1. Qahtan AA, Al-Atar AA, Abdel-Salam EM, El-Sheikh MA, Gaafar AR, Faisal M. Genetic diversity and structure analysis of a worldwide collection of Faba bean (Vicia faba) genotypes using ISSR markers. Intl J Agric Biol. 2021;25(3):683-91. [
DOI:10.17957/IJAB/15.1717]
2. Martineau-Côté D, Achouri A, Karboune S, L'Hocine L. Faba bean: an untapped source of quality plant proteins and bioactives. Nutrients. 2022;14(8):1541. [
DOI:10.3390/nu14081541] [
PMID] [
PMCID]
3. Bogale GA, Mengesha M, Hadgu G. Characterization of local climate and its impact on faba bean (Vicia faba L.) yield in Central Ethiopia. Adv Meteorol. 2022;2022(1):8759596. [
DOI:10.1155/2022/8759596]
4. Duchene O, Vian JF, Celette F. Intercropping with legume for agroecological cropping systems: Complementarity and facilitation processes and the importance of soil microorganisms. A review. Agric Ecosyst Environ. 2017;240:148-61. [
DOI:10.1016/j.agee.2017.02.019]
5. Aliyi T, Birke B, Hailu A. Survey for Faba Bean (Vicia fabae L.) Fungal Diseases in Ethiopia. Results Plant Prot Res. 2021;49.
6. Yu H, Yang F, Hu C, Yang X, Zheng A, Wang Y, et al. Production status and research advancement on root rot disease of faba bean (Vicia faba L.) in China. Front Plant Sci. 2023;14:1165658. [
DOI:10.3389/fpls.2023.1165658] [
PMID] [
PMCID]
7. Zhang Y, Li L, Guo YP, Shao Y. Impact of different planting densities on root rot and crop growth of faba bean in intercropping systems. Anhui Agric Sci Bullet. 2018;24(18):60-1.
8. Sawei A, Azzu Y, Duzan A, Abughania A. Isolation and identification of fungal diseases of broad bean (Vicia faba L.) in Ain-Zara region, Tripoli, Libya. AlQalam J Med Appl Sci. 2024:156-9.
9. Abd Al-Nabi ZJ, Kasim AA. Isolation and identification of fungi from submerged plants debris in aquatic habitats in Misan province. Periódico Tchê Química. 2020;17(36):58. [
DOI:10.52571/PTQ.v17.n36.2020.74_Periodico36_pgs_58_71.pdf]
10. Rubiales D, Khazaei H. Advances in disease and pest resistance in faba bean. Theor Appl Genet. 2022;135(11):3735-56. [
DOI:10.1007/s00122-021-04022-7] [
PMID]
11. Abdelaziz AM, Hashem AH, El-Sayyad GS, El-Wakil DA, Selim S, Alkhalifah DH, et al. Biocontrol of soil borne diseases by plant growth promoting rhizobacteria. Trop Plant Pathol. 2023;48(2):105-27. [
DOI:10.1007/s40858-022-00544-7]
12. Coque JJ, Álvarez-Pérez JM, Cobos R, González-García S, Ibáñez AM, Galán AD, et al. Advances in the control of phytopathogenic fungi that infect crops through their root system. Adv Appl Microbiol. 2020;111:123-70. [
DOI:10.1016/bs.aambs.2020.01.003] [
PMID]
13. Mahmoud AF, Abd El-Fatah BE. Genetic diversity studies and identification of molecular and biochemical markers associated with fusarium wilt resistance in cultivated faba bean (Vicia faba). Plant Pathol J. 2020;36(1):11. [
DOI:10.5423/PPJ.OA.04.2019.0119] [
PMID] [
PMCID]
14. Billström M. Fungal identification using nanopore sequencing of the Internal Transcribed Spacer region [Internet]. 2024. Available from: [
https://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-530695]
15. El-Dawy EG, Gherbawy YA, Hussein MA. Morphological, molecular characterization, plant pathogenicity and biocontrol of Cladosporium complex groups associated with faba beans. Sci Rep. 2021;11(1):14183. [
DOI:10.1038/s41598-021-93123-w] [
PMID] [
PMCID]
16. Mumpuni A, Amurwanto A, Wahyono DJ. Molecular identification of coprophilous microfungi from Banyumas District, Central Java, Indonesia. Biodivers J Biol Divers. 2021;22(3):1550-7. [
DOI:10.13057/biodiv/d220361]
17. Animasaun DA, Nnamdi CD, Ipinmoroti OI, Oyedeji S, Olonya EA, Krishnamurthy R, et al. Molecular identification and phylogenetic analysis of fungi contaminants associated with in vitro cultured banana based on ITS region sequence. HAYATI J Biosci. 2022;29(3):288-300. [
DOI:10.4308/hjb.29.3.288-300]
18. Raja HA, Miller AN, Pearce CJ, Oberlies NH. Fungal identification using molecular tools: a primer for the natural products research community. J Nat Prod. 2017;80(3):756-70. [
DOI:10.1021/acs.jnatprod.6b01085] [
PMID] [
PMCID]
19. Ajmera S, Rao VK, Ranipadmini V, Merugu R, Girisham S. Isolation and Molecular Characterization of Thermophilic Coprophilous Fungus Malbranchea cinnamomea GSMBKU from Goat Dung. J Pure Appl Microbiol. 2019;13(4):2227-33. [
DOI:10.22207/JPAM.13.4.36]
20. Long J, Wu W, Sun S, Shao Y, Duan C, Guo Y, et al. Berkeleyomyces rouxiae is a causal agent of root rot complex on faba bean (Vicia faba L.). Front Plant Sci. 2022;13:989517. [
DOI:10.3389/fpls.2022.989517] [
PMID] [
PMCID]
21. D'Andreano S, Cuscó A, Francino O. Rapid and real-time identification of fungi up to species level with long amplicon nanopore sequencing from clinical samples. Biol Methods Protoc. 2020;6(1):bpaa026. [
DOI:10.1093/biomethods/bpaa026] [
PMID] [
PMCID]
22. Bhattacharyya P, Ghosh S, Mandi SS, Kumaria S, Tandon P. Genetic variability and association of AFLP markers with some important biochemical traits in Dendrobium thyrsiflorum, a threatened medicinal orchid. S Afr J Bot. 2017;109:214-22. [
DOI:10.1016/j.sajb.2016.12.012]
23. Tamura K, Stecher G, Kumar S. MEGA11: molecular evolutionary genetics analysis version 11. Mol Biol Evol. 2021;38(7):3022-7. [
DOI:10.1093/molbev/msab120] [
PMID] [
PMCID]
24. Ali MB, Haridy AG, Mahmoud AF. Evaluation of faba bean genotypes for yield and resistance to Fusarium root rot under greenhouse and field conditions. Int J Biosci. 2019;14(2):374-85.
25. Afshari N, Hemmati R. First report of the occurrence and pathogenicity of Clonostachys rosea on faba bean. Australas Plant Pathol. 2017;46:231-4. [
DOI:10.1007/s13313-017-0482-3]
26. Yones AM, Kayim M. Molecular characterization of Trichoderma spp. with biocontrol ability against faba bean chocolate spot (Botrytis cinerea Pers. ex Fr.). Plant Cell Biotechnol Mol Biol. 2021;22(51&52):52-63.
27. Manawasinghe IS, Phillips AJ, Xu J, Balasuriya A, Hyde KD, Stępień Ł, et al. Defining a species in fungal plant pathology: beyond the species level. Fungal Divers. 2021;109(1):267-82. [
DOI:10.1007/s13225-021-00481-x]
28. Doveri F. Description of Chaetomium aureum, Corynascus sepedonium and Coniochaeta hansenii newly recorded from Italy and a key to coprophilous Chaetomiaceae and Coniochaetaceae. Ascomycete.org Joural. 2016;8(1):7-24.
29. Atashi Khalilabad A, Fotouhifar K. Introduction of new taxa of Dothideomycetes and Sordariomycetes associated with trees for funga of Iran. Rostaniha. 2021;22(1):104-19.
30. Rezaee S, Gharanjik S, Mojerlou S. Identification of Fusarium solani f. sp. cucurbitae races using morphological and molecular approaches. J Crop Prot. 2018;7(2):161-70.
31. Attar B, Kitson JJ, Cuff JP, Howard B, Lages A, Gomez D, et al. Identifying the Fusarium species involved in foot rot disease of faba beans in the UK using a combined molecular and microbiological approach. bioRxiv. 2024:2024-10. [
DOI:10.1101/2024.10.25.620281]
32. Wang J, Li C, Song P, Qiu R, Song R, Li X, et al. Molecular and biological characterization of the first mymonavirus identified in Fusarium oxysporum. Front Microbiol. 2022;13:870204. [
DOI:10.3389/fmicb.2022.870204] [
PMID] [
PMCID]
33. Nirmaladevi D, Venkataramana M, Srivastava RK, Uppalapati SR, Gupta VK, Yli-Mattila T, et al. Molecular phylogeny, pathogenicity and toxigenicity of Fusarium oxysporum f. sp. lycopersici. Sci Rep. 2016;6(1):21367. [
DOI:10.1038/srep21367] [
PMID] [
PMCID]
34. Mnati MA, Dewan MM, AL-Abedy AN, Altaie A. Morphological and molecular identificationof Fusarium spp. and Macrophomina phaseolina isolated from cowpea plants (Vigna unguiculata). Int J Agric Stat Sci. 2021;17(2):719-26.
35. Khan IH, Javaid A. Mucor fragilis causing rot of Seychelles pole bean in Pakistan. Australas Plant Pathol. 2022;51(3):359-62. [
DOI:10.1007/s13313-022-00859-8]
36. Almiman B. Effects of temperature and water activity on 25 de novo strains of pathogenic plant fungi in Al-Baha and Baljurashi cities in Saudi Arabia. J Umm Al-Qura Univ Appl Sci. 2024;10(2):301-12. [
DOI:10.1007/s43994-023-00105-x]
37. Walther G, Wagner L, Kurzai O. Updates on the taxonomy of Mucorales with an emphasis on clinically important taxa. J Fungi. 2019;5(4):106. [
DOI:10.3390/jof5040106] [
PMID] [
PMCID]
38. Rennberger G, Keinath AP. Stachybotriaceae on cucurbits demystified: Genetic diversity and pathogenicity of ink spot pathogens. Plant Dis. 2020;104(8):2242-51. [
DOI:10.1094/PDIS-01-20-0166-RE] [
PMID]
39. Chen Y, Ran SF, Dai DQ, Wang Y, Hyde KD, Wu YM, et al. Mycosphere essays 2. Myrothecium. Mycosphere. 2016;7(1):64-80. [
DOI:10.5943/mycosphere/7/1/7]
40. Wang HY, Li X, Dong CB, Zhang YW, Chen WH, Liang JD, et al. Two new species of Sordariomycetes (Chaetomiaceae and Nectriaceae) from China. MycoKeys. 2024;102:301. [
DOI:10.3897/mycokeys.102.114480] [
PMID] [
PMCID]
41. Alhussani AH, AL-Hakeem AM, Al-tememe ZA, Mahdi HF. A new species of Ovatospora pseudomollicella and Chaetomium madrasense Isolated from red wood (Sequoia sempervirens) and Teak wood (Tectona grandis) in Iraq. Teikyo Med J. 2022;45(2):6213-7.
42. Wang XW, Houbraken J, Groenewald JZ, Meijer M, Andersen B, Nielsen KF, et al. Diversity and taxonomy of Chaetomium and chaetomium-like fungi from indoor environments. Stud Mycol. 2016;84:145-224. [
DOI:10.1016/j.simyco.2016.11.005] [
PMID] [
PMCID]
43. Al-Fadhal FA, Al-Abedy AN, Alkhafije DA. Isolation and molecular identification of Rhizoctonia solani and Fusarium solani isolated from cucumber (Cucumis sativus L.) and their control feasibility by Pseudomonas fluorescens and Bacillus subtilis. Egypt J Biol Pest Control. 2019;29:1-11. [
DOI:10.1186/s41938-019-0145-5]
44. Dakhil AH, Alshimaysawe UA. Morphological and molecular identification of the root and stem base rot pathogen on broad bean crop and control it using some Trichoderma biological agents. Kufa J Agric Sci. 2023;15(2):43-56. [
DOI:10.36077/kjas/2023/v15i2.10323]
45. Rezaee S, Gharanjik S, Mojerlou S. Identification of Fusarium solani f. sp. cucurbitae races using morphological and molecular approaches. J Crop Prot. 2018;7(2):161-70.
46. Bruce M, Stratford E, Armstrong-Cho C, Banniza S. A multiplex PCR assay for the detection of six foliar fungal pathogens of faba bean. Can J Plant Pathol. 2025:1-9. [
DOI:10.1080/07060661.2024.2448672]
47. Ali MB, Haridy AG, Mahmoud AF. Evaluation of faba bean genotypes for yield and resistance to Fusarium root rot under greenhouse and field conditions. Int J Biosci. 2019;14(2):374-85.
48. Mukuma C. Morphological and molecular identification and characterization of dry bean fungal root rot pathogens in Zambia [dissertation on the Internet]. University of Nebraska-Lincoln. 2016. [cited 2025 Mar 30]. Available from: [
https://core.ac.uk/download/pdf/188104599.pdf]