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首页> 外文期刊>Plant Pathology Journal >Systemic Acquired Resistance Induced in Cucumber Plants Against Powdery Mildew Disease by Pre-inoculation with Tobacco Necrosis Virus
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Systemic Acquired Resistance Induced in Cucumber Plants Against Powdery Mildew Disease by Pre-inoculation with Tobacco Necrosis Virus

机译:预先接种烟草坏死病毒可诱导黄瓜植株抗白粉病。

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摘要

Systemic Acquired Resistance (SAR) in cucumber plants against powdery mildew disease, caused by Sphaerotheca fuliginea (Schlechtend Fr.) Pollacci, was induced by localized infection in cucumber cotyledons with Tobacco Necrosis Virus (TNV). Inoculationof the two cotyledon leaves significantly reduced powdery mildew severity on cucumber true leaves similar to the effect of fungicide. TNV-local lesions developed plants still protected against powdery mildew for 16 days. The level of protection was higher in the upper true leaves when compared with the bottom ones. Antifungal protein was extracted and partially purified by DEAE-cellulose column chromatography from cucumber TNV-inoculated plants only. Bioassay detection for antifungal activity indicatedthat, 0.6 M NaCl fraction had the highest activity. SDS-PAGE of partially purified 0.6 M NaCl fraction protein indicated the presence of a single protein band with a molecular weight of about 30 kDa. This protein was extracted from upper TNV-uninoculated true leaves of plants inoculated on the cotyledon leaves, which acquired systemic resistance against powdery mildew challenge inoculation. In vitro study of the antifungal activity of these proteins showed that only 0.6 M NaCl fraction has direct antifungal activity towards S. fuliginea conidial spores. The induced systemic resistance was not accompanied with the activity of (3-1, 3 glucanase.
机译:黄瓜植株对白粉病的系统获得性抗性(SAR)是由烟草坏死病毒(TNV)在黄瓜子叶中局部感染引起的,由白粉球菌(Schlechtend Fr.)Pollacci引起。接种两片子叶可显着降低黄瓜真叶上的白粉病严重程度,类似于杀真菌剂的作用。 TNV局部病变发达的植物在16天的时间内仍不受白粉病的侵害。上部真叶的保护水平高于下部真叶。提取抗真菌蛋白,并通过DEAE-纤维素柱色谱法仅从接种黄瓜TNV的植物中部分纯化。抗真菌活性的生物测定检测表明,0.6 M NaCl馏分具有最高活性。部分纯化的0.6 M NaCl馏分蛋白的SDS-PAGE表明存在单个分子量约为30 kDa的蛋白质条带。该蛋白质是从接种在子叶上的未接种TNV的真叶的真叶中提取的,该叶获得了对白粉病接种的系统抗性。这些蛋白质的抗真菌活性的体外研究表明,只有0.6 M NaCl馏分具有对S. fuliginea孢子孢子孢子的直接抗真菌活性。诱导的全身抗性不伴有(3-1,3葡聚糖酶)的活性。

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