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Molecular genetic analysis of gene pools of rare and endangered plant species Adonis L. of Northern Kazakhstan | ||
Caspian Journal of Environmental Sciences | ||
دوره 22، شماره 4، دی 2024، صفحه 913-918 اصل مقاله (823.53 K) | ||
نوع مقاله: Research Paper | ||
شناسه دیجیتال (DOI): 10.22124/cjes.2024.8139 | ||
نویسندگان | ||
Moldir Zhumagul* 1؛ Anar Myrzagaliyeva2؛ Saule Mukhtubayeva3؛ Saule Baibossynova3؛ Ainur Zhanbyrbayeva4؛ Kairat Akhmetov5؛ Assel Rustemova* 6؛ Assemgul Bekturova* 6 | ||
1Al-Farabi Kazakh National University, Faculty of Biology and Biotechnology, Department of Biodiversity and Bioresources, Almaty, Kazakhstan, | ||
2Astana International University, Astana, Kazakhstan | ||
3Astana Botanical Garden” Branch of the Republican State Enterprise on the Right of Economic Management “Institute of Botany and Phytoinroduction”, Astana, Kazakhstan | ||
4Asfendiyarov Kazakh National Medical University, Almaty, Kazakhstan | ||
5Toraighyrov University» NCJSC, Faculty of Natural Sciences, Pavlodar, Kazakhstan | ||
6L.N. Gumilyov Eurasian National University, Astana, Kazakhstan, | ||
چکیده | ||
Adonis L. is one of the largest and most famous genera of the Runanculaceae family. Adonis genus includes two parts of annual and perennial species. The latter contains more effective substances than annual species, but among annual species, plants. Adonis L. contains more effective substances, which mainly grow in sandy areas with high heat in the central parts of Kazakhstan. The extract of Adonis L. plant species has a high total phenolic content and, therefore, requires research on this plant's antioxidant and radical removal properties. Describing plants by molecular markers is a good strategy for improving and protecting plant genetic resources. The aim of this study is molecular genetic analysis to investigate the total phenolic content of the Adonis L. hydroalcoholic extract. The phenolic content of this plant extract was determined by the Folin Ciocaltio reagent method (FC) and Gallic acid as a standard. The results showed that the hydroalcoholic extract has a total phenolic content of 26.607 ± 2.35 mg of Gallic acid per gram of extract. The increase in the antioxidant activity of essential oils is significantly related to the increase in the phenolic content of essential oils. The results showed that the presented method is suitable and useful for estimating genetic diversity in Adonis L. populations. | ||
کلیدواژهها | ||
Adonis L؛ Molecular genetic؛ Gene pools؛ Phenolic | ||
مراجع | ||
Boronnikova, SV & Kalendar, RN 2010, Using IRAP markers for analysis of genetic variability in populations of resource and rare species of plants. Russian Journal of Genetics, 46: 36-42.
Dorogina, OV, Nuzhdina, NS, Kozlova, MV, Zueva, GA & Vasilyeva, OY 2023, Identification of populations by ISSR markers and a histochemical determination of transient starch in species of the genus Miscanthus Anderss. Contemporary Problems of Ecology, 16: 67-75.
Hassan, FF, Yasir, MS & Hawar, SN 2023, Investigation of bioactivity of surfactant-like biomolecules against bacteria and fungi. Procedia of Environmental Science, Engineering and Management, 10: 527-544.
Kropf, M, Bardy, K, Höhn, M & Plenk, K 2020, Phylogeographical structure and genetic diversity of Adonis vernalis L.(Ranunculaceae) across and beyond the Pannonian region. Flora, 262: 151497.
Karahan, F, İlçim, A, Türkoğlu, A, İlhan, E & Haliloğlu, K 2022, Phylogenetic relationship among taxa in the genus Adonis L. collected from Türkiye based on nrDNA internal transcribed spacer (ITS) markers. Molecular Biology Reports, 49(8): 7815-7826.
Kovács, Z, Mlinarec, J & Höhn, M 2023, Living on the edge: morphological, karyological and genetic diversity studies of the Hungarian Plantago maxima populations and established ex situ collection. Botanical Studies, 64: 2.
Kropf, M 2012, Genetic variation, biogeographical history, and conservation of Anthyllis montana L. ssp. jacquinii (Kern.) Hayek (Fabaceae) at its northern distribution limit. International Journal of Plant Sciences, 173: 789-801.
Kupriyanov, A 2024, The role of the Kuzbass Botanical Garden in solving environmental problems and in plant conservation in situ and ex situ. In: Botanical Gardens and Their Role in Plant Conservation, pp. 233-246. CRC Press.
Pacher, C, Woschank, M & Zunk, BM 2024, The Impact of Competence on Performance in Industrial Engineering and Management: Conceptualization of a Preliminary Research Model. Procedia Computer Science, 232: 794-803.
Rao, BR 2015, Genetic diversity, genetic erosion, conservation of genetic resources, and cultivation of medicinal plants. Genetic Diversity and Erosion in Plants: Case Histories, 8: 357.
Rosche, C, Heinicke, S, Hensen, I, Silantyeva, MM, Stolz, J, Gröning, S & Wesche, K 2018, Spatio-environmental determinants of the genetic structure of three steppe species in a highly fragmented landscape. Basic and Applied Ecology, 28: 48-59.
Suliyanthini, D 2023, Integrated Steam Education And Creative Skills: Exploring Colour Physics In Tie-Dye Shibori Textiles, Procedia of Environmental Science, Engineering and Management 10: 527-544.
Zaіmenko, N, Gnatiuk, A, Gritsenko, V, Zakrasov, O, Pavliuchenko, N, Kharytonova, I & Holichenko, N 2024, Biochemical and allelopathic features of Adonis vernalis, Allium ursinum, and Leucojum vernum in the MM Gryshko National Botanical Garden of the NAS of Ukraine. Plant Introduction, (101-102): 3-18. | ||
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