Arvinte, O.M.; Senila, L.; Becze, A.; Amariei, S. (2023). Rowanberry – A Source of Bioactive Compounds and Their Biopharmaceutical Properties. Plants (Basel). 12(18), 3225. https://doi.org/10.3390/plants12183225
Li, M.; Tetsuo, O.T.; Gao, Y.D.; Xu, B.; Zhu, Z.M.; Ju, W.B.; Gao, X.F. (2017). Molecular phylogenetics and historical biogeography of Sorbus sensu stricto (Rosaceae). Mol Phylogenet Evol., 111, 76–86. https://doi.org/10.1016/j.ympev.2017.03.018.
Olszewska, M.A.; Kolodziejczyk-Czepas, J.; Rutkowska, M.; Magiera, A.; Michel, P.; Rejman, M.W.; Nowak, P.; Owczarek, A. (2019). The Effect of Standardized Flower Extracts of Sorbus aucuparia L. on Proinflammatory Enzymes, Multiple Oxidants, and Oxidative/Nitrative Damage of Human Plasma Components In Vitro. Oxidative Medicine and Cellular Longevity, 9746358. https://doi.org/10.1155/2019/9746358.
Fedoronchuk, M. M. (2017). Taxa of Rosaceae of the Ukrainian flora: position in a new system of the family according to molecular phylogenetic data. Ukr. Bot. J., 4(1), 3–15. https://doi.org/10.15407/ukrbotj74.01.003
Sołtys, A.; Galanty, A.; Podolak, I. (2020). Ethnopharmacologically important but underestimated genus Sorbus: a comprehensive review. Phytochem. Rev., 19, 491–526. https://doi.org/10.1007/s11101-020-09674-9
Németh, C.; Papp, N.; Nosková, J.; Höhn, M. (2020). Speciation by triparental hybridization in genus Sorbus (Rosaceae). Biologia Futura, 71, 209–222. https://doi.org/10.1007/s42977-020-00003-x
Zymone, K.; Raudone, L.; Žvikas, V.; Jakštas, V.; Janulis, V. (2022). Phytoprofiling of Sorbus L. Inflorescences: A Valuable and Promising Resource for Phenolics. Plants (Basel), 11(24), 3421. https://doi.org/10.3390/plants11243421
Lykholat, Y. V.; Khromykh, N. O.; Liashenko, O. V.; Sklyar, T. V.; Anishchenko, A. O.; Balalaiev, O. K.; Holubieva, T. A.; Lykholat, T. Y. (2023). Phytochemical profiles and antimicrobial activity of the inflorescences of Sorbus domestica, S. aucuparia, and S. torminalis. Biosyst. Divers., 31(3), 290–296. https://doi.org/10.15421/012333
Tahirovic, A.; Mehic, E.; Kjosevski, N.; Bašic, N. (2019). Phenolics content and antioxidant activity of three Sorbus species. Bulletin of Chemists and Technologists of Bosnia and Herzegovina, 53, 15–21. https://doi.org/10.35666/ghtbh.2019.03
Orsavová, J.; Juríková, T.; Bednaříková, R.; Mlček, J. (2023). Total phenolic and total flavonoid content, individual phenolic compounds and antioxidant activity in sweet rowanberry cultivars. Antioxidants, 12(4), 913. https://doi.org/10.3390/antiox12040913
Sarv, V.; Venskutonis, P.R.; Bhat, R. (2020). The Sorbus spp. – Underutilised Plants for Foods and Nutraceuticals: Review on Polyphenolic Phytochemicals and Antioxidant Potential. Antioxidants, 9(9), 813. https://doi.org/10.3390/antiox9090813.
Gaivelyte, K.; Jakstas, V.; Razukas, A.; Janulis, V. (2013). Variation in the contents of neochlorogenic acid, chlorogenic acid and three quercetin glycosides in leaves and fruits of rowan (Sorbus) species and varieties from collections in Lithuania. Nat Prod Commun., 8(8), 1105–1110. https://pubmed.ncbi.nlm.nih.gov/24079179/
Mikulić-Petkovsek, M.; Krska, B.; Kiprovski, B.; Veberic, R. (2017). Bioactive components and antioxidant capacity of fruits from nine Sorbus genotypes. J Food Sci., 82(3), 647–658. https://doi.org/10.1111/1750-3841.13643
Bailie, A.; Renaut, S.; Ubalijoro, E.; Guerrero-Analco, J.A.; Saleem, A.; Haddad, P.; Arnason, J.T.; Johns, T.; Cuerrier, A. (2016). Phytogeographic and genetic variation in Sorbus, a traditional antidiabetic medicine – adaptation in action in both a plant and a discipline. Peer J., 4, e2645. https://doi.org/10.7717/peerj.2645
Khromykh, N.O.; Anishchenko A.A.; Didur O.O.; Gaponov A.A.; Kabar A.M.; Lykholat T.Y. (2020). Cuticular wax composition of mature leaves of species and hybrids of the genus Prunus differing in resistance to clasterosporium disease. Biosyst. Divers., 28(4), 370–375. http://dx.doi.org/10.15421/012047
Khromykh N.O.; Didur O.O.; Sklyar T.V.; Davydov V R.; Lavrentievа K.V.; Lykholat T.Y. (2022). Phytochemical profiles, antioxidant and antimicrobial activity of Actinidia polygama and A. arguta fruits and leaves. Biosyst. Divers., 30(1), 39–45. https://doi.org/10.15421/012205
Wink, M. (2003). Evolution of secondary metabolites from an ecological and molecular phylogenetic perspective. Phytochemistry, 64, 3–19. https://doi.org/10.1016/S0031-9422(03)00300-5
Fahim, J. R.; Darwish, A. G.; Zawily, A. L. I.; Wells, J.; Abourehab, M. A. S.; Desoukey, S. Y.; Attia, E. Z.; (2023). Exploring the volatile metabolites of three Chorisia species: Comparative headspace GC–MS, multivariate chemometrics, chemotaxonomic significance, and anti-SARS-CoV-2 potential. Saudi Pharmaceutical Journal, 31(5), 706–726. https://doi.org/10.1016%2Fj.jsps.2023.03.012
Spikes, A. E.; Pashen, M. A.; Millar, J. G.; Moreira, J. A.; Hamel, P. B.; Schiff, N. M.; Ginzel, M. D. (2010). First contact pheromone identified for a longhorned beetle (Coleoptera: Cerambycidae) in the subfamily Prioninae. J Chem Ecol., 36(9), 943–954. https://doi.org/10.1007/s10886-010-9837-8
Mujeeb, F.; Bajpai, P.; Pathak, N. (2014). Phytochemical evaluation, antimicrobial activity, and determination of bioactive components from leaves of Aegle marmelos. BioMed Research International, 2014, 497606. https://doi.org/10.1155/2014/497606.
“The Pherobase: Database of Pheromones and Semiochemicals”. El-Sayed, 2023. http://www.pherobase.com/
Ullah, O.; Shah, M.; Ur Rehman, N.; Ullah, S.; Al-Sabahi, J. N.; Alam, T.; Khan, A.; Khan, N. A.; Rafiq, N.; Bilal, S.; Al-Harrasi A. (2022). Aroma Profile and Biological Effects of Ochradenus arabicus Essential Oils: A Comparative Study of Stem, Flowers, and Leaves. Molecules., 27(16), 5197. https://doi.org/10.3390/molecules27165197.
Xu, Z.; Gao, P.; Liu, D.; Song, W;, Zhu, L.; Liu, X. (2022). Chemical Composition and In Vitro Antioxidant Activity of Sida rhombifolia L. Volatile Organic Compounds. Molecules, 27(20), 7067. https://doi.org/10.3390%2Fmolecules27207067
Al-Hajj, N. O. M., Wang, H., Gasmalla, M. A. A.; Ma, C., Thabit, R., Rahman, M. R. T., Tang, Y. (2014). Chemical Composition and Antioxidant Activity of the Essential Oil of Pulicaria Inuloides. Journal of Food and Nutrition Research, 2(5), 221–227. https://DOI:10.12691/jfnr-2-5-3
Fitzgerald, H.; Helpdesk, G. N. (2020). Nordic Crop Wild Relative (CWR) Checklist. Version 1.16. Nordic Genetic Resource Center (NORDGEN). Sorbus hybrida. https://doi.org/10.15468/itkype
Sennikov, A.; Kurrtto, A. A. (2017). Phylogenetic checklist of Sorbus s.l. (Rosaceae) in Europe. Memoranda Soc Fauna Flora Fennica,93, 1–78. https://www.researchgate.net/publication/317784825_
Fedoronchuk, M. M. (2022). Checklist of flora of Ukraine. 4: Rosaceae family (Rosales, Angiosperms)]. Chornomors’k. bot. z., 18(4), 305–349. https://dx.doi.org/10.32999%2Fksu1990-553X%2F2022-18-4-1
Comments (0)