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Arab Journal of Biotechnology. 2008; 11 (1): 71-84
in English | IMEMR | ID: emr-85760

ABSTRACT

Transgenic canola [Brassica napus.L] plants expressing the bacterial catalase katE in the chloroplasts were obtained by the Agrobacterium-mediated transformation method. Resistance and susceptibility of the transgenic canola plants were evaluated against the airborne pathogenic fungi, Peronospora parasitica causing downy mildew and Erysiphe polygon causing powdery mildew under artificial infection in the greenhouse. The bioassays of the transgenic plants demonstrated that the growth of both fungi and the development of disease incidence were significantly inhibited in the leaves of the transgenic canola plants compared to controls. Chemical analyses of the transgenic plants revealed constitutive expression of the enzymes catalase, peroxidase and polyphenoloxidase as well as higher levels of free polyamines i. e. putrescine, spermidine and spermine compared with the control plants. Together, these data indicate an enhanced resistance of the transgenic canola plants expressing the bacterial catalase to the downy mildew and powdery mildew pathogens


Subject(s)
Plants, Genetically Modified , Catalase , Fungi , Biological Assay , Microscopy, Electron , Seeds , Polyamines , Peronospora
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