsk, Russia, 67–73. (In Russian).
Cherkasov, A.F., Gorbunov, A.B., Tyak, G.V., Makeyev, V.A., Levgerova, N.S., 1999. Klyukva, brusnika i golubika [Cranberries, lingonberries and blueberries]. In: Sedov, E.N. and Ogoltsova, T.P. (eds.), Programma i metodika sortoizucheniya plodovykh, yagodnykh i orekhoplodnykh kul’tur [Program and methodology for studying varieties of fruit, berry and nut crops]. All-Russian Research Institute for Breeding Fruit Crops, Orel, Russia, 481–492 (In Russian).
Dikorastushchiye poleznyye rasteniya Rossii [Wild useful plants of Russia], 2001. Budantsev, A.L. and Lesiovskaya, E.E. (eds.). Saint Petersburg State Chemical and Pharmaceutical University, St. Petersburg, Russia, 663 p. (In Russian).
Dróżdż, P., Šėžienė, V., Wójcik, J., Pyrzyńska, K., 2018. Evaluation of bioactive compounds, minerals and antioxidant activity of lingonberry (Vaccinium vitis-idaea L.) fruits. Molecules 23 (1), 53. https:// doi.org/10.3390/molecules23010053
Ek, S., 2006. Characterization of phenolic compounds from lingonberry (Vaccinium vitis-idaea). Journal of Agricultural and Food Chemistry 54 (26), 9834–9842.
Ershova, I.V., 2016. Soderzhaniye biologicheski aktivnykh fenol’nykh soyedineniy v sibirskikh plodakh i yagodakh [Content of biologically active phenolic compounds in Siberian fruits and berries]. Dostizheniya nauki i tekhniki APK [Achievements of Science and Technology of the Agro-Industrial Complex] 30 (9), 44–47. (In Russian).
Gosudarstvennaya farmakopeya Rossiyskoy Federatsii. XIII izdanie [State Pharmacopoeia of the Russian Federation. XIII edition], 2015. Ministry of Health of the Russian Federation, Moscow, Russia, 1470 p. (In Russian).
Kowalska, K., Olejnik, A., Zielińska-Wasielica, J., Olkowicz, M., 2019. Inhibitory effects of lingonberry (Vaccinium vitis-idaea L.) fruit extract on obesity-induced inflammation in 3T3-L1 adipocytes and RAW 264.7 macrophages. Journal of Functional Foods 54, 371–380. https://doi.org/10.1016/j. jff.2019.01.040
Kurkin, V.A., Ryazanova, T.K., Platonov, I.A., Pavlova, L.V., 2015. Kolichestvennoye opredeleniye arbutina v list’yakh toloknyanki obyknovennoy [Quantitative determination of arbutin in bearberry leaves]. Khimiya rastitel’nogo syr’ya [Chemistry of Plant Materials] 1, 95–100. (In Russian).
Kurlovich, T.V., 2014. Golubika vysokoroslaya: biologicheskiye osobennosti i lekarstvennyye svoystva [Highbush blueberry: biological features and medicinal properties]. Materialy III Mezhdunarodnoi nauchno-prakticheskoi konferentsii “Lekarstvennoe rastenievodstvo: ot opyta proshlogo do sovremennykh tekhnologii” [Materials of the III International Scientific and Practical Conference “Lekarstvennoye rasteniyevodstvo: ot opyta proshlogo do sovremennykh tekhnologiy”]. Poltava, 15– 16.05.2014, Poltava, Ukraine, 122–125. (In Russian).
Lin, L.-Z., Harnly, J.M., 2007. A screening method for the identification of glycosylated flavonoids and other phenolic compounds using a standard analytical approach for all plant materials. Journal of Agricultural and Food Chemistry 55 (4), 1084–1096. https://doi.org/10.1021/jf062431s
Lyutikova, M.N., 2013. Study of the composition of biologically active components of wild berries Vaccinium vitis-idaea and Oxycoccus palustris depending on their degree of maturity and storage conditions [Izucheniye sostava biologicheski aktivnykh komponentov dikorastushchikh yagod Vaccinium vitis-idaea i Oxycoccus palustris v zavisimosti ot stepeni ikh zrelosti i usloviy khraneniya]. PhD in Chemistry thesis. Surgut, Russia, 124 p. (In Russian).
Olennikov, D.N., Chekhirova, G.V., 2013. 6″-Galloylpicein and other phenolic compounds from Arctostaphylos uva-ursi. Chemistry of Natural Compounds 49 (1), 1–7. https://doi.org/10.1007/ s10600-013-0491-6
Panusa, A., Petrucci, R., Marrosu, G., Multari, G., Gallo, F.R., 2015. UHPLC-PDA-ESI-TOF/MS metabolic profiling of Arctostaphylos pungens and Arctostaphylos uva-ursi. A comparative study of phenolic compounds from leaf methanolic extracts. Phytochemistry 115, 79–88. https://doi.org/10.1016/j. phytochem.2015.01.002
Pavlova, E.E., Berezina, E.V., Mishukova, I.V., Brilkina, A.A., 2012. Analiz soderzhaniia fenol'nykh soedinenii i askorbinovoi kisloty u razlichnykh vidov golubiki (Vaccinium L.) v periody tsveteniia i plodonosheniia [Analysis of the content of phenolic compounds and ascorbic acid in various blueberry species (Vaccinium L.) during flowering and fruiting]. Vestnik Nizhegorodskogo universiteta im. N.I. Lobachevskogo [Bulletin of Nizhny Novgorod University named after N.I. Lobachevsky] 2 (3), 222–229. (In Russian).
Popova, A.S., Mironova, G.E., Argunov, V.A., 2008. Antioksidantnyye sistemy zashchity organizmov i biotekhnologicheskiye puti korrektsii ikh narusheniy v usloviyakh severa [Antioxidant systems for protecting organisms and biotechnological ways to correct their violations in northern conditions]. Publishing House of the Yakut Scientific Centre of the Siberian Branch RAS, Yakutsk, Russia, 128 p. (In Russian).
Prisyazhnyy, M.Yu., 2003. Geograficheskiye osnovaniya razvitiya otdel’nykh chastey Yakutii v kratkikh opisaniyakh ulusov, naslegov i naselennykh mest respubliki [Geographical basis for the development of individual parts of Yakutia in brief descriptions of uluses, naslegs and populated areas of the republic]. Sakhapoligrafizdat, Yakutsk, Russia, 696 p. (In Russian).
Radulovic, N., 2010. Comparative study of the leaf volatiles of Arctostaphylos uva-ursi (L.) Spreng. and Vaccinium vitis-idaea L. (Ericaceae). Molecules 15 (9), 6168–6185. https://doi.org/10.3390/ molecules15096168
Singleton, V.L., Orthofer, R., Lamuela-Raventós, R.M., 1999. Analysis of total phenols and other oxidation substrates and antioxidants by means of folin-ciocalteu reagent. Methods in Enzymology 299, 152–178. https://doi.org/10.1016/S0076-6879(99)99017-1
Ștefănescu, B.E., Szabo, K., Mocan, A., Crişan, G., 2019. Phenolic compounds from five Ericaceae species leaves and their related bioavailability and health benefits. Molecules 24 (11), 2046. https:// doi.org/10.3390/molecules24112046
Tarantul, A., Eliseeva, T., 2020. Golubika (lat. Vaccinium uliginosum) [Blueberry (lat. Vaccinium uliginosum)]. Zhurnal zdorovogo pitaniia i dietologii [Journal of Healthy Eating and Dietetics] 13, 14– 25. (In Russian).
https://doi.org/10.59316/.vi13.80
Yudina, V.F., Maksimova, T.A., 1993. Sezonnoye razvitiye rasteniy bolot [Seasonal development of swamp plants]. Karelian Research Center RAS, Petrozavodsk, Russia, 168 p. (In Russian).
Keywords: Vaccinium vitis-idaea, Vaccinium uliginosum, Arctostaphylos uva-ursi, arbutin, extractives, flavonoids, tannins, Yakutia
For citation: Ivanova, N.N., Chirikova, N.K., 2023. The phenolic compound content in plants of the family Ericaceae under cryolithozone conditions. Ecosystem Transformation 6 (5), 3–10. https://doi. org/10.23859/estr-230123
