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The rhizobacterial elicitor acetoin induces systemic resistance in Arabidopsis thaliana

机译:根瘤菌激发子乙酰丙酮诱导拟南芥的全身抗性

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摘要

The majority of plant growth promoting rhizobacteria (PGPR) confer plant immunity against a wide range of foliar diseases by activating plant defences that reduce a plant’s susceptibility to pathogen attack. Here we show that Arabidopsis thaliana (Col-0) plants exposed to Bacillus subtilis strain FB17 (hereafter FB17), results in reduced disease severity against Pseudomonas syringae pv. tomato DC3000 (hereafter DC3000) compared to plants without FB17 treatment. Exogenous application of the B. subtilis derived elicitor, acetoin (3-hydroxy-2-butanone), was found to trigger induced systemic resistance (ISR) and protect plants against DC3000 pathogenesis. Moreover, B. subtilis acetoin biosynthetic mutants that emitted reduced levels of acetoin conferred reduced protection to A. thaliana against pathogen infection. Further analysis using FB17 and defense-compromised mutants of A. thaliana indicated that resistance to DC3000 occurs via NPR1 and requires salicylic acid (SA)/ethylene (ET) whereas jasmonic acid (JA) is not essential. This study provides new insight into the role of rhizo-bacterial volatile components as elicitors of defense responses in plants.
机译:促进根瘤菌生长的大多数植物(PGPR)通过激活植物防御系统降低植物对病原体侵袭的敏感性,从而赋予植物抵抗多种叶病的免疫力。在这里,我们显示暴露于枯草芽孢杆菌菌株FB17(以下称FB17)的拟南芥(Col-0)植物导致针对丁香假单胞菌pv的疾病严重性降低。番茄DC3000(以下称DC3000)与未经FB17处理的植物相比。已发现外源应用枯草芽孢杆菌衍生的引发剂乙酰丙酮(3-羟基-2-丁酮)可引发诱导的系统抗性(ISR),并保护植物免受DC3000致病。此外,枯草芽孢杆菌的丙酮酸生物合成突变体释放出降低水平的乙酰丙酮赋予了拟南芥抵抗病原体感染的保护作用降低。使用FB17和拟南芥防御功能受损的突变体进行的进一步分析表明,对DC3000的耐药性通过NPR1发生,需要水杨酸(SA)/乙烯(ET),而茉莉酸(JA)并不是必需的。这项研究提供了新的见解,对根际细菌挥发性成分作为植物防御反应的引发剂的作用。

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