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A high-sensitivity optical device for the early monitoring of plant pathogen attack via the in vivo detection of ROS bursts

机译:通过体内检测ROS爆发早期监测植物病原体侵袭的高灵敏度光学装置

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摘要

Biotic stressors, especially pathogenic microorganisms, are rather difficult to detect. In plants, one of the earliest cellular responses following pathogen infection is the production of reactive oxygen species (ROS). In this study, a novel optical device for the early monitoring of Pseudomonas attack was developed; this device measures the ROS level via oxidation-sensitive 2′, 7′-dichlorodihydrofluorescein diacetate (H2DCFDA)-mediated fluorescence, which could provide early monitoring of attacks by a range of plant pathogen; ROS bursts were detected in vivo in Arabidopsis thaliana with higher sensitivity and accuracy than those of a commercial luminescence spectrophotometer. Additionally, the DCF fluorescence truly reflected early changes in the ROS level, as indicated by an evaluation of the H2O2 content and the tight association between the ROS and Pseudomonas concentration. Moreover, compared with traditional methods for detecting plant pathogen attacks based on physiological and biochemical measurements, our proposed technique also offers significant advantages, such as low cost, simplicity, convenient operation and quick turnaround. These results therefore suggest that the proposed optical device could be useful for the rapid monitoring of attacks by plant pathogen and yield results considerably earlier than the appearance of visual changes in plant morphology or growth.
机译:生物应激源,尤其是病原微生物,很难检测到。在植物中,病原体感染后最早的细胞反应之一是产生活性氧(ROS)。在这项研究中,开发了一种新型光学装置,用于早期监测假单胞菌的侵袭。该设备通过对氧化敏感的2',7'-二氯二氢荧光素二乙酸酯(H2DCFDA)介导的荧光来测量ROS的水平,从而可以早期监测多种植物病原体的侵袭。在拟南芥中体内检测到的ROS爆发比商业发光分光光度计具有更高的灵敏度和准确性。此外,DCF荧光确实反映了ROS水平的早期变化,这通过评估H2O2含量以及ROS与假单胞菌浓度之间的紧密联系来表明。此外,与传统的基于生理和生化测量方法检测植物病原体侵袭的方法相比,我们提出的技术还具有显着的优势,例如成本低,操作简便,周转迅速。因此,这些结果表明,所提出的光学装置可用于快速监测植物病原体的侵袭并获得比植物形态或生长的视觉变化出现要早得多的结果。

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