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The first line of plant defence responses against pathogens can be induced by the bacterial flg22 and can be dependent on various external and internal factors. Here, we firstly studied the effects of daytime and ethylene (ET) using Never ripe (Nr) mutants in the local and systemic defence responses of intact tomato plants after flg22 treatments. Flg22 was applied in the afternoon and at night and rapid reactions were detected. The production of hydrogen peroxide and nitric oxide was induced by flg22 locally, while superoxide was induced systemically, in wild type plants in the light period, but all remained lower at night and in Nr leaves. Flg22 elevated, locally, the ET, jasmonic acid (JA) and salicylic acid (SA) levels in the light period; these levels did not change significantly at night. Expression of Pathogenesis-related 1 (PR1), Ethylene response factor 1 (ERF1) and Defensin (DEF) showed also daytime- and ET-dependent changes. Enhanced ERF1 and DEF expression and stomatal closure were also observable in systemic leaves of wild type plants in the light. These data demonstrate that early biotic signalling in flg22-treated leaves and distal ones is an ET-dependent process and it is also determined by the time of day and inhibited in the early night phase.
580, reactive oxygen species, night, 550, salicylic acid, jasmonic acid, 01.06. Biológiai tudományok, Ethylenes, flagellin, Article, Circadian Rhythm, Plant Leaves, Solanum lycopersicum, Gene Expression Regulation, Plant, ethylene, QK10 Plant physiology / növényélettan, dark, Plant Diseases, Plant Proteins, Signal Transduction
580, reactive oxygen species, night, 550, salicylic acid, jasmonic acid, 01.06. Biológiai tudományok, Ethylenes, flagellin, Article, Circadian Rhythm, Plant Leaves, Solanum lycopersicum, Gene Expression Regulation, Plant, ethylene, QK10 Plant physiology / növényélettan, dark, Plant Diseases, Plant Proteins, Signal Transduction
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