Identifying the Cause of Chocolate Spot (Botrytis fabae) Disease on Faba Bean Leaves in Al-Marj and Al-Wasitah regions in Al-Jabel Al-Akhdar
- Authors
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Nwara Ali Mohamed
Department of Plant protection, Faculty of Agriculture, Omar Al- Mukhtar University, Al-Bayda, LibyaAuthor -
Noura Mohammed Bouazzoum
Department of Plant protection, Faculty of Agriculture, Omar Al- Mukhtar University, Al-Bayda, LibyaAuthor
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- Keywords:
- Chocolate Spot Disease, Fabae Bean Leaves, Botrytis fabae
- Abstract
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This study aimed to identify the fungus that causes chocolate spot disease on bean leaves. Bean leaves were collected randomly from fields in Al-Marj and Al-Wasitah regions during February and March 2017 in late flowering and fruiting stages, showing symptoms of disease 50 plants/field. The infection rate and severity of the samples were estimated. The pathogen of chocolate spot disease was isolated from naturally infected leaves. After testing its pathogenicity, the pure fungus was grown on solid food media that included both Zapex (Cz) and potato dextrose agar (PDA) and environment malt agar (MA) and incubated at 22 Celsius.The results of the study showed that the bean leaves grown in the fields of both Al-Marj and Al-Wasitah were infected with chocolate spot disease, as its symptoms appeared in the form of small reddish-brown spots on the leaves with an average diameter of 0.52 cm. The severity of the disease was recorded by calculating the infection rate, and it reached 87.6% in Al-Marj fields, while the severity of infection was higher in Al-Wasila fields, reaching 49.7%. The study also confirmed the ability of the pure fungus isolated from bean leaves to infect and record the stain on the leaves of the Egyptian bean plant 48 hours after injection. It became clear through the measurements that the pathogen responsible for the disease is the fungus Botrytis fabae, characterized by dark divided mycelium, its thickness (average of 11.75 micrometers), and its production of conidia bacteria in clusters at the ends of a branched-chain, which are single-celled, round, light brown in color, average length 14.5 micrometers and width 10.8 micrometers. Also, the Zapex environment gave the highest growth of mycelium, germs, and microsclerotia compared to other nutritional media.
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- References
-
Ahmed, S., Muhammad, I., Kumar, S., Malhotra, R., & Maalouf, F. (2011). Impact of climate change and variability on diseases of food legumes in the dry areas. Food security and climate change in dry areas, 157.
Ateş, A. Ç., Fİdan, H., Yilmaz, N., & Konuksal, A. (2017). Botrytis fabae and Bean common mosaic virus (BCMV) are the most common diseases of Faba bean (Vicia faba L.) in TRNC. Akademik Ziraat Dergisi, 6(2), 115-122.
Barnett, H., & Hunter, B. B. (1998). Illustrated genera of imperfect fungi. Minnesota. The American Phytopathological Society, 200.
Bernier, C., Hanounik, S., Hussein, M., & Mohamed, H. (1993). Field manual of common faba bean diseases in the Nile Valley. Aleppo: International Center for Agricultural Research in the Dry Areas (ICARDA). Information Bulletin(3).
Cubero, J. (2011). The faba bean: a historic perspective. Grain legumes, 56, 5-7.
Elad, Y., Williamson, B., Tudzynski, P., & Delen, N. (2004). Botrytis: biology, pathology and control. Springer.
El-Ammari, A. (2017). Plant Fungal Diseases of Faba bean in Benghazi [Version 1; awaiting peer review]. ContROL, 1, 15.
Ellis, M., & Waller, J. (1974). Botrytis fabae. CMI descriptions of pathogenic fungi and bacteria(432).
Elwakil, M., Abass, M., El-Metwally, M., & Mohamed, M. S. (2016). Green chemistry for inducing resistance against chocolate spot disease of faba bean. Journal of Environmental Science and Technology, 9(1), 170-187.
FOA (2018). faostat@fao.org
Gossen, B., Lan, Z., Harrison, L., Holley, J., & Smith, S. (1997). Survey of blossom blight of alfalfa on the Canadian Prairies in 1996. Can. Plant Dis. Surv, 77, 91-92.
Harrison, J. (1988). The biology of Botrytis spp. on Vicia beans and chocolate spot disease‐a review. Plant Pathology, 37(2), 168-201.
Honounik, S., & Bisri, M. (1991). Status of diseases of faba bean in the Mediterranean region and their control. Options Mediterraneennes. Serie A: Seminaires Mediterraneens (CIHEAM).
Horsfall, J. G., & Heuberger, J. W. (1942). Measuring magnitude of a defoliation disease of tomatoes. Phytopathology, 32(2), 226-232.
ICARDA (2005). Faba bean pathology progress report 2003/04. Food Legume Improvement Program, ICARDA, Aleppo., Syria.
James, C. (1971). A manual of assessment keys for plant diseases, Can. Dep. Agric. Publ(1458).
Jarvis, W., Coley-Smith, J., & Verhoeff, K. (1980). The biology of Botrytis. Academic Press.
Malone, J. P., Muskett, A. E., & Sheppard, J. W. (1997). Seed-borne fungi: description of 77 fungus species.
Noorka, I. R., & El-Bramawy, M. (2011). Inheritance assessment of chocolate spot and rust disease tolerance in mature faba bean (Vicia faba L.) plants. Pakistan Journal of Botany, 43(2), 1389-1402.
Pezet, R., & Pont, V. (1990). Ultrastructural observations of pterostilbene fungitoxicity in dormant conidia of Botrytis cinerea Pers. Journal of phytopathology, 129(1), 19-30.
Sahile, S., Fininsa, C., Sakhula, P., & Ahmed, S. (2009). Evaluation of pathogenic isolates in Ethiopia for the control of chocolate spot in faba bean. African Crop Science Journal, 17(4).
Terefe, H., Fininsa, C., Sahile, S., & Fantaye, K. (2015). Effect of temperature on growth and sporulation of Botrytis fabae, and resistance reactions of faba bean against the pathogen.
Yetayew, H. T. (2017). Evaluation of fresh culture media for mycelial growth and conidial production of Botrytis fabae, causing chocolate spot on faba bean (Vicia faba L.). African Journal of Microbiology Research, 11(31), 1235-1242.
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- 2021-06-30
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- Vol. 36 No. 2 (2021)
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Copyright (c) 2021 Nwara Ali Mohamed, Noura Mohammed Bouazzoum

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