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通过荧光动力学测定蓝藻生理光学标记物。

Determination of optical markers of cyanobacterial physiology from fluorescence kinetics.

作者信息

Courtecuisse Emilie, Oxborough Kevin, Tilstone Gavin H, Spyrakos Evangelos, Hunter Peter D, Simis Stefan G H

机构信息

EOSA, Plymouth Marine Laboratory, Prospect Place, PL1 3DH Plymouth, Devon, UK.

Chelsea Technologies Ltd, 55 Central Avenue West Molesey, Surrey KT8 2QZ, UK.

出版信息

J Plankton Res. 2022 May 25;44(3):365-385. doi: 10.1093/plankt/fbac025. eCollection 2022 May-Jun.

Abstract

Compared to other methods to monitor and detect cyanobacteria in phytoplankton populations, fluorometry gives rapid, robust and reproducible results and can be used . Fluorometers capable of providing biomass estimates and physiological information are not commonly optimized to target cyanobacteria. This study provides a detailed overview of the fluorescence kinetics of algal and cyanobacterial cultures to determine optimal optical configurations to target fluorescence mechanisms that are either common to all phytoplankton or diagnostic to cyanobacteria. We confirm that fluorescence excitation channels targeting both phycocyanin and chlorophyll associated to the Photosystem II are required to induce the fluorescence responses of cyanobacteria. In addition, emission channels centered at 660, 685 and 730 nm allow better differentiation of the fluorescence response between algal and cyanobacterial cultures. Blue-green actinic light does not yield a robust fluorescence response in the cyanobacterial cultures and broadband actinic light should be preferred to assess the relation between ambient light and photosynthesis. Significant variability was observed in the fluorescence response from cyanobacteria to the intensity and duration of actinic light exposure, which needs to be taken into consideration in field measurements.

摘要

与监测和检测浮游植物种群中蓝藻的其他方法相比,荧光测定法能给出快速、可靠且可重复的结果,并且可以使用。能够提供生物量估计和生理信息的荧光计通常并未针对蓝藻进行优化。本研究详细概述了藻类和蓝藻培养物的荧光动力学,以确定针对所有浮游植物共有的荧光机制或蓝藻诊断性荧光机制的最佳光学配置。我们证实,需要同时针对与光系统II相关的藻蓝蛋白和叶绿素的荧光激发通道,来诱导蓝藻的荧光响应。此外,以660、685和730纳米为中心的发射通道能更好地区分藻类和蓝藻培养物之间的荧光响应。蓝绿色光化光在蓝藻培养物中不会产生强烈的荧光响应,评估环境光与光合作用之间的关系时,应优先选择宽带光化光。观察到蓝藻对光化光暴露强度和持续时间的荧光响应存在显著差异,这在现场测量中需要考虑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b81/9155245/dbab1090137f/fbac025f1.jpg

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