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首页> 外文期刊>Physiological and Molecular Plant Pathology >Local and systemic resistance against fungal pathogens of tomato plants elicited by a compost derived from agricultural residues.
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Local and systemic resistance against fungal pathogens of tomato plants elicited by a compost derived from agricultural residues.

机译:由农业残留物产生的堆肥引起的番茄植物对真菌病原体的局部和全身抗性。

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A transgenic GUS-expressing strain of the root-infecting fungal pathogen Fusarium oxysporum f.sp. radicis-lycopersici was used to inoculate the roots of tomato plants (Lycopersicon esculentum Mill.) grown on a compost mix made from grape marc wastes and extracted olive press cake (GM-EPC). Plants exhibited an enhanced defensive capacity against the pathogen as compared with control plants grown on peat. Pathogen viability and growth in the potting mixes, as determined by GUS activity measurements and by colony forming unit enumeration, was not affected. Interestingly, the pathogen was not able to penetrate and colonize the root tissue. Moreover, the sterilized compost extract was also able to protect the plants. Induction of systemic resistance by the compost was assessed using the foliar pathogen Septoria lycopersici and by PR gene expression analysis carried out in leaves of tomato plants grown on the GM-EPC compost. Our data strongly indicate that induction of plant defence response is the main mechanism of biological control mediated by the GM-EPC compost..
机译:根部感染真菌病原体镰刀菌f.sp.的转基因表达GUS的菌株。 radicis-lycopersici用于接种在由葡萄渣和提取的橄榄压饼(GM-EPC)制成的堆肥混合物上生长的番茄植株(Lycopersicon esculentum Mill。)的根。与在泥炭上生长的对照植物相比,植物对病原体表现出增强的防御能力。通过GUS活性测量和菌落形成单位计数确定的盆栽混合物中的病原体活力和生长不受影响。有趣的是,病原体无法穿透和定殖根组织。此外,灭菌的堆肥提取物也能够保护植物。使用叶状病原体Septoria lycopersici并通过在GM-EPC堆肥上生长的番茄植株叶片中进行的PR基因表达分析,评估了堆肥对系统抗性的诱导作用。我们的数据强烈表明,诱导植物防御反应是由GM-EPC堆肥介导的生物控制的主要机制。

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