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Use of a highly sensitive two-dimensional luminescence imaging system to monitor endogenous bioluminescence in plant leaves.

机译:使用高灵敏度的二维发光成像系统监控植物叶片中的内源性生物发光。

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摘要

Background All living organisms emit spontaneous low-level bioluminescence, which can be increased in response to stress. Methods for imaging this ultra-weak luminescence have previously been limited by the sensitivity of the detection systems used. Results We developed a novel configuration of a cooled charge-coupled device (CCD) for 2-dimensional imaging of light emission from biological material. In this study, we imaged photon emission from plant leaves. The equipment allowed short integration times for image acquisition, providing high resolution spatial and temporal information on bioluminescence. We were able to carry out time course imaging of both delayed chlorophyll fluorescence from whole leaves, and of low level wound-induced luminescence that we showed to be localised to sites of tissue damage. We found that wound-induced luminescence was chlorophyll-dependent and was enhanced at higher temperatures. Conclusions The data gathered on plant bioluminescence illustrate that the equipment described here represents an improvement in 2-dimensional luminescence imaging technology. Using this system, we identify chlorophyll as the origin of wound-induced luminescence from leaves.
机译:背景技术所有生物都发出自发的低水平生物发光,可以响应压力而增加。以前,这种超弱发光的成像方法受到所用检测系统灵敏度的限制。结果我们开发了一种新颖的冷却电荷耦合器件(CCD)配置,用于对生物材料发出的光进行二维成像。在这项研究中,我们对植物叶片的光子发射进行了成像。该设备允许较短的积分时间进行图像采集,从而提供有关生物发光的高分辨率时空信息。我们能够对整个叶片的叶绿素荧光延迟和伤口诱导的低水平发光进行时程成像,结果显示它们位于组织损伤部位。我们发现伤口诱导的发光是叶绿素依赖性的,并在较高的温度下增强。结论关于植物生物发光的数据表明,此处描述的设备代表了二维发光成像技术的改进。使用该系统,我们确定叶绿素是伤口诱导的叶片发光的起源。

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