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首页> 外文期刊>Journal of general plant pathology >Foliar spray of a cell wall protein fraction from the biocontrol agent Pythium oligandrum induces defence-related genes and increases resistance against Cercospora leaf spot in sugar beet
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Foliar spray of a cell wall protein fraction from the biocontrol agent Pythium oligandrum induces defence-related genes and increases resistance against Cercospora leaf spot in sugar beet

机译:叶面喷洒生物控制剂腐烂腐霉产生的细胞壁蛋白质部分可诱导与防御相关的基因,并提高对甜菜中尾孢叶斑病的抗性

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摘要

After a cell wall protein fraction (CWP) of Pythium oligandrum was sprayed on sugar beet leaves, we screened leaves for induced expression of defence-related genes and for resistance against Cercospora leaf spot. In a western blot analysis, the CWP was primarily retained on the surface of leaves without degradation for at least 48 h after spraying. In northern blot analyses, four defence-related genes (o-1, 3-glucanase, acidic class III chitinase, 5-enol-pyruvylshikimate-phosphate synthase and oxalate oxidase-like germin) were expressed more rapidly in CWP-treated leaves compared to control leaves treated with distilled water (DW). When CWP was applied to a suspension of cultured cells of sugar beet, an oxidative burst was observed that did not occur after the DW treatment. In growth chamber trials after inoculation with Cercospora beticola, the severity of Cercospora leaf spot was significantly reduced in CWP-treated plants compared to the DW-treated controls. In a field experiment, CWP treatment was also effective against the disease. CWP did not reduce growth rate of the pathogen in plate tests. The results together suggest that the CWP from P. oligandrum can be retained on the leaf surface and induce expression of disease resistance genes, thereby reducing Cercospora leaf spot on sugar beet.
机译:在甜菜叶上喷洒低聚腐霉菌的细胞壁蛋白部分(CWP)之后,我们筛选了诱导表达的防御相关基因和对Cercospora叶斑的抗性。在蛋白质印迹分析中,喷洒后,CWP主要保留在叶片表面至少48小时而没有降解。在Northern印迹分析中,与CWP处理的叶片相比,与CWP处理的叶片相比,四个防御相关基因(o-1、3-葡聚糖酶,酸性III类几丁质酶,5-烯醇-丙酮酸shi草酸酯-磷酸合酶和草酸氧化酶样胚芽蛋白)的表达更快。对照叶用蒸馏水(DW)处理。当将CWP应用于甜菜培养细胞的悬浮液时,观察到DW处理后未发生的氧化爆发。在接种锥状孢子虫后的生长室试验中,与DW处理的对照相比,CWP处理的植物中Cercospora叶斑的严重性明显降低。在野外实验中,CWP治疗对这种疾病也有效。在平板试验中,CWP不会降低病原体的生长速度。结果共同表明,来自寡头假单胞菌的CWP可以保留在叶表面并诱导抗病基因的表达,从而减少甜菜上的Cercospora叶斑。

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