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In-situ fluorescence monitoring of cyanobacteria: Laboratory-based quantification of species-specific measurement accuracy

机译:蓝藻的原位荧光监测:基于实验室的物种特异性测量精度定量

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摘要

In recent years, in-situ fluorometers have been extensively deployed to monitor cyanobacteria in near real-time. Acceptable accuracy can be achieved between measured pigments and cyanobacteria biovolume provided the cyanobacteria species are known. However, cellular photosynthetic pigment content and measurement interferences are site and species specific and can dramatically affect sensor reliability. We quantified the accuracy of an in-situ fluorometer compared with traditional methods using mono- and mixed cultures of four different cyanobacterial species. We found: (1) lower pigment content in cultures in stationary phase, (2) higher precision with the sensor compared to traditional pigment quantification methods of measuring phycocyanin and chlorophyll a, (3) species-specific relationships between sensor readings and measurements related to biovolume, (4) overestimation of pigments in mixed compared with mono cultures, (5) dissolved organic matter causing a loss in signal proportional to its degree of aromaticity, and (6) potential to quantify the degree of cell lysis with a fluorescent dissolved organic matter sensor. This study has provided important new information on the strengths and limitations of fluorescence sensors. The sensor readings can provide accurate biovolume quantification and species determination for a number of bloom-forming species when sensors are properly compensated and calibrated.
机译:近年来,现场荧光计已被广泛部署以近乎实时地监测蓝细菌。如果已知蓝细菌种类,则可以在测量的颜料和蓝细菌生物量之间达到可接受的精度。但是,细胞光合作用色素的含量和测量干扰是特定于地点和物种的,并且会显着影响传感器的可靠性。与使用四种不同蓝藻种类的单培养和混合培养的传统方法相比,我们量化了原位荧光计的准确性。我们发现:(1)固定相中培养物中的色素含量较低;(2)与传统的藻红蛋白和叶绿素a色素定量方法相比,传感器的精度更高;(3)传感器读数与与生物体积,(4)与单一培养物相比,混合色素的高估,(5)溶解的有机物,导致与其芳香度成正比的信号损失,以及(6)用荧光溶解的有机物量化细胞溶解程度的潜力物质传感器。这项研究为荧光传感器的强度和局限性提供了重要的新信息。当传感器得到适当补偿和校准后,传感器读数可以为许多形成水华的物种提供准确的生物量定量和物种确定。

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