Admas, A. M., & Kebede, L. (2024). Effects of Fusarium Diseases on Forest Nursery and Its
Controlling Mechanisms. In Fusarium-Recent Studies. IntechOpen.
Abedi-Tizaki, M., Zafari, D., and Sadeghi, J. (2016). First report of Fusarium solani causing stem
rot of Dracaena sanderiana in Iran. Journal of Plant Protection Research 56(1): 100–103.
https://doi.org/10.1515/jppr-2016-0015
Abdolahi, A., Hassani, A., Ghosta, Y., Bernousi, I., and Meshkatalsadat, M. H. (2010). Essential
oils as control agents of postharvest Alternaria and Penicillium rots on tomato fruits. Journal of Food
Safety 30(2): 341–352. https://doi.org/10.1111/j.1745-4565.2009.00205.x
Agrios, G. N. (2005). Plant Pathology (5th ed.). Academic Press.
Anonymous. (2011). Identification of Fusarium solani as the main causal agent of root and crown
rot of Dodonaea viscosa in Khuzestan province, Iran. Iranian Journal of Plant Protection Science
42(2): 85–93. https://plantprotection.scu.ac.ir/article_10431.html
Anonymous. (2012). Morphological and molecular identification of Fusarium species associated
with carnation crown and root rot in Mahallat, Iran. Iranian Journal of Plant Pathology 48(1): 13–22.
https://doaj.org/article/d39f4bdec86846a0ae4717112cb96aad
Aoki, T., Ward, T. J., Kistler, H. C., and O’Donnell, K. (2012). Systematics, phylogeny and
trichothecene mycotoxin potential of Fusarium head blight cereal pathogens. JSM Mycotoxins 62(2):
91–102.
Bakkali, F., Averbeck, S., Averbeck, D., and Idaomar, M. (2008). Biological effects of essential
oils – A review. Food and Chemical Toxicology 46(2): 446–475.
https://doi.org/10.1016/j.fct.2007.09.106
Balouiri, M., Sadiki, M., and Ibnsouda, S. K. (2016). Methods for in vitro evaluating antimicrobial
activity: A review. Journal of Pharmaceutical Analysis 6(2): 71–79.
Cowan, M. M. (1999). Plant products as antimicrobial agents. Clinical Microbiology Reviews 12(4):
564–582.
Davari, M., and Ezazi, R. (2022). Mycelial inhibitory effects of antagonistic fungi, plant essential
oils and propolis against five phytopathogenic Fusarium species. Archives of Microbiology 204(8): 480.
Farjon, A. (2010). A handbook of the world’s conifers. Brill.
Felsenstein J. (1985). Confidence limits on phylogenies: An approach using the bootstrap.
Evolution 39:783-791.
Hadian, J., Fakhr, T. S., Ghorbanpour, M., Salehi, P., and Haji, E. B. (2006). A phytochemical
study of Cymbopogon parkeri Stapf essential oil, and its biological activity against some
phytopathogenic fungi. Iranian Journal of Agricultural Sciences 37: 425–443.
Hyldgaard, M., Mygind, T., and Meyer, R. L. (2012). Essential oils in food preservation: Mode
of action, synergies, and interactions with food matrix components. Frontiers in Microbiology 3: 12.
https://doi.org/10.3389/fmicb.2012.00012
Irkin, R., and Korukluoglu, M. (2007). Control of Aspergillus niger with garlic, onion and leek
extracts. African Journal of Biotechnology 6(4): 384–387.
Khaleil, M. M., Alnoman, M. M., Elrazik, E. S. A., Zagloul, H., and Khalil, A. M. A. (2021).
Essential oil of Foeniculum vulgare Mill. as a green fungicide and defense-inducing agent against
fusarium root rot disease in Vicia faba L. Biology 10(8): 696.
Khalil, M., Serale, N., Diab, F., Baldini, F., Portincasa, P., Lupidi, G., and Vergani, L. (2022).
Beneficial effects of carvacrol on in vitro models of metabolically-associated liver steatosis and
endothelial dysfunction: A role for fatty acids in interfering with carvacrol binding to serum albumin.
Current Medicinal Chemistry 29(30): 5113–5129.
Konstantinidou-Doltsinis, S., Markellou, E., Kasselaki, A. M., Fanouraki, M. N.,
Koumaki, C. M., Schmitt, A., & Malathrakis, N. E. (2006). Efficacy of Milsana®, a
formulated plant extract from Reynoutria sachalinensis, against powdery mildew of tomato
(Leveillula taurica). Biocontrol, 51(3), 375-392.
Lotfi, P., Yaghmaei, P., and Ebrahim-Habibi, A. (2015). Cymene and metformin treatment effect
on biochemical parameters of male NMRI mice fed with high fat diet. Journal of Diabetes & Metabolic
Disorders 14: 1–5.
Mazarei, Z., and Rafati, H. (2019). Nanoemulsification of Satureja khuzestanica essential oil and
pure carvacrol; comparison of physicochemical properties and antimicrobial activity against food
pathogens. LWT 100: 328–334.
Mohammadpour, V. R., Galavi, M., Ramroudi, M., and Fakheri, B. A. (2015). Effects of
drought stress and biofertilizers inoculation on growth, essential oil yield and constituents of thyme
(Thymus vulgaris L.).
Moretti, A., Pascale, M., and Logrieco, A. F. (2019). Mycotoxin risks under a climate change
scenario in Europe. Trends in Food Science & Technology 84: 38–40.
Moslem, M. A., and El-Kholie, E. M. (2009). Effect of neem (Azadirachta indica A. Juss) seeds
and leaves extract on some plant pathogenic fungi. Pakistan Journal of Biological Sciences 12(14):
1045.
Nelson, J. D., Mindrup, E. A., Chung, C. K., Lindstrom, R. L., and Doughman, D. J. (1983).
Fungal contamination in organ culture. Archives of Ophthalmology 101(2): 280–283.
Ocamb, C. M., and Juzwik, J. (1995). Fusarium species associated with rhizosphere soil and
diseased roots of eastern white pine seedlings and associated nursery soil. Canadian Journal of Plant
Pathology 17(3): 325–330.
Prakash, B., Kujur, A., Yadav, A., Kumar, A., Singh, P. P., and Dubey, N. K. (2018).
Nanoencapsulation: An efficient technology to boost the antimicrobial potential of plant essential oils
in food system. Food Control, 89, 1–11. https://doi.org/10.1016/j.foodcont.2018.01.018
Pawar, V. C., and Thaker, V. S. (2006). In vitro efficacy of 75 essential oils against Aspergillus
niger. Mycoses 49(4): 316–324. https://doi.org/10.1111/j.1439-0507.2006.01241.x
Pitaroki, D., Tzakou, O., Loukis, A., and Harvala, C. (2003). Volatile metabolites from Salvia
fruticosa as antifungal agents in soil-borne pathogens. Journal of Agricultural and Food Chemistry 51:
3249–[pages not clear in source].
Plotto, A., Roberts, D., and Roberts, R. G. (2003). Evaluation of plant essential oils as natural
postharvest disease control of tomato. Acta Horticulturae 628: 737–745.
Purkait, S., Bhattacharya, A., Bag, A., and Chattopadhyay, R. R. (2020). Synergistic
antibacterial, antifungal and antioxidant efficacy of cinnamon and clove essential oils in combination.
Archives of Microbiology 202: 1439–1448.
Rahman, S., Biswas, S. K., Barman, N. C., and Ferdous, T. (2016). Plant extract as selective
pesticide for integrated pest management. Biotechnological Research 2(1): 6–10.
Ranjbar, H., Farzaneh, H., Hadian, J., Mirjalili, M. H., and Sharifi, R. (2008). Antifungal
effects of some plant essential oils on postharvest diseases in strawberry fruit. Journal of Research and
Reconstruction in Agriculture and Horticulture 81: 54–60. (in Persian with English summary).
Rasooli, I., Shayegh, S., and Astaneh, S. D. A. (2009). The effect of Mentha spicata and
Eucalyptus camaldulensis essential oils on dental biofilm. International Journal of Dental Hygiene
7(3): 196–203.
Reddy, P., Liu, L., Adhikari, D., Jagarlamudi, K., Rajareddy, S., Shen, Y., … and Liu, K.
(2008). Oocyte-specific deletion of Pten causes premature activation of the primordial follicle pool.
Science 319(5863): 611–613.
.Saitou N. and Nei M. (1987). The neighbor-joining method: A new method for reconstructing
phylogenetic trees. Molecular Biology and Evolution 4:406-425.
Sharifi-Rad, J., Sureda, A., Tenore, G. C., Daglia, M., Sharifi-Rad, M., Valussi, M. (2020).
Biological activities of essential oils: From plant chemoecology to traditional healing systems.
Molecules, 25(21), 4877. https://doi.org/10.3390/molecules25214877
Singh, A., Kumar, J., Sharma, V. K., Singh, D. K., Kumari, P., Nishad, J. H., … and Kharwar,
R. N. (2021). Phytochemical analysis and antimicrobial activity of an endophytic Fusarium
proliferatum (ACQR8), isolated from a folk medicinal plant Cissus quadrangularis L. South African
Journal of Botany 140: 87–94.
Siripornvisal, S., Rungprom, W., and Sawatdikarn, S. (2009). Antifungal activity of essential
oils derived from some medicinal plants against grey mould (Botrytis cinerea). Asian Journal of Food
and Agro-Industry 2: S229–S233.
Tatsadjieu, N. L., Dongmo, P. J., Ngassoum, M. B., Etoa, F. X., and Mbofung, C. M. F. (2009).
Investigations on the essential oil of Lippia rugosa from Cameroon for its potential use as antifungal
agent against Aspergillus flavus Link ex. Fries. Food Control 20: 161–166.
Tamura K., Nei M., and Kumar S. (2004). Prospects for inferring very large phylogenies by
using the neighbor-joining method. Proceedings of the National Academy of
Sciences (USA) 101:11030-11035.
Tamura K., Stecher G., and Kumar S. (2021). MEGA 11: Molecular Evolutionary Genetics
Analysis Version 11. Molecular Biology and Evolution
https://doi.org/10.1093/molbev/msab120.
Wu, Q., Chen, Y., Dou, X., Liao, D., Li, K., An, C., … and Dong, Z. (2024). Microbial fertilizers
improve soil quality and crop yield in coastal saline soils by regulating soil bacterial and fungal
community structure. Science of The Total Environment 949: 175127.
Zhao, P., Cao, L., Wang, C., Zheng, L., Li, Y., Cao, C., and Huang, Q. (2022). Metabolic
pathways reveal the effect of fungicide-loaded metal-organic frameworks on the growth of wheat
seedlings. Chemosphere 307: 135702.