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dc.creatorAydi Ben Abdallah R., Stedel C., Garagounis C., Nefzi A., Jabnoun-Khiareddine H., Papadopoulou K.K., Daami-Remadi M.en
dc.date.accessioned2023-01-31T07:34:52Z
dc.date.available2023-01-31T07:34:52Z
dc.date.issued2017
dc.identifier10.1016/j.cropro.2017.05.008
dc.identifier.issn02612194
dc.identifier.urihttp://hdl.handle.net/11615/71018
dc.description.abstractFive endophytic Bacillus spp. isolated from surface-sterilized stem tissues of wild Solanaceous species, i.e. Datura metel, Solanum nigrum and S. elaeagnifolium, were screened for their in vitro and in vivo antagonistic potential against Fusarium oxysporum f. sp. lycopersici (FOL). Pathogen sporulation was totally suppressed by these five strains and its mycelial growth was significantly decreased using bacterial whole-cell suspensions and cell-free culture filtrates. Extracellular metabolites remained effective after heating at 50–100 °C with a decline in activity with treatments involving temperatures at 100 °C, proteinase K addition, and pH adjustments to 2 or 12. Chitinase and lipopeptide antibiotic genes were detected using PCR amplification. The five strains produced salicylic acid when grown in succinate medium, with the greatest production exhibited by B. subtilis str. SV41. In planta application of Bacillus spp. cell-free culture filtrates and whole-cell suspensions significantly decreased Fusarium wilt severity by 87–100% and enhanced tomato growth by 38–80%, compared to FOL-inoculated and untreated controls. The two Bacillus strains exhibiting the strongest decrease in Fusarium wilt severity (B. subtilis str. SV41 and B. amyloliquefaciens subsp. plantarum str. SV65) were further evaluated for their ability to induce systemic resistance (ISR) in FOL-infected and uninfected tomato plants. Using quantitative RT-PCR, the expression of the acidic PR-1 and PR-3 genes as well as the lipoxygenase (LOXD) gene were significantly induced in plants treated with B. amyloliquefaciens subsp. plantarum str. SV65. This effect was observed in both FOL-inoculated and uninoculated plants. © 2017en
dc.language.isoenen
dc.sourceCrop Protectionen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85019078566&doi=10.1016%2fj.cropro.2017.05.008&partnerID=40&md5=58aaa65505784ed14b76b284b8887d3f
dc.subjectantibioticsen
dc.subjectbacteriumen
dc.subjectbiological controlen
dc.subjectcrop planten
dc.subjectdisease controlen
dc.subjectdisease resistanceen
dc.subjectdisease severityen
dc.subjectenzymeen
dc.subjectfungal diseaseen
dc.subjectfungusen
dc.subjectgeneen
dc.subjectgrowthen
dc.subjectpeptideen
dc.subjectplant defenseen
dc.subjectwilten
dc.subjectBacillus (bacterium)en
dc.subjectBacteria (microorganisms)en
dc.subjectDatura metelen
dc.subjectFusariumen
dc.subjectFusarium oxysporum f. sp. lycopersicien
dc.subjectLycopersicon esculentumen
dc.subjectSolanum nigrumen
dc.subjectElsevier Ltden
dc.titleInvolvement of lipopeptide antibiotics and chitinase genes and induction of host defense in suppression of Fusarium wilt by endophytic Bacillus spp. in tomatoen
dc.typejournalArticleen


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