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A novel dual-excitation pulse-amplitude-modulation fluorometer for investigating photosynthesis of plants

bioRxiv · 19 Apr 2024 · 10.1101/2024.04.18.589113

Abstract

A modular instrument was developed to measure the fluorescence yield in plants subject to a combination of two harmonically-oscillating blue lights with independently controlled frequencies and phases.It uses the pulse-amplitude-modulation (PAM) method to measure the fluorescence yield independently of the plant irradiance. Compared to existing commercial instruments, it uses a higher measuring frequency ({approx} 60 kHz) and higher measuring flash irradiance. This enables averaging over a number of subsequent measurement data points to achieve a higher signal-to-noise ratio. The manuscript describes the design, testing, and characterization of the operational limits of the instrument. It identifies its current weaknesses and makes recommendations for improvements. It is accompanied by supplementary materials containing the electronic schematics and the source code. The instrument was used to study a plant response to a mixture of two oscillating lights. It resulted in an excellent signal-to-noise ratio of the measured fluorescent yield. The measurements clearly demonstrated that the fluorescence yield of a plant subject to a combination of two harmonically-oscillating lights is not the same as the sum of the responses to the two oscillating lights applied independently. The observed non-linearity leads to the important conclusion that the time- and frequency-domain cannot be connected by a Fourier transform. Therefore, the frequency-domain approach will yield novel information that is not redundant to the well-established time-domain measurements.

Plant phenotyping relevance

植物の光合成蛍光を測定する新規PAMフルオロメータの設計・試験・性能特性評価が研究の中心であり、植物生理状態の取得法を開発・検証している。

abstractA modular instrument was developed to measure the fluorescence yield in plants
abstractThe manuscript describes the design, testing, and characterization of the operational limits of the instrument.
abstractIt resulted in an excellent signal-to-noise ratio of the measured fluorescent yield.

Code and data availability

The paper describes a custom dual-excitation PAM fluorometer ('Harmonizer') and states it is accompanied by supplementary materials containing electronic schematics and source code, but no public repository, deposit, or URL for these materials is provided in the supplied blocks. No public phenotype dataset, image/sens�

No evidence-backed public reproduction asset is currently recorded.

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