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Comparison of root and foliar applications of potassium silicate in potentiating post-infection defences of melon against powdery mildew

机译:硅酸钾根部和叶面施肥增强甜瓜抗白粉病感染后防御能力的比较

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The application of silicon to the roots or leaves reduces the severity of powdery mildew (Podosphaera xanthii) in melon but the latter treatment is less effective. This study compared key biochemical defence responses of melon triggered by P. xanthii after root or foliar treatment with potassium silicate (PS). Treatments consisted of pathogen-inoculated or mock-inoculated plants supplied with PS via roots or foliarly, as well as a non-treated control. The activity of defence enzymes and the concentration of phenolic compounds, lignin and malondialdehyde were determined from leaf samples at different time points after inoculation. Pathogen-inoculated plants irrigated with PS showed both an accumulation of silicon and primed defence responses in leaves that were not observed in pathogen-inoculated plants either sprayed with PS or not treated. These responses included the anticipated activity of peroxidase and accumulation of soluble phenols, the activation of chitinase and repression of catalase, and the stronger activation of superoxide dismutase, peroxidase and beta-1,3-glucanase. Moreover, the lignin concentration increased in response to inoculation, whereas the malondialdehyde concentration decreased. For the foliar treatment, however, only an increase in lignin deposition was observed compared with the control plants. The results show that silicon strongly plays an active role in modulating the defence responses of melon against P. xanthii when supplied to the roots as opposed to the foliage.
机译:在根或叶上施用硅可降低甜瓜中白粉病的严重程度,但后者的处理效果较差。本研究比较了用硅酸钾(PS)对根或叶面处理后由黄腐病菌引发的甜瓜的关键生化防御反应。处理包括通过根部或叶面提供PS的病原体接种或模拟接种的植物,以及未经处理的对照。在接种后的不同时间点从叶片样品中测定防御酶的活性以及酚类化合物,木质素和丙二醛的浓度。用PS灌溉的病原体接种植物在叶片中既显示了硅的积累,又显示了初次防御反应,而在用PS喷洒或未处理的病原体接种植物中均未观察到。这些反应包括预期的过氧化物酶活性和可溶性酚的积累,几丁质酶的活化和过氧化氢酶的抑制,以及超氧化物歧化酶,过氧化物酶和β-1,3-葡聚糖酶的较强活化。此外,木质素浓度响应接种而增加,而丙二醛浓度降低。然而,对于叶面处理,与对照植物相比,仅观察到木质素沉积的增加。结果表明,硅被提供给根而不是叶子时,在调节瓜对黄腐病的防御反应中起着积极的作用。

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