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FOOD SCIENCE & TECHNOLOGY

Antifungal and anti-cellulases activity of Limoniastrum feei extracts to promote Bayoud disease treatment using bioautography

, , & | (Reviewing editor)
Article: 1726083 | Received 29 Nov 2019, Accepted 30 Jan 2020, Published online: 11 Feb 2020

References

  • Balouiri, M., Sadiki, M., & Ibnsouda, S. K. (2016). Methods for in vitro evaluating antimicrobial activity: A review. Journal of Pharmaceutical Analysis, 6(2), 71–12. doi:10.1016/j.jpha.2015.11.005
  • Belboukhari, N., & Cheriti, A. (2005). Antimicrobial activity of aerial part crude extracts from Limoniastrum feei. Asian Journal of Plant Sciences, 4(5), 496–498. doi:10.3923/ajps.2005.496.498
  • Belboukhari, N., & Cheriti, A. (2007). Flavonoids of Limoniastrum feei. Research Journal of Phytochemistry, 1(2), 74–78. doi:10.3923/rjphyto.2007.74.78
  • Belboukhari, N., & Cheriti, A. (2009). Analysis and isolation of saponins from Limoniastrum feei by LC-UV. Chemistry of Natural Compounds, 45(5), 756. doi:10.1007/s10600-009-9455-2
  • Benabdelkader, M., Malek, A., & Draoui, B. (2011). Perspective du pompage éolien appliqué à l’irrigation du palmier dattier dans la région de Béchar. Revue des Energies Renouvelables, 14(3), 381–395.
  • Boulenouar, N., Marouf, A., & Cheriti, A. (2009). Effect of some poisonous plants extracts on Fusarium oxysporum f. sp. albedinis. Journal of Biological Sciences, 9(6), 594–600. doi:10.3923/jbs.2009.594.600
  • Boulenouar, N., Marouf, A., & Cheriti, A. (2011). Antifungal activity and phytochemical screening of extracts from Phoenix dactylifera L. cultivars. Natural Product Research, 25(20), 1999–2002. doi:10.1080/14786419.2010.536765
  • Boulenouar, N., Marouf, A., & Cheriti, A. (2014). Direct bioautography for antifungal. Measurement “case of bayoud disease. PhytoChem & BioSub Journal, 8, 33–37.
  • Boulenouar, N., Marouf, A., Cheriti, A., & Belboukhari, N. (2012). Medicinal plants extracts as source of antifungal agents against fusarium oxysporum f. sp. albedinis. Journal of Agricultural Science and Technology, 14, 659–669.
  • Choma, I., & Jesionek, W. (2015). TLC-direct bioautography as a high throughput method for detection of antimicrobials in plants. Chromatography, 2(2), 225–238. doi:10.3390/chromatography2020225
  • Dewanjee, S., Gangopadhyay, M., Bhattacharya, N., Khanra, R., & Dua, T. K. (2015). Bioautography and its scope in the field of natural product chemistry. Journal of Pharmaceutical Analysis, 5(2), 75–84. doi:10.1016/j.jpha.2014.06.002
  • El Haci, I. A., Mazari, W., Atik-Bekkara, F., Hassani, F., & Gherib, M. (2017). Assessment of the cytotoxic activity and the reduction power of limoniastrum feei girard (Batt.): A medicinal plant from Algerian Sahara. Oriental Pharmacy and Experimental Medicine, 17(2), 143–150. doi:10.1007/s13596-017-0270-1
  • El Hadrami, A., El Idrissi-Tourane, A., El Hassni, M., Daayf, F., & El Hadrami, I. (2005). Toxin-based in-vitro selection and its potential application to date palm for resistance to the bayoud Fusarium wilt. Comptes Rendus Biologies, 328(8), 732–744. doi:10.1016/j.crvi.2005.05.007
  • El Hassni, M., El Hadrami, A., Daayf, F., Chérif, M., Barka, E. A., & El Hadrami, I. (2007). Biological control of bayoud disease in date palm: Selection of microorganisms inhibiting the causal agent and inducing defense reactions. Environmental and Experimental Botany, 59(2), 224–234. doi:10.1016/j.envexpbot.2005.12.008
  • El Modafar, C., Tantaoui, A., & El Boustani, E. (2000). Effet de L’acide Caféoylshikimique des Racines du Palmier Dattier sur L’activité et la Production des. Phytopathologische Zeitschrift, 148(2), 101–108. doi:10.1046/j.1439-0434.2000.00472.x
  • Freeman, S., & Maymon, M. (2000). Reliable detection of the fungal pathogenfusarium oxysporum f. sp. albedinis, causal agent of bayoud disease of date palm, using molecular techniques. Phytoparasitica, 28(4), 341–348. doi:10.1007/BF02981829
  • Kasana, R. C., Salwan, R., Dhar, H., Dutt, S., & Gulati, A. (2008). A rapid and easy method for the detection of microbial cellulases on agar plates using Gram’s iodine. Current Microbiology, 57(5), 503–507. doi:10.1007/s00284-008-9276-8
  • Keffous, F., Belboukhari, N., Sekkoum, K., Djeradi, H., Cheriti, A., & Aboul-Enein, H. Y. (2016). Determination of the antioxidant activity of Limoniastrum feei aqueous extract by chemical and electrochemical methods. Cogent Chemistry, 2(1), 1186141. doi:10.1080/23312009.2016.1186141
  • Kettout, T. A., & Rahmania, F. (2010). Identification par CG-SM de l’acide phénylacétique produit par Fusarium oxysporum f. sp. albedinis, agent causal du bayoud. Comptes Rendus Biologies, 333(11–12), 808–813. doi:10.1016/j.crvi.2010.10.001
  • Munari, C. (2006). Investigation phytochimique de plantes alpines: Etude d’espèces du genre Oxytropis (Fabaceae) et isolement de composés antifongiques et antiradicalaires à partir d’Oxytropis fetida (Vill.) DC., Potentilla grandiflora L. (Rosaceae) et Vaccinium uliginosum ssp. University of Geneva. Retrieved from https://nbn-resolving.org/urn:nbn:ch:unige-33548
  • Pascual, M., Carretero, M., Slowing, K., & Villar, A. (2002). Simplified screening by TLC of plant drugs. Pharmaceutical Biology, 40(2), 139–143. doi:10.1076/phbi.40.2.139.5849
  • Rahmani, S., Belboukhari, N., & Cheriti, A. (2014). Phytochemical investigation of bioactive extract from endemic medicinal plant Limoniastrum feei (Girard) Batt (Plumbaginaceae). Asian Journal of Chemistry, 26(2), 365. doi:10.14233/ajchem.2014.15395
  • Suleiman, M. M., McGaw, L., Naidoo, V., & Eloff, J. (2010). Detection of antimicrobial compounds by bioautography of different extracts of leaves of selected South African tree species. African Journal of Traditional, Complementary and Alternative Medicines, 7, 1. doi:10.4314/ajtcam.v7i1.57269