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In situ fluorescence labelling of jasmonic acid binding sites in plant tissues with cadmium-free quantum dots

机译:无镉量子点的植物组织中茉莉酸结合位点的原位荧光标记

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摘要

The fluorescence labelling of plant hormone binding sites is an important analytical technique in research on the molecular mechanisms of plant hormone activities. The authors synthesised a jasmonic acid (JA)-conjugated ZnS:Mn quantum dot (QD) probe, with a cubic structure and average hydrodynamic sizes of about 17.0 nm. The maximum fluorescence emission of the probe was recorded at about 585 nm. The probe was used for fluorescence labelling of JA binding sites in mung bean seedling tissues. Analysis revealed that the probe exhibited high selectivity to JA binding sites and good performance in eliminating interference from background fluorescence in plant tissues. In addition, the probe did not exhibit any apparent biotoxicity, and is much more suitable than probes constructed from CdTe QDs for the analysis of biological samples.
机译:植物激素结合位点的荧光标记是研究植物激素活性分子机制的重要分析技术。作者合成了茉莉酸(JA)共轭的ZnS:Mn量子点(QD)探针,该探针具有立方结构,平均流体动力学尺寸约为17.0 nm。在约585nm处记录探针的最大荧光发射。该探针用于绿豆幼苗组织中JA结合位点的荧光标记。分析表明,该探针对JA结合位点具有很高的选择性,并且在消除植物组织中背景荧光的干扰方面表现出良好的性能。另外,该探针没有表现出任何明显的生物毒性,并且比从CdTe QDs构建的探针更适合用于生物样品的分析。

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