مجلة أجسر – مجلة عربية محكمة في مجال العلوم – زورو موقعنا

الوقت

10:51 صباحًا

تاريخ النشر

19, فبراير 2020

الكاتب

وحدة الدراسات والبحوث

منظمة المجتمع العلمي العربي

قائمة الأوراق البحثية العربية المنشورة منذ عام 2015 مرتبة حسب عدد الاقتباسات حول ما يلي: نيماتودا تعقد الجذور (Meloidogyne spp)، نيماتودا تقرح الجذور (Pratylenchus spp)، مرض عفن الجذور (Phytophthora spp)، مرض عفن الجذور الريزوكتوني (Rhizoctonia spp)، مرض الذبول الفيرتيسلومي (Verticillium dahliae).

  • المصدر: Scopus
  • نوع الأوراق:Article & Review 

 

  1. Genetic structure of Verticillium dahliae isolates infecting olive trees in Tunisia using AFLP, pathogenicity and PCR markers
    – Gharbi, Y., Triki, M.A., Trabelsi, R., Fendri, I., Daayf, F., Gdoura, R.
    – (2015) Plant Pathology, 64 (4), pp. 871-879.
     
  2. Seaweed polysaccharides as bio-elicitors of natural defenses in olive trees against verticillium wilt of olive
    – Ben Salah, I., Aghrouss, S., Douira, A., Aissam, S., El Alaoui-Talibi, Z., Filali-Maltouf, A., El Modafar, C.
    – (2018) Journal of Plant Interactions, 13 (1), pp. 248-255.
     
  3. Antifungal activity of volatile compounds-producing Pseudomonas P2 strain against Rhizoctonia solani
    – Elkahoui, S., Djébali, N., Yaich, N., Azaiez, S., Hammami, M., Essid, R., Limam, F.
    – (2015) World journal of microbiology & biotechnology, 31 (1), pp. 175-185.
     
  4. Comparative expression of genes controlling cell wall-degrading enzymes in Verticillium dahliae isolates from olive, potato and sunflower
    – Gharbi, Y., Alkher, H., Triki, M.A., Barkallah, M., Emna, B., Trabelsi, R., Fendri, I., Gdoura, R., Daayf, F.
    – (2015) Physiological and Molecular Plant Pathology, 91, pp. 56-65.
     
  5. Differential biochemical and physiological responses of two olive cultivars differing by their susceptibility to the hemibiotrophic pathogen Verticillium dahliae
    – Gharbi, Y., Barkallah, M., Bouazizi, E., Gdoura, R., Triki, M.A.
    – (2017) Physiological and Molecular Plant Pathology, 97, pp. 30-39.
     
  6. Differential fungal colonization and physiological defense responses of new olive cultivars infected by the necrotrophic fungus Verticillium dahliae
    – Gharbi, Y., Barkallah, M., Bouazizi, E., Cheffi, M., Gdoura, R., Triki, M.A.
    – (2016) Acta Physiologiae Plantarum, 38 (10), art. no. 242, .
     
  7. A new root-knot nematode Meloidogyne spartelensis n. sp. (Nematoda: Meloidogynidae) in Northern Morocco
    – Ali, N., Tavoillot, J., Mateille, T., Chapuis, E., Besnard, G., El Bakkali, A., Cantalapiedra-Navarrete, C., Liébanas, G., Castillo, P., Palomares-Rius, J.E.
    – (2015) European Journal of Plant Pathology, 143 (1), pp. 25-42.
     
  8. Trend to explain the distribution of root-knot nematodes Meloidogyne spp. associated with olive trees in Morocco
    – Ali, N., Tavoillot, J., Chapuis, E., Mateille, T.
    – (2016) Agriculture, Ecosystems and Environment, 225, pp. 22-32.
     
  9. How anthropogenic changes may affect soil-borne parasite diversity? Plant-parasitic nematode communities associated with olive trees in Morocco as a case study
    – Ali, N., Tavoillot, J., Besnard, G., Khadari, B., Dmowska, E., Winiszewska, G., Fossati—– Gaschignard, O., Ater, M., Aït Hamza, M., El Mousadik, A., El Oualkadi, A., Moukhli, A., – –Essalouh, L., El Bakkali, A., Chapuis, E., Mateille, T.
    – (2017) BMC Ecology, 17 (1), art. no. 4, .
     
  10. Lignification, phenols accumulation, induction of PR proteins and antioxidant-related enzymes are key factors in the resistance of Olea europaea to Verticillium wilt of olive
    – Gharbi, Y., Barkallah, M., Bouazizi, E., Hibar, K., Gdoura, R., Triki, M.A.
    – (2017) Acta Physiologiae Plantarum, 39 (2), art. no. 43, .
     
  11. Plant-parasitic nematodes associated with olive tree in southern Morocco
    – Hamza, M.A., Ferji, Z., Ali, N., Tavoillot, J., Chapuis, E., El Oualkadi, A., Moukhli, A., Khadari, B., Boubaker, H., Lakhtar, H., Roussos, S., Mateille, T., El Mousadik, A.
    – (2015) International Journal of Agriculture and Biology, 17 (4), pp. 719-726.
     
  12. Usage of the heterologous expression of the antimicrobial gene afp from Aspergillus giganteus for increasing fungal resistance in olive
    – Narvaez, I., Khayreddine, T., Pliego, C., Cerezo, S., Jiménez-Díaz, R.M., Trapero-Casas, J.L., López-Herrera, C., Arjona-Girona, I., Martín, C., Mercado, J.A., Pliego-Alfaro, F.
    – (2018) Frontiers in Plant Science, 9, art. no. 680, .
     
  13. Diversity of root-knot nematodes in Moroccan olive nurseries and orchards: Does Meloidogyne javanica disperse according to invasion processes?
    – Aït Hamza, M., Ali, N., Tavoillot, J., Fossati-Gaschignard, O., Boubaker, H., El Mousadik, A., Mateille, T.
    – (2017) BMC Ecology, 17 (1), art. no. 41, .
     
  14. Diversity of nematophagous fungi in Moroccan olive nurseries: Highlighting prey-predator interactions and efficient strains against root-knot nematodes
    – Aït Hamza, M., Lakhtar, H., Tazi, H., Moukhli, A., Fossati-Gaschignard, O., Miché, L., Roussos, S., Ferji, Z., El Mousadik, A., Mateille, T., Boubaker, H.
    – (2017) Biological Control, 114, pp. 14-23.
     
  15. Olea europaea l. Root endophyte bacillus velezensis oee1 counteracts oomycete and fungal harmful pathogens and harbours a large repertoire of secreted and volatile metabolites and beneficial functional genes
    – Cheffi, M., Bouket, A.C., Alenezi, F.N., Luptakova, L., Belka, M., Vallat, A., Rateb, M.E., Tounsi, S., Triki, M.A., Belbahri, L.
    – (2019) Microorganisms, 7 (9), art. no. 314, .
     
  16. Diversity of plant-parasitic nematode communities associated with olive nurseries in Morocco: Origin and environmental impacts
    – Aït Hamza, M., Moukhli, A., Ferji, Z., Fossati-Gaschignard, O., Tavoillot, J., Ali, N., Boubaker, H., El Mousadik, A., Mateille, T.
    – (2018) Applied Soil Ecology, 124, pp. 7-16.
     
  17. Response of olive tree (Olea europaea L.cv. Chemlali) to infection with soilborne fungi
    – Trabelsi, R., Sellami, H., Gharbi, Y., Cheffi, M., Chaari, A., Baucher, M., El Jaziri, M., Triki, M.A., Gdoura, R.
    – (2017) Journal of Plant Diseases and Protection, 124 (2), pp. 153-162.
     
  18. Soil inoculum density of Verticillium dahliae and Verticillium wilt of olive in Lebanon
    – Habib, W., Choueiri, E., Baroudy, F., Tabet, D., Gerges, E., Saab, C., Nigro, F.
    – (2017) Annals of Applied Biology, 170 (2), pp. 150-159.
     
  19. Genetic diversity of Verticillium dahliae populations from olive and potato in Lebanon
    – Baroudy, F., Putman, A.I., Habib, W., Puri, K.D., Subbarao, K.V., Nigro, F.
    – (2019) Plant Disease, 103 (4), pp. 656-667.
     
  20. Development and validation of a new real-time assay for the quantification of Verticillium dahliae in the soil: a comparison with conventional soil plating
    – Gharbi, Y., Barkallah, M., Bouazizi, E., Cheffi, M., Krid, S., Triki, M.A., Gdoura, R.
    – (2016) Mycological Progress, 15 (6), art. no. 54, .
     
  21. New appearance of Phytophthora palmivora as a pathogen of the olive trees in Sidi Kacem region (Morocco)
    – Msairi, S., Chliyeh, M., Selmaoui, K., Mouria, A., Ouazzani Touhami, A., Benkirane, R., Douira, A.
    – (2016) Annual Research and Review in Biology, 11 (5), art. no. ARRB.31427, .
     
  22. The endophytic strain Bacillus velezensis OEE1: An efficient biocontrol agent against Verticillium wilt of olive and a potential plant growth promoting bacteria
    – Cheffi Azabou, M., Gharbi, Y., Medhioub, I., Ennouri, K., Barham, H., Tounsi, S., Triki, M.A.
    – (2020) Biological Control, 142, art. no. 104168, .
     
  23. Genome-wide analysis of NBS-encoding resistance genes in the Mediterranean olive tree (Olea europaea subsp. europaea var. europaea): insights into their molecular diversity, evolution and function
    – Bettaieb, I., Bouktila, D.
    – (2020) Tree Genetics and Genomes, 16 (1), art. no. 23, .
     
  24. Effect of arbuscular mycorrhizal fungi on verticillium wilt development of olive trees caused by Verticillium dahliae
    – Boutaj, H., Meddich, A., Wahbi, S., Moukhli, A., El Alaoui-Talibi, Z., Douira, A., Filali-Maltouf, A., El Modafar, C.
    – (2019) Research Journal of Biotechnology, 14 (8), pp. 79-88.
     
  25. Screening of the high-rhizosphere competent limoniastrum monopetalum’ culturable endophyte microbiota allows the recovery of multifaceted and versatile biocontrol agents
    – Slama, H.B., Triki, M.A., Bouket, A.C., Mefteh, F.B., Alenezi, F.N., Luptakova, L., Cherif-Silini, H., Vallat, A., Oszako, T., Gharsallah, N., Belbahri, L.
    – (2019) Microorganisms, 7 (8), art. no. 249, .
     
  26. Effect of biofumigation by Calligonum polygonoides, dry olive leaves, and ash of olive leaves on chilli pepper growth and recovery of Rhizoctonia solani
    – Al-Hammouri, A.A., Al-Kofahi, S.D., Ibbini, J.H., Abusmier, S.A., Sanogo, S.
    – (2018) Acta Agriculturae Slovenica, 111 (1), pp. 41-49.
     
  27. The effect of acetylsalicylic acid on conidia germination of some pathogenic fungi, and evaluation of its effectiveness against tomato leaf mold disease caused by Cladosporium fulvum Cooke under greenhouse conditions
    – Al-Matroud, L., Al-Baghdadi, R., Arafeih, S.A.-M., Al-Ghazawi, A., Al-Chaabi, S., Abu-Fadel, T.
    – (2017) Arab Journal of Plant Protection, 35 (1), pp. 16-26.
     
  28. Plant parasitic nematodes associated with olive in Algeria
    – Belahmar, M., Elkfel, F., Mihoub, M., Abdewahab, S., Mateille, M., Sellami, S.
    – (2015) Acta Phytopathologica et Entomologica Hungarica, 50 (2), pp. 187-193

 


 

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الموقع قائم على مبدأ الترخيص العام للجمهور في حرية النسخ والنقل والاقتباس من جميع المحتويات والنشرات والكتب والمقالات، دون مقابل وبشكل مجاني أبدي، شريطة أن يكون العمل المستفيد من النسخ أو النقل أو الاقتباس متاحا بترخيص مجاني وبذات شروط هذا الموقع، وأن تتم الاشارة إلى منشورنا وفق الأصول العلمية، ذكرا للكاتب والعنوان والموقع والتاريخ.

هذا والموقع يساعد المؤلف على نشر إنتاجه بلا مقابل من منفعة معنوية أو مادية، شريطة أن يكون العمل متوفراً للنسخ أو النقل أو الاقتباس للجمهور بشكل مجاني. ثم إن التكاليف التي يتكبدها الموقع والعاملون عليه تأتي من مساعدات ومعونات يقبلها الموقع ما لم تكن مرتبطة بأي شرط مقابل تلك المعونات.

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