Adams, R. P. (2007). Identification of Essential Oil Components by Gas Chromatography/Mass Spectrometry (4th ed.). Allured Publishing Corporation.
Ahmad, S., Ullah, F., Ayaz, M., Sadiq, A., Imran, M., & Ali, I. (2015). Chemical composition, antioxidant and anticholinesterase potential of essential oil of Ranunculus arvensis L. BMC Complementary and Alternative Medicine, 15(1), 1–7. https://doi.org/10.1186/s12906-015-0705-4
Al-Hajj, H. A. (1998). Light Microscopic Techniques (Theory and practice). Jordan book center, Amman - Jordan, 331 PP.
Alrawi, M. Sh., Aldobaissi, I. A. & Almehemdi, Ali F. (2023). Anatomical Study of Twelve Mimosoideae Species in Iraq. Iraq J Desert Studies, 13(2), 72. https://doi.org/10.36531/ijds.2023.140026.1036
Ando, H., Kurata, A., & Kishimoto, N. (2015). Antimicrobial properties and mechanism of volatile isoamyl acetate, a main flavour component of Japanese sake (Ginjo-shu). Journal of applied microbiology, 118(4), 873–880. https://doi.org/10.1111/jam.12764
Ahmed, M., Marrez, D. A., Mohamed Abdelmoeen, N., Abdelmoneem Mahmoud, E., Ali, M. A.-S., Decsi, K., & Tóth, Z. (2023). Studying the Antioxidant and the Antimicrobial Activities of Leaf Successive Extracts Compared to the Green-Chemically Synthesized Silver Nanoparticles and the Crude Aqueous Extract from Azadirachta indica. Processes, 11(6), 1644. https://doi.org/10.3390/pr11061644
Aparna, V., Dileep, K. V., Mandal, P. K., Karthe, P., Sadasivan, C., & Haridas, M. (2012). Anti-inflammatory property of n-hexadecanoic acid: Structural evidence and kinetic assessment. Chemical Biology & Drug Design, 80(3), 434–439.
Aslam, M. Choudhary, B. Uzair, M. & Ijaz, A. (2013). phytochemical study of aerial parts of Ranunculus muricatus for the pharmacological active compounds. Journal of Applied Pharmacy, 5(4). 827-832.
https://doi.org/10.21065/19204159.5.131
Atanacković, V., Ranđelović, V., & Ibrahim, R.I.H. (2013). Morphological and anatomical observatories on Ranunculus auricomus L. var. biformis L. in Vlasina Lake, Serbia. Biologica Nyssana, 4 (1-2), 41-48.
Azam, F., Chaudhry, B.A., Ijaz, H. & Qadir, M.I. (2019). Caffeoyl-β-d-glucopyranoside and 1,3-dihydroxy-2-tetracosanoylamino-4-(E)-nonadecene isolated from Ranunculus muricatus exhibit antioxidant activity. Sci Rep 9, 15613. https://doi.org/10.1038/s41598-019-52166-w
Ayllón-Gutiérrez, R., Díaz-Rubio, L., Montaño-Soto, M., Haro-Vázquez, M. d. P., & Córdova-Guerrero, I. (2024). Applications of Plant Essential Oils in Pest Control and Their Encapsulation for Controlled Release: A Review. Agriculture, 14(10), 1766. https://doi.org/10.3390/agriculture14101766
Bajpai, V. K., Baek, K. H., & Kang, S. C. (2013). Control of Salmonella in foods by using essential oils: A review. Food Research International, 45(2), 722–734.
Bajpai, V. K., Yoon, J. I., & Kang, S. C. (2013). Antimicrobial activity of palmitic acid isolated from Melia azedarach fruit against bacterial and fungal pathogens. International Journal of Food Microbiology, 167(2), 344–350. https://doi.org/10.1016/j.ijfoodmicro.2013.08.009
Dochev, G. Zhalnov, I. & Docheva, M. (2014). Ecological-anatomical characteristic and volatility of Ranunculus arvensis var. spinosus, genus Ranunculus L. (Ranunculaceae Juss.). Turkish Journal of Agricultural and Natural Sciences, 4,1464-1467.
Fahn, A. (1990). Plant Anatomy. 4th ed. Oxford: Pergamon Press, 152-184, 223, 262.
Gaube, P., Marchenko, P., Müller, C., Schweiger, R., Tenhaken, R., Keller, A., & Junker, R. R. (2023). Inter- and intraspecific phytochemical variation correlate with epiphytic flower and leaf bacterial communities. Environmental Microbiology, 25(10), 1075–1089. https://doi.org/10.1111/1462-2920.16382
Harborne, J. B. (1998). Phytochemical Methods: A Guide to Modern Techniques of Plant Analysis (3rd ed.). Chapman & Hall.
Khan, F.A., Zahoor, M., & Khan E. (2016). Chemical and biological evaluation of Ranunculus muricatus. Pak J Pharm Sci., 29(2), 503-510.
Lopez-Huertas, E., Fonolla, J., & Delgado-Lista, J. (2010). Effects of milk enriched with ω-3 fatty acid, oleic acid, and vitamins on cardiovascular risk markers in healthy subjects. Nutrition, 26(3), 295–302.
Mauseth, J.D. (1988). Plant Anatomy. Menlo Park: Benjamin Cummings, p. 167-198.
Medeiros, M. A., Mendes, F. Q., Oliveira, D. V., & Garcia, K. S. (2020). Antifungal activity of phenylacetaldehyde derivatives against Candida spp. Pharmaceutical Biology, 58(1), 202–208.
Medeiros, M. C., Tavares, T. W., & dos Santos, M. M. (2020). Phenylacetaldehyde as a volatile compound involved in plant defense and pollinator attraction. Plant Physiology and Biochemistry, 153, 455–462. https://doi.org/10.1016/j.plaphy.2020.08.005
Metcalfe, C. R., & Chalk, L. (1979). Anatomy of the Dicotyledons (Vol. 1 & 2). Clarendon Press.
Ming-Lin, C., Wen-Bin, M. & Mei-Chen, C. (2013). adaptive anatomical structure for nastic movement in Mimosa pudica L. Bangladesh J. Bot, 42(1), 131-137.
Musyimi, D.M., & Neema, P.M. (2019). Phytochemicals and Antibacterial Activities of Leaf Extract of Tridax procumbens Linn. on Staphylococcus aureus and Escherichia coli. East African Scholars J Biotechnol Genet, 1(6), 149–154. https://doi.org/10.36349/EASJBG.2019.v01i06.008
Naz, R., & Bano, A. (2013). Phytochemical screening, antioxidants and antimicrobial potential of Lantana camara in different solvents. Asian Pacific Journal of Tropical Disease, 3(6), 480–486. https://doi.org/10.1016/S2222-1808(13)60104-8
Prasad, K. N., Yang, B., Dong, X., Jiang, G., Zhang, H., Xie, H., & Jiang, Y. (2009). Flavonoid contents and antioxidant activities from Cinnamomum species. Innovative Food Science & Emerging Technologies, 10(4), 627–632. https://doi.org/10.1016/j.ifset.2009.05.009
Prasad, S., Yadav, D., & Singh, A. (2009). Antioxidant and antimicrobial activity of 3,5-dihydroxy-6-methyl-2H-pyran-4-one from Curcuma longa rhizomes. Natural Product Research, 23(3), 257–264. https://doi.org/10.1080/14786410802363351
Qu, L., Kong, F., Chen, X., Zhang, Y., Lin, Z., Ni, X., Zhang, X., Lu, Q., Zhao, Y., & Zou, B. (2025). Progress in Research on the Preparation of 2, 5-Furandicarboxylic Acid by Hydroxymethylfurfural Oxidation. Catalysts, 15(4), 373. https://doi.org/10.3390/catal15040373
Raziq, N., Saeed, M., Ali, M. S., Shahid, M., Lateef, M., & Zafar, S. (2022). Muricazine, a new hydrazine derivative from Ranunculus muricatus L. with antioxidant, lipoxygenase and urease inhibitory activities. Natural Product Research, 36(4), 961–966. https://doi.org/10.1080/14786419.2020.1855169
Sasidharan, S., Chen, Y., Saravanan, D., Sundram, K. M., & Yoga Latha, L. (2011). Extraction, isolation and characterization of bioactive compounds from plants’ extracts. African Journal of Traditional, Complementary and Alternative Medicines, 8(1), 1–10. https://doi.org/10.4314/ajtcam.v8i1.60483
Shukla, A.C. (2018). Essential oils as green pesticides for postharvest disease management. Acta Hortic. 1210, 199-206. https://doi.org/10.17660/ActaHortic.2018.1210.28
Simões, M. O. M., Lopes,P. S. N., Sousa de Oliveira, M. N., Júnior,É. M. F. & Ribeiro, L. M. (2003). Anatomical study of Leaf Mesophyll of Albizia Spp (Leguminosae/ Mimosoideae). Unimontes Científica. Montes Claros, 5, 1, 1-9.
Smirnova, M. V., Koygerova, A. A., & Tsvetov, N. S. (2023). Influence of Ranunculus acris Flower Extract on Allium cepa Root Meristem. International Journal of Plant Biology, 14(1), 91-99.
https://doi.org/10.3390/ijpb14010008
Tamura, M. (1993). Ranunculaceae. In K. Kubitzki, J. G. Rohwer, & V. Bittrich (Eds.), The Families and Genera of Vascular Plants (Vol. 2, pp. 563–583). Springer.
Thai, T. H., Hai, N. T., Hien, N. T., Ha, C. T. T., Cuong, N. T., Binh, P. T., Dang, N. H., & Dat, N. T. (2017). cytotoxic Constituents of Mallotus microcarpus. Natural product communications, 12(3), 407–408. https://doi.org/10.1177/1934578X1701200325
Tobe, H., & Raven, P. H. (2011). Floral and seed anatomy of the Ranunculaceae and its taxonomic implications. Plant Systematics and Evolution, 297(1–2), 1–28. https://doi.org/10.1007/s00606-011-0497-6
Townsend, C. C., & Guest, E. (1985). Flora of Iraq (Vol. 8). Ministry of Agriculture and Agrarian Reform, Republic of Iraq.
Tran, T., Tran, T., Pham, B., Hoang, K., Nguyen, T., Trinh, A. & Nguyen, V. (2025). Antioxidant and alpha-glucosidase inhibitory activities of flavonoids isolated from fermented leaves of Camellia chrysantha (Hu) Tuyama. Turkish Journal of Biochemistry, 50(3), 415-421. https://doi.org/10.1515/tjb-2024-0198
Zhao, L., Chen, J., Su, J., Li, L., Hu, S., Li, B., Zhang, X., Xu, Z., & Chen, T. (2013). In vitro antioxidant and antiproliferative activities of 5-hydroxymethylfurfural. Journal of Agricultural and Food Chemistry, 61(44), 10604–10611. https://doi.org/10.1021/jf403098y