Alam, S. M., Ala, S. A. Azmi, A. R., Kan, M. A., & Ansari, R. (2001). Allelopathy and it's role in agriculture. Journal of Biological Sciences, 1, 308-315.
Alimoradi, L., Azizi, G., Jahani, M., Siah-Marguee, A., & Keshavarzi, A. (2008). Allelopathy as an alternative method for weed control in saffron fields: A suitable approach to sustainable agriculture. Competition for resources in a changing world: New drive for rural development, Stuttgart, p.127-145.
Asgarpour, R., Khajeh-Hosseini, M., & Khorramdel, S. (2015). Effect of aqueous extract concentrations of saffron organs on germination characteristics and preliminary growth of three weed species. Journal of Saffron Research, 3 (1), 81-96. (In Persian with English abstract). https://doi.org/10.22077/jsr.2015.314
Azizi, E., Alimoradi, L., Jahani Kondori, M., & Siahmargouei, A. (2013). Evaluation of allelopathic effects of saffron extract on germination and early growth of gipsophylla pilosaand rapistrum rugosum. Journal of Plant Environmental Physiology, 8 (2), 1-12. (In Persian with English abstract).
Babalola, O. O., Truter, J. C., & Van Wyk, J. H. (2021). Lethal and teratogenic impacts of imazapyr, diquat dibromide, and glufosinate ammonium herbicide formulations using frog embryo teratogenesis assay-xenopus (FETAX). Archives of Environmental Contamination & Toxicology, 80 (4), 708-716.
Bayat, H., Moghadam, A. N., & Aminifard, M. H. (2019). Allelopathic effects of narcissus (Narcissus tazetta L.) extract on germination, growth and physiological characteristics of couch grass (Agropyron repens) and wild oat (Avena fatua). Iranian Journal of Seed Sciences & Research, 6 (4), 457-469. (In Persian with English abstract). https://doi.org/10.22124/jms.2020.3925
Bhowmik, P., & Inderjit, C. (2003). Challenges and opportunities in implementing allelopathy for natural weed management. Crop Protection, 22, 661-671. https://doi.org/10.1016/S0261-2194(02)00242-9
Bonanomi, G., Sicurezza, M. G., Caporaso, S., Esposito, A., & Mazzoleni, S. (2006). Phytotoxicity dynamics of decaying plant materials. New Phytologist, 169 (3), 571-578. https://doi.org/10.1111/j.1469-8137.2005.01611.x
Dayan, F. E., Cantrell, C. L., & Duke, S. O. (2009). Natural products in crop protection. Bioorganic & Medicinal Chemistry, 17 (12), 4022-4034. https://doi.org/10.1016/j.bmc.2009.01.046
Dean, R., Van Kan, J. A., Pretorius, Z. A., Hammond‐Kosack, K. E., Di Pietro, A., Spanu, P. D., Rudd, J. J., Dickman, M., Kahmann, R., Ellis, J., & Foster, G. D. (2012). The Top 10 fungal pathogens in molecular plant pathology. Molecular Plant Pathology, 13 (4), 414-430. https://doi.org/10.1111/j.1364-3703.2011.00783.x
Farhoudi, R., & Lee, J. (2012). Evaluation of safflower (Carthamus tinctorius cv. Koseh) extract on germination and induction of α-amylase activity of wild mustard (Sinapis arvensis) seeds. Journal of Seed Science & Technology, 40 (1), 134-138. https://doi.org/10.15258/sst.2012.40.1.17
Feizi, H., Kamali, M., Jafari, L., & Moghaddam, P. R. (2013). Phytotoxicity and stimulatory impacts of nanosized and bulk titanium dioxide on fennel (Foeniculum vulgare Mill). Chemosphere, 91 (4), 506-511.
Feizi, H., Salari, A., & Gharari, F. (2018). Study of the allelopathic effect of saffron (Crocus sativus L.) organs’ aqueous extract on the seed germination and seedling growth of sugar beet and safflower at different concentrations. Journal of Medicinal & Spice Plants, 22 (4), 156–161.
Fekret, L., Khorramdel, S., & Siahmargoui, A. (2013). Evaluation of germination characteristics of two weed species, wild mustard and common mustard, under the influence of different concentrations of aqueous extract of aerial parts and saffron corms. Fifth Iranian Weed Science Conference, Tehran, Iran. (In persian)
Fernando, W. G., Miller, J. D., Seaman, W. L., Seifert, K., & Paulitz, T. C. (2000). Daily and seasonal dynamics of airborne spores of Fusarium graminearum and other Fusarium species sampled over wheat plots. Canadian Journal of Botany, 78 (4), 497-505. https://doi.org/10.1139/b00-027
Ghesmati, M., Aminifard, M. H., Abdollahi, M., & Shakeri, M. (2018). Allelopathic effects of saffron (Crocus sativus L.) on germination and seedling growth characteristics of wild barley (Hordeum spontaneum) and couch grass (Agropayron repense). Saffron Agronomy & Technology, 6 (1), 35-48. (In Persian with English abstract). https://doi.org/10.22048/jsat.2017.54263.1163
Ghorbany, M., Falahati Rastegar, M., & Jafarpour, B. (2010). The use of some herbal products to control cumin wilt disease with the agent Fusarium oxysporum f. sp Cumini. Journal of Iranian Plant Protection Research, 24 (1), 1-7. (In Persian with English abstract). https://doi.org/10.22067/jpp.v1389i24.3840
Hammami, H., Jahani, M., Shoshtary, M., & Noferesti, F. (2020). Evaluation of allelopathic and antifungal effects of different concentrations of aqueous leaves and corm extracts of saffron (Crocus sativus L.) on common purslane and Penicillium fungi. Journal of Saffron Research, 8 (2), 255-267. (In Persian with English abstract). https://doi.org/10.22077/jsr.2020.3196.1123
Jabran, K., Cheema, Z. A., Farooq, M., & Khaliq, A. (2007). Evaluation of effectiveness of some allelopathic crop water extracts against aphid (Aphis pomi). Proc International Workshop on Allelopathy—Current Trends and Future Aplications, 18–21 March 2007, University of Agriculture, Faisalabad, Pakistan, pp. 31
Jabran, K., Cheema, Z. A., Farooq, M., & Hussain, M. (2010a). Lower doses of pendimethalin mixed with allelopathic crop water extracts for weed management in canola (Brassica napus). International Journal of Agricultural & Biological, 12, 335–340.
Jabran, K., Farooq, M., Hussain, M., & Ali, M. (2010b). Wild oat (Avena fatua L.) and canary grass (Phalaris minor Ritz.) management through allelopathy. Journal of Plant Protection Research, 50, 32–35.
Jamil, M., Cheema, Z. A., Mushtaq, M. N., Farooq, M., & Cheema, M. A. (2009). Alternative control of wild oat and canary grass in wheat fields by allelopathic plant water extracts. Agronomy for Sustainable Development, 29, 475–482. https://doi.org/10.1051/agro/2009007
Kim, D. I., Park, J. D., Kim, S. G., Kuk, H., Jang, M. S., & Kim, S. S. (2005). Screening of some crude plant extracts for their acaricidal and insecticidal efficacies. Journal of Asia-Pacific Entomology, 8 (1), 93-100. https://doi.org/10.1016/S1226-8615(08)60076-X
Kohli, R. K., Singh, H. P., & Batish, D. R. (2001). Allelopathy in Agroecosystems. Food Products Press, USA, 447 pp.
Lin, B., Bozorgmagham, A., Ross, S. D., & Schmale III, D. G. (2013). Small fluctuations in the recovery of fusaria across consecutive sampling intervals with unmanned aircraft 100 m above ground level. Aerobiologia, 29 (1), 45-54. https://doi.org/10.1007/s10453-012-9261-3
Lux-Endrich, A., & Hock, B. (2004). Allelopathy, in Plant Toxicology, ed. by B Hock and EF Elstner. CRC Press, New York, NY
Macias, F. A., Molinillo, J. M., Varela, R. M., & Galindo, J. C. (2007). Allelopathy—a natural alternative for weed control. Pest Management Science: Formerly Pesticide Science, 63 (4), 327-348. https://doi.org/10.1002/ps.1342. PMID: 17348068.
Macias, F. A., Castellano, D., & Molinillo, J. M. (2000). Search for a standard phytotoxic bioassay for allelochemicals. Selection of standard target species. Journal of Agricultural & Food Chemistry, 48 (6), 2512-2521. https://doi.org/10.1021/jf9903051
Mahadevan, A. (1982). Biochemical aspects of plant disease resistance. In- Part I: Performed inhibitory substances. Today and Tomorrowos Printers and Pub. New Delhi pp 425-431.
Meyghani, F. (2003). Allelopathy from Concept to Application. Incident Beam Press, Iran. p. 41-107. (in Persian).
Mojab, M., & Mahmodi, M. (2012). Allelopathic effects of shoot and root water extracts of Hoary cress (Cardaria draba) on germination characteristic and seedling growth of Sorghum (Sorghum bicolor L.). Crop Production, 1 (4), 65-78. (In Persian with English Summary).
Mousavi, S. A., Feizi, H., Ahmadian, A., & Izadi Darbandi, E. (2023). Extracts obtained from organs of saffron (Crocus sativus) alter growth and seed germination of common lambsquarters (Chenopodium album) and barnyard grass (Echinochloa crus-galli). Plant Biosystems-An International Journal Dealing with all Aspects of Plant Biology, 157 (4), 844-850. https://doi.org/10.1080/11263504.2023.2204311
Musavi, S. A., Feizi, H., Ahmadian, A., & Izadi Darbandi, E. (2018). The allopathic effects of organs’ extracts of saffron plant on the growth and germination of Hordeum Murinum L. and Descurainia sophia L. Saffron Agronomy & Technology, 6 (2), 219-236. (In Persian with English abstract). https://doi.org/10.22048/jsat.2017.62688.1197. (In Persian with English Summary).
Muzell Trezzi, M., Vidal, R. A., Balbinot Junior, A. A., von Hertwig Bittencourt, H., & Da Silva Souza Filho, A. P. (2016). Allelopathy: driving mechanisms governing its activity in agriculture. Journal of Plant Interactions, 11 (1), 53-60. https://doi.org/10.1080/17429145.2016.1159342
Okungbowa, F. I., & Shittu, H. O. (2012). Fusarium wilts: An overview. Environmental Research Journal, 6 (2), 83-102.
Osmonali, B., Tokbergenova, A., Taukebayev, O., Zulpykharov, K., Salmurzauly, R., Smanov, Z., & Ussen, S. (2024). Weed species in plant communities as indicators of degradation of vegetation cover and fertile soil layer in desert regions. Biodiversitas Journal of Biological Diversity, 25 (12). https://doi.org/10.13057/biodiv/d251230
Passos, I. D., & Mironidou-Tzouveleki, M. (2016). Hallucinogenic plants in the Mediterranean countries. In V. R. Preedy (Ed.), Neuropathology of Drug Addictions and Substance Misuse (pp. 761–772). London, UK: Elsevier. https://doi.org/10.1016/B978-0-12-800212-4.00071-6
Rashed, M. H., Gherekhloo, J., & Rastgoo, M. (2009). Allelopathic effects of saffron (Crocus sativus L.) leaves and corms on seedling growth of redroot pigweed (Amaranthus retroflexus) and lambsquarter (Chenopodium album). Iranian Agricultural Research Journal, 7, 51-61. (In Persian with English abstract).
Rizvi, S. J. H., Haque, H., Singh, V. K., & Rizvi, V. A. (1992). Discipline called allelopathy. In Allelopathy: Basic and Applied Aspects, ed. By SJH Rizvi and V Rizvi. Chapman and Hall, London, UK, pp. 1–10.
Salari, A., Feizi, H., Gharari, F., & Bano, F. (2018). Influence of saffron (Crocus sativus L.) exteract organs on seed germination and seedling growth of cumin and tomato. Journal of Saffron Research, 6 (2), 219-232. (In Persian with English abstract). https://doi.org/10.22077/jsr.2018.1490.1059
Schmale III, D. G., Ross, S. D., Fetters, T. L., Tallapragada, P., Wood-Jones, A. K., & Dingus, B. (2012). Isolates of Fusarium graminearum collected 40–320 meters above ground level cause Fusarium head blight in wheat and produce trichothecene mycotoxins. Aerobiologia, 28 (1), 1-11. https://doi.org/10.1007/s10453-011-9206-2
Singh, R. K., & Dwivedi, R. S. (1987). Effect of oils on Sclerotiumn rolfsii causing root rot of barley. Indian Phytopathology, 40, 531-533.
Smith, S. N. (2007). An overview of ecological and habitat aspects in the genus Fusarium with special emphasis on the soil-borne pathogenic forms. Plant Pathology Bulletin, 16 (3), 97-120.
Taheri, K., Saboora, A., & Kiarostami, K. 2011. Allelopathic effects of saffron (Crocus sativus L.) on germination and seedling growth of four sorghum (Sorghum bicolar L.) cultivars. Iranian Journal of Biology, 24 (1), 89-103.
Tavakoli, Z., Jahani, M., & Hammami, H. (2023). Allelopathic and antifungal effects of saffron (Crocus sativus L.) aqueous extract on germination and seedling growth of London rocket (Sisymbrium irio) and Fusarium solani. Saffron Agronomy & Technology, 11 (3), 321-341. (In Persian with English abstract). https://doi.org/10.22048/jsat.2023.409228.1499
Tavakoli, Z., Jahani, M., & Hammami, H. (2024). Investigating the allelopathic and antifungal effects of saffron (Crocus sativus) leaves and corms water extract on the germination criteria and seedling growth of Whitetop (Cardaria draba) and Aspergilus (Aspergilus niger). Journal of Iranian Plant Protection Research, 38 (3), 241-258. (In Persian with English abstract). https://doi.org/10.22067/jpp.2024.86305.1174
Vesselova, P. V. (2017). Anthropophilous representatives of Brassicaceae Burnett of the Northern Turan (conspectus of species). Proceedings on Applied Botany, Genetics & Breeding, 178 (2), 96-112.
Vesselova, P., Makhmudova, K., Kudabayeva, G., Osmonali, B., & Mikhalev, V. (2022). Current growth conditions of Populus diversifolia Schrenk and Populus pruinosa Schrenk in the Syr-Darya Valley. OnLine Journal of Biological Sciences, 22 (4), 425-438. https://doi.org/10.3844/ojbsci. 2022.425.438.