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Bacterial pathogen phytosensing in transgenic tobacco and Arabidopsis plants

机译:转基因烟草和拟南芥植物中的细菌病原体植物

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摘要

Plants are subject to attack by a wide range of phytopathogens. Current pathogen detection methods and technologies are largely constrained to those occurring post-symptomatically. Recent efforts were made to generate plant sentinels (phytosensors) that can be used for sensing and reporting pathogen contamination in crops. Engineered phytosensors indicating the presence of plant pathogens as early-warning sentinels potentially have tremendous utility as wide-area detectors. We previously showed that synthetic promoters containing pathogen and/or defence signalling inducible cis-acting regulatory elements (RE) fused to a fluorescent protein (FP) reporter could detect phytopathogenic bacteria in a transient phytosensing system. Here, we further advanced this phytosensing system by developing stable transgenic tobacco and Arabidopsis plants containing candidate constructs. The inducibility of each synthetic promoter was examined in response to biotic (bacterial pathogens) or chemical (plant signal molecules salicylic acid, ethylene and methyl jasmonate) treatments using stably transgenic plants. The treated plants were visualized using epifluorescence microscopy and quantified using spectrofluorometry for FP synthesis upon induction. Time-course analyses of FP synthesis showed that both transgenic tobacco and Arabidopsis plants were capable to respond in predictable ways to pathogen and chemical treatments. These results provide insights into the potential applications of transgenic plants as phytosensors and the implementation of emerging technologies for monitoring plant disease outbreaks in agricultural fields.
机译:植物受到广泛的植物病原体的攻击。目前的病原体检测方法和技术主要受到症状后发生的影响。最近的努力是产生植物哨兵(植物传感器),可用于在作物中感测和报告病原体污染。作为早期警告哨兵的工厂病原体存在的工程植物传感器可能具有巨大的效用作为广域探测器。我们以前表明,含有到荧光蛋白(FP)报告者的含有病原体和/或防御信号传导的合成启动子诱导的CIS作用调节元件(RE)可以检测肺细胞化系统中的植物致病细菌。在这里,我们通过开发含有候选构建体的稳定转基因烟草和拟南芥植物来进一步提前这种植酸体系。使用稳定的转基因植物,对生物(细菌病原体)或化学(植物信号分子水杨酸,乙烯和甲基和甲基和甲基和甲基和甲基己酸酯)处理进行检查的每个合成启动子的诱导性。使用离荧光显微镜观察处理的植物,并使用光谱荧光测量法定量用于FP合成的诱导。 FP合成的时间过程分析表明,转基因烟草和拟南芥植物能够以可预测的方式对病原体和化学处理进行响应。这些结果提供了转基因植物作为植物传感器的潜在应用以及在农业领域监测植物疾病爆发的新兴技术的实施。

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