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A MULTIPLEXING FIBER OPTIC MICROSENSOR SYSTEM FOR MONITORING OXYGEN CONCENTRATION IN PLANTS

机译:用于监测植物氧气浓度的多路光纤光学显微镜系统

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The accurate and rapid measurement of physiological O_2 transport is vital for understanding spatially and temporally dynamic metabolism and stress signalling in plant cells and tissues. Single channel luminescent O_2-quenched optrodes have been available for use in laboratory and field experiments since the early 2000's. However, to collect the large datasets needed to understand O_2 transport in complex systems, many experiments require a multiple channel O_2 sensor system. This research reports the development of a multiplexing fiber optic O_2 microsensor system designed to conduct high temporal resolution experiments for field studies of plant physiology. The 10 channel system was demonstrated for measuring O_2 concentration in developing soybean seeds (Glycine max L. Merr.) within a climate controlled greenhouse.
机译:准确,快速地测量生理O_2的运输对于理解植物细胞和组织中的时空动态代谢和胁迫信号传递至关重要。自2000年代初以来,单通道发光的O_2猝灭光极已可用于实验室和现场实验。但是,为了收集理解复杂系统中O_2传输所需的大型数据集,许多实验需要使用多通道O_2传感器系统。这项研究报告了一种多路复用光纤O_2微传感器系统的开发,该系统旨在进行高时间分辨率实验,用于植物生理学的现场研究。事实证明,该10通道系统可用于在气候受控的温室中测量发育中的大豆种子(Glycine max L. Merr。)中O_2的浓度。

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