Unverified paper record
MultiSense: A Multimodal Sensor Tool Enabling the High-Throughput Analysis of Respiration.
Methods in molecular biology (Clifton, N.J.) · 1 Jan 2017 · 10.1007/978-1-4939-7292-0_5
Abstract
The high-throughput analysis of respiratory activity has become an important component of many biological investigations. Here, a technological platform, denoted the "MultiSense tool," is described. The tool enables the parallel monitoring of respiration in 100 samples over an extended time period, by dynamically tracking the concentrations of oxygen (O 2 ) and/or carbon dioxide (CO 2 ) and/or pH within an airtight vial. Its flexible design supports the quantification of respiration based on either oxygen consumption or carbon dioxide release, thereby allowing for the determination of the physiologically significant respiratory quotient (the ratio between the quantities of CO 2 released and the O 2 consumed). It requires an LED light source to be mounted above the sample, together with a CCD camera system, adjusted to enable the capture of analyte-specific wavelengths, and fluorescent sensor spots inserted into the sample vial. Here, a demonstration is given of the use of the MultiSense tool to quantify respiration in imbibing plant seeds, for which an appropriate step-by-step protocol is provided. The technology can be easily adapted for a wide range of applications, including the monitoring of gas exchange in any kind of liquid culture system (algae, embryo and tissue culture, cell suspensions, microbial cultures).
Plant phenotyping relevance
植物種子の呼吸を高スループットに定量するマルチモーダルセンサープラットフォームの開発・実証が中心であり、植物の生理状態を測定するフェノタイピング手法に該当する。
abstractHere, a technological platform, denoted the "MultiSense tool," is described.
abstractThe tool enables the parallel monitoring of respiration in 100 samples over an extended time period
abstractHere, a demonstration is given of the use of the MultiSense tool to quantify respiration in imbibing plant seeds
Code and data availability
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