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首页> 外文期刊>Physiologia plantarum >A fluorometer-based method for monitoring oxidation of redox-sensitive GFP (roGFP) during development and extended dark stress
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A fluorometer-based method for monitoring oxidation of redox-sensitive GFP (roGFP) during development and extended dark stress

机译:一种基于荧光计的方法,用于监测显影和延长的黑暗胁迫期间氧化还原敏感的GFP(roGFP)的氧化

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Redox-sensitive GFP (roGFP) localized to different compartments has been shown to be suitable for determination of redox potentials in plants via imaging. Long-term measurements bring out the need for analyzing a large number of samples which are averaged over a large population of cells. Because this goal is too tedious to be achieved by confocal imaging, we have examined the possibility of using a fluorometer to monitor changes in roGFP localized to different subcellular compartments during development and dark-induced senescence. The degree of oxidations determined by a fluorometer for different probes was similar to values obtained by confocal image analysis. Comparison of young and old leaves indicated that in younger cells higher levels of HO were required to achieve full roGFP oxidation, a parameter which is necessary for calculation of the degree of oxidation of the probe and the actual redox potential. Therefore, it is necessary to carefully determine the HO concentration required to achieve full oxidation of the probe. In addition, there is an increase in autofluorescence during development and extended dark stress, which might interfere with the ability to detect changes in oxidation-reduction dependent fluorescence of roGFP. Nevertheless, it was possible to determine the full dynamic range between the oxidized and the reduced forms of the different probes in the various organelles until the third day of darkness and during plant development, thereby enabling further analysis of probe oxidation. Hence, fluorometer measurements of roGFP can be used for extended measurements enabling the processing of multiple samples. It is envisaged that this technology may be applicable to the analysis of redox changes in response to other stresses or to various mutants.
机译:氧化还原敏感的GFP(roGFP)定位在不同的车厢已被证明适合通过成像确定植物中的氧化还原电位。长期测量带来了对分析大量样本的需求,这些样本是在大量细胞中平均的。由于共聚焦成像无法实现此目标,因此我们检查了使用荧光计监测发育和黑暗诱导衰老过程中位于不同亚细胞区室的roGFP变化的可能性。用荧光计测定的不同探针的氧化程度类似于通过共聚焦图像分析获得的值。幼叶和老叶的比较表明,在较年轻的细胞中,需要更高水平的HO才能实现完全roGFP氧化,这是计算探针氧化度和实际氧化还原电位所必需的参数。因此,有必要仔细确定实现探针完全氧化所需的HO浓度。另外,在发育过程中自发荧光增加,并且暗应力延长,这可能会干扰检测roGFP依赖于氧化还原的荧光变化的能力。尽管如此,仍然有可能确定各种细胞器中不同探针的氧化形式与还原形式之间的完整动态范围,直到黑暗的第三天以及在植物发育过程中,从而能够进一步分析探针的氧化。因此,roGFP的荧光计测量可用于扩展测量,从而能够处理多个样品。设想该技术可适用于响应于其他压力或各种突变体的氧化还原变化的分析。

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