Sensitivity of Some Apple Varieties Grown in Regions of Al-Jabal Al-Akhdar to Apple Scab Disease
- Authors
-
-
Majuldeen F. Albarani
Department of Plant protection, Faculty of Agriculture, Omar Al- Mukhtar University, LibyaAuthor -
Nwara A. Mohamed
Department of Plant protection, Faculty of Agriculture, Omar Al- Mukhtar University, LibyaAuthor -
Mohammed A. Saeed
Department of Plant protection, Faculty of Agriculture, Omar Al- Mukhtar University, LibyaAuthor
-
- Keywords:
- Apple Scab disease, Venturia inaequalis, Al Jabal Al-Akhdar, Libya
- Abstract
-
The study aimed to know the extent of infection of apple varieties grown in Al-Jabal Al-Akhdar regions with apple scab disease during the seasons 2018-2019. The results showed the incidence of the disease was higher in August in Al-Bayda, Shahat, and Al-Marj, at a rate of 73, 72, and 61.7%, respectively, while it was higher in September in the regions of Al-Kuf and Qandula, at a rate of 79.6, and 73.2%, respectively. The study showed the highest infection rate was among the local variety, with a rate of 86% and a severity of 41%, followed by Starking variety, with 77% in 2018 season. As for 2019 season, the Local variety was the most infected, with a rate of 80% and a severity at 43%. The study showed the relationship between the percentage of the disease and its severity with the environmental conditions, results showed that the relationship between the incidence of disease and temperature in Al-Bayda was weak (r = 0.15), as well as between the severity of the disease and relative humidity (r = 0.081). We conclude that the cultivars in the study area are sensitive to the disease, and Golden Delicious cultivar is more susceptible to infection.
- Downloads
-
Download data is not yet available.
- References
-
Brown, S. K. (1992). Genetics of apple. In Plant breeding reviews vol 9 (pp. 333-366). John Wiley & Sons New York.
Biggs, A. R., Sundin, G. W., Rosenberger, D. A., Yoder, K. S., & Sutton, T. B. (2010). Relative susceptibility of selected apple cultivars to apple scab caused by Venturia inaequalis. Plant health progress, 11(1), 20.
Cooke, G. Winter, (1897). Venturia inaequalis. Hedwigia 36: 81.
Crassweller.r. (2018). Apple cultivars : scab resistance:https://extension.psu.edu/apple-cultivars-scab-resistance-selections.
Croxall, H. E., Gwynne, D. C., & Jenkins, J. E. E. (1952). The raped assessment of apple scab on leaves. Plant Pathology, 1(2), 39-41.
Doolotkeldieva, T., & Bobusheva, S. (2017). Scab disease caused by Venturia inaequalis on apple trees in Kyrgyzstan and biological agents to control this disease. Advances in Microbiology, 7(06), 450.
ELmsalaty, N. M. (2013). An Empirical Study Of Fruit Production In Libya, With A Focus On The Apple Crop In The El Gable El Kader Area Journal of Agricultural Economics and Social Sciences, 4(9), 1863-1885.
Geibel, M., Dehmer, K., & Forsline, P. (1999). Biological diversity in Malus sieversii populations from Central Asia. Eucarpia symposium on Fruit Breeding and Genetics 538,
Harris, S. A., Robinson, J. P., & Juniper, B. E. (2002). Genetic clues to the origin of the apple. TRENDS in Genetics, 18(8), 426-430.
Horsfall, J. G., & Heuberger, J. W. (1942). Measuring magnitude of a defoliation disease of tomatoes. Phytopathology, 32(2), 226-232.
James, C. (1971). A manual of assessment keys for plant diseases. American Phytopathological Society.
Khajuria, Y. P., Kaul, S., Wafai, B., & Dhar, M. K. (2014). Screening of apple germplasm of Kashmir Himalayas for scab resistance genes.
Korban, S. S., & Tartarini, S. (2009). Apple structural genomics. In Genetics and genomics of Rosaceae (pp. 85-119). Springer.
Lahlali, R., Moinina, A., Ezrari, S., Maclean, D., & Boulif, M. (2019). Apple Scab Disease Severity in the Sais Region of Morocco and its Sensitivity to Three Commercial Fungicides. Notulae Scientia Biologicae, 11(2), 249-257.
Menon, R. (1956). Studies on Venturiaceae on rosaceous plants ETH Zurich].
Papp, D., Singh, J., Gadoury, D., & Khan, A. (2020). New North American isolates of Venturia inaequalis can overcome apple scab resistance of Malus floribunda 821. Plant disease, 104(3), 649-655.
Radwan, M., & Hassan, M. (2019). Determination Of The Optimizing Fungicidal Applications For Controlling Apple Scab Disease In Egypt. Menoufia Journal of Plant Protection, 4(3), 69-82.
Singh, K. P., Singh, A., & Singh, U. P. (2015). Phenolic acid content of some apple cultivars with varying degrees of resistance to apple scab. International Journal of Fruit Science, 15(3), 267-280.
Spinelli, F., Rademacher, W., Sabatini, E., & Costa, G. (2010). Reduction of scab incidence (Venturia inaequalis) in apple with prohexadione-Ca and trinexapac-ethyl, two growth regulating acylcyclohexanediones. Crop Protection, 29(7), 691-698.
Suleiman, A. T. (2014). An Economic Study To Estimate The Function Carts Of Apple In The Area Of Green Moutin-Libya Journal of Agricultural Economics and Social Sciences, 5(3), 375-388.
Tomerlin, J., & Jones, A. (1982). Environmental-Effects On The Length Of Latent Period For Apple Scab. Phytopathology,
Vejl, P., Skupinová, S., Blazek, J., Sedlák, P., Bardová, M., Drahosova, H., Blazkova, H., & Milec, Z. (2003). PCR markers of apple resistance to scab (Venturia inaequalis CKE.) controlled by Vf gene in Czech apple breeding. Plant Soil and Environment, 49(9), 427-432.
Wilcox, W. (1993). Incidence and severity of crown and root rots on four apple rootstocks following exposure to Phytophthora species and waterlogging. Journal of the American Society for Horticultural Science, 118(1), 63-67.
Xu, X., Yang, J., Thakur, V., Roberts, A., & Barbara, D. J. (2008). Population variation of apple scab (Venturia inaequalis) isolates from Asia and Europe. Plant Disease, 92(2), 247-252.
Ziems, A.D. 2009. Cedar-apple and related rusts of apple and ornamentals. University of Nebraska – Lincoln Extension, Institute of Agriculture and Natural Resources. NebGuide. G1907. Available from: http://extensionpublications.unl.edu/ assets/pdf/g1907.pdf
- Downloads
- Published
- 2022-12-31
- Issue
- Vol. 37 No. 4 (2022)
- Section
- Articles
- License
-
Copyright (c) 2022 Majuldeen Albarani

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
Copyright of the articles Published by Almukhtar Journal of Science (MJSc) is retained by the author(s), who grant MJSc a license to publish the article. Authors also grant any third party the right to use the article freely as long as its integrity is maintained and its original authors and cite MJSc as the original publisher. Also, they accept the article remains published by the MJSc website (except in the occasion of a retraction of the article).
How to Cite
Most read articles by the same author(s)
- Ayhaab A. Zatout, Nwara A. Mohamed , Mohamed A. Saeed , Record of Sordaria fimicola Causing Dieback on Juniperus phoenicea in Al-Jabal Al-Akhdar – Libya , Al-Mukhtar Journal of Sciences: Vol. 38 No. 2 (2023)
- Nwara A. Mohamed, Majduldeen F. Albarani , Mohammed A. Saeed, Isolation and Identification of the Pathogen of Apple Scab disease Jabal Al Akhdar Area, Libya , Al-Mukhtar Journal of Sciences: Vol. 38 No. 2 (2023)
- Nwara A. Mohamed, Hajir H. Alalm, Effect of Pea Seed Solarization on Seed-Borne Fungi and its Vitality , Al-Mukhtar Journal of Sciences: Vol. 37 No. 1 (2022)
- Nwara A. Mohamed, Mohammed A. Saeed, M.G. El-Samman, Issa A. Abugharsa, Biological Control of Early Blight Disease on Tomato Plant on Al-Gabal Al-Akhdar District , Al-Mukhtar Journal of Sciences: Vol. 8 No. 1 (2001)
- M. Salem Abu Hadma, Issa. A. Abugharsa, Mohammed A. Saeed, Study effect of Fusarium wilt fungus (Fusarium oxysporum f. sp. lycopersici) on biochemical changes on two tomato cultivars , Al-Mukhtar Journal of Sciences: Vol. 17 No. 1 (2008)
Similar Articles
- Mhi eldin Mohammed AlKhboli, Ashraf Mohamed Mostafa, Saif al - Islam Mohammed Ahmed, Study of Some Morphometric Variables Using of Digital Elevation Models (DEM) of Wadi Habboun - Libya , Al-Mukhtar Journal of Sciences: Vol. 33 No. 4 (2018)
- Ammar A Ammar, The Influence of the Lineament Geological Features on the Hydrologic Flow Direction of Wadi Al Kuf Catchment Area, Cyrenaica, Northeastern Libya , Al-Mukhtar Journal of Sciences: Vol. 34 No. 3 (2019)
- Taib. Farag Hesean, Competitive effects of wild Radish Raphanus raphanistrum.L on The growth and yield of wheat Triticum Durum. In Jabal Akhdaar (Libya) , Al-Mukhtar Journal of Sciences: Vol. 9 No. 1 (2002)
- Hameda A. y. Faraj, Anees M. Mahmood, Variation of the specific gravity and fiber length of Juniperus phoenicea L. tree grown in AL-Jabal AL- Akhdar Region , Al-Mukhtar Journal of Sciences: Vol. 34 No. 3 (2019)
- Nahad Walli Al- khalidi, Cystic echinococcosis (Hydatidosis) in sheep , goats, cattle and camels in Shahat Abattoir Al-Jabal Al- Akhdar - Libya. , Al-Mukhtar Journal of Sciences: Vol. 5 No. 1 (1998)
- Ezzudin S. M. Ali, Hesaien M. Mustafa, Khansa A. Omar Blkasem, Morphological variation of Libyan carob (Ceratonia siliqua L.) , Al-Mukhtar Journal of Sciences: Vol. 34 No. 2 (2019)
- Nwara A. Mohamed, Mohammed A. Saeed, M.G. El-Samman, Issa A. Abugharsa, Isolation and bio-estimation of toxin from different isolates of Alternaria solani the causal of early blight disease of tomato in Al-Gabal Al-Akther district , Al-Mukhtar Journal of Sciences: Vol. 9 No. 1 (2002)
- Moussa Masoud, Monitoring land use /land cover using multi-temporal Landsat images in Al-Jabal Al-Akhdar area in Libya between 1984 and 2003 , Al-Mukhtar Journal of Sciences: Vol. 31 No. 1 (2016)
- Murad M. Aburas, Mohammed S. Yousef, Asama S. Alferjani, Land degradation at the southern slopes of Al-Jabal al Akhdar, Libya , Al-Mukhtar Journal of Sciences: Vol. 30 No. 1 (2015)
- I Milad, Chemical composition and fermentation pattern of forest trees leaves from Al-Jabal Al-Akhdar region, Libya , Al-Mukhtar Journal of Sciences: Vol. 14 No. 1 (2007)
You may also start an advanced similarity search for this article.











