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Toward autonomous measurements of photosynthetic electron transport rates: An evaluation of active fluorescence-based measurements of photochemistry

机译:走向光合电子传输速率的自主测量:基于活性荧光的光化学测量的评估

摘要

This study presents a methods evaluation and intercalibration of active fluorescence-based measurements of the quantum yield ( inline image) and absorption coefficient ( inline image) of photosystem II (PSII) photochemistry. Measurements of inline image, inline image, and irradiance (E) can be scaled to derive photosynthetic electron transport rates ( inline image), the process that fuels phytoplankton carbon fixation and growth. Bio-optical estimates of inline image and inline image were evaluated using 10 phytoplankton cultures across different pigment groups with varying bio-optical absorption characteristics on six different fast-repetition rate fluorometers that span two different manufacturers and four different models. Culture measurements of inline image and the effective absorption cross section of PSII photochemistry ( inline image, a constituent of inline image) showed a high degree of correspondence across instruments, although some instrument-specific biases are identified. A range of approaches have been used in the literature to estimate inline image and are evaluated here. With the exception of ex situ inline image estimates from paired inline image and PSII reaction center concentration ( inline image) measurements, the accuracy and precision of in situ inline image methodologies are largely determined by the variance of method-specific coefficients. The accuracy and precision of these coefficients are evaluated, compared to literature data, and discussed within a framework of autonomous inline image measurements. This study supports the application of an instrument-specific calibration coefficient ( inline image) that scales minimum fluorescence in the dark ( inline image) to inline image as both the most accurate in situ measurement of inline image, and the methodology best suited for highly resolved autonomous inline image measurements.
机译:这项研究提出了一种方法评估和相互校准的基于光的系统对光系统II(PSII)光化学的量子产率(在线图像)和吸收系数(在线图像)的测量。可以缩放内联图像,内联图像和辐照度(E)的测量值,以得出光合电子传输速率(内联图像),该过程为浮游植物的碳固定和生长提供了动力。内联图像和内联图像的生物光学估计是在跨越两个不同制造商和四个不同模型的六种不同快速重复率荧光计上,使用跨不同色素组的具有不同生物光学吸收特性的10种浮游植物来评估的。内联图像的培养物测量和PSII光化学的有效吸收截面(内联图像,内联图像的组成部分)显示了仪器之间的高度对应性,尽管已发现某些仪器特定的偏见。文献中已经使用了多种方法来估计嵌入式图像,并在此处进行评估。除了通过成对的在线图像和PSII反应中心浓度(在线图像)测量得出的异地在线图像估计值以外,原位在线图像方法的准确性和精度很大程度上取决于方法特定系数的变化。评估这些系数的准确性和精确度,与文献数据进行比较,并在自主的在线图像测量框架内进行讨论。这项研究支持应用特定于仪器的校准系数(在线图像),该系数可将暗处的最小荧光(在线图像)缩放为在线图像,这既是最准确的在线图像原位测量,也是最适合高度分辨的方法自主的在线图像测量。

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