ISOLATION AND CHARACTERIZATION OF ENDOPHYTIC FUNGI FROM FERULA KUHISTANICA AND EVALUATION OF THEIR ANTIMICROBIAL SECONDARY METABOLITES
This article describes the isolation of five pure endophytic fungi from various organs - roots, stems, and leaves - of the plant Ferula kuhistanica. The selected isolates were cultivated in a liquid nutrient medium, and their secondary metabolites were extracted using a polar solvent. The antibacterial and antifungal activities of the extracted secondary metabolites were evaluated against various pathogenic microorganisms, and the isolates with high biological activity were identified. The obtained results indicate that the secondary metabolites of the endophytic fungi isolated from Ferula kuhistanica have the potential to serve as alternative sources of antibiotics in the pharmaceutical field.
1. Oʻzbekiston Respublikasi Prezidenti Shavkat Mirziyoyevning 2022-yil 20-maydagi PQ-251-sonli “Dorivor o‘simliklarni madaniy holda еtishtirish va qayta ishlash hamda davolashda ulardan keng foydalanishni tashkil etish chora-tadbirlari to‘g‘risida” gi qarori
2. Vishwakarma, K., Kumar, N., Shandilya, C., Mohapatra, S., Bhayana, S., & Varma, A. (2020). Revisiting plant–microbe interactions and microbial consortia application for enhancing sustainable agriculture: a review. Frontiers in Microbiology, 11, 560406.
3. Ju, Y., Sacalis, J. N., & Still, C. C. (1998). Bioactive flavonoids from endophyte-infected blue grass (Poa ampla). Journal of Agricultural and Food Chemistry, 46(9), 3785-3788.
4. Caruso, G., Abdelhamid, M. T., Kalisz, A., & Sekara, A. (2020). Linking endophytic fungi to medicinal plants therapeutic activity. A case study on Asteraceae. Agriculture, 10(7), 286.
5. Rodriguez, R. J., White Jr, J. F., Arnold, A. E., & Redman, A. R. A. (2009). Fungal endophytes: diversity and functional roles. New phytologist, 182(2), 314-330.
6. Schulz, B., Boyle, C., Draeger, S., Römmert, A. K., & Krohn, K. (2002). Endophytic fungi: a source of novel biologically active secondary metabolites. Mycological research, 106(9), 996-1004.
7. Strobel, G., Daisy, B., Castillo, U., & Harper, J. (2004). Natural products from endophytic microorganisms. Journal of Natural products, 67(2), 257-268.
8. Eshboev, F., Karakozova, M., Abdurakhmanov, J., Bobakulov, K., Dolimov, K., Abdurashidov, A., Baymirzaev, A., Makhnyov, A., Terenteva, E., Sasmakov, S., Piyakina, G., Egamberdieva, D., Nazarov, P. A., & Azimova, S. (2023). Antimicrobial and Cytotoxic Activities of the Secondary Metabolites of Endophytic Fungi Isolated from the Medicinal Plant Hyssopus officinalis. Antibiotics, 12(7), 1201.
9. Niyazmetov, A. R., Terent’eva, E. O., Khamidova, U. B., Khashimova, Z. S., Azimova, S. S., & Vinogradova, V. I. (2020). Synthesis of derivatives of the 2-arylquinoline alkaloid dubamine and their cytotoxicity. Chemistry of Natural Compounds, 56, 511-517.
Copyright (c) 2025 «ACTA NUUz»

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.






.jpg)

1.png)





