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3?¢????Acetonyl?¢????3?¢????hydroxyoxindole: a new inducer of systemic acquired resistance in plants

机译:3 ¢乙酰基¢ 33羟基羟吲哚:植物体内获得性抗性的新诱导剂

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Systemic acquired resistance (SAR) is an inducible defence mechanism which plays a central role in protecting plants from microbial pathogen attack. Guided by bioassays, a new chemical inducer of SAR was isolated from the extracts of Strobilanthes cusia and identified to be 3?¢????acetonyl?¢????3?¢????hydroxyoxindole (AHO), a derivative of isatin. Tobacco plants treated with AHO exhibited enhanced resistance to tobacco mosaic virus (TMV) and to the fungal pathogen Erysiphe cichoracearum (powdery mildew), accompanied by increased levels of pathogenesis?¢????related gene 1 ( PR?¢????1 ) expression, salicylic acid (SA) accumulation and phenylalanine ammonia?¢????lyase activity. To study the mode of action of AHO, its ability to induce PR?¢????1 expression and TMV resistance in nahG transgenic plants expressing salicylate hydroxylase, which prevents the accumulation of SA, was analysed. AHO treatment did not induce TMV resistance or PR?¢????1 expression in nahG transgenic plants, suggesting that AHO acts upstream of SA in the SAR signalling pathway. In addition, using two?¢????dimensional gel electrophoresis combined with mass spectrometry, five AHO?¢????induced plant proteins were identified which were homologous to the effector proteins with which SA interacts. Our data suggest that AHO may represent a novel class of inducer that stimulates SA?¢????mediated defence responses.
机译:系统获得性抗药性(SAR)是一种可诱导的防御机制,在保护植物免受微生物病原体侵袭中起着核心作用。在生物测定法的指导下,从Strobilanthes cusia的提取物中分离出一种新的SAR化学诱导剂,并鉴定出其为衍生物3 ???????丙酮基??????? 3 ???????? hydroxyoxindole(AHO)。伊斯兰教经AHO处理的烟草植株对烟草花叶病毒(TMV)和真菌病原体Cryraceaceum(粉状霉菌)表现出增强的抗性,并伴随着较高的致病水平。相关基因1(PR4) 1)表达,水杨酸(SA)的积累和苯丙氨酸氨解酶活性。为了研究AHO的作用方式,分析了其在表达水杨酸羟化酶的nahG转基因植物中诱导PRα1β1表达和TMV抗性的能力,这阻止了SA的积累。 AHO处理未在nahG转基因植物中诱导TMV抗性或PRα1β1表达,表明AHO在SAR信号途径中在SA的上游起作用。另外,使用二维ΔF凝胶电泳结合质谱,鉴定出了5种由AHO 3-α诱导的植物蛋白,它们与SA相互作用的效应蛋白同源。我们的数据表明,AHO可能代表了一类新型的诱导SA1β介导的防御反应的诱导剂。

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