Combined use of chlorophyll a and phycocyanin fluorescence sensors for quantification and differentiation of phytoplankton: a useful approach for small surface water bodies

A. Meglič, Rozina Tinkara, E. Tina, Leštan Domen, Zupan I Justin Maja, Megli Andrej, Sift Desk Journals Open Access Journals
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Abstract

Sensors based on in vivo measurements of photosynthetic pigments fluorescence enable real-time phytoplankton monitoring with high spatial and temporal resolution. A combination of chlorophyll a (CHL) and phycocyanin (PC) fluorescence sensors was used for phytoplankton quantification and differentiation in two small water bodies, Koseze Pond and pond in Hotinja vas. The high correlation of CHL and PC fluorescence signals with biovolume was confirmed during the two-year monitoring in anatural pond environment in spite of a seasonal succession of the phytoplankton. Additionally, disturbances of the sensors were investigated. Water bodies containing predominantly algae yielded false positive signals of the PC sensor, which reached up to 1% of the intensity of the CHL signal. Similarly, underestimated counts of cyanobacteria measured with CHL fluorescence sensor can be adjusted using PC fluorescence sensor.
叶绿素a和藻蓝蛋白荧光传感器在浮游植物定量和分化中的联合应用:一种用于小型地表水体的有用方法
基于体内光合色素荧光测量的传感器使浮游植物实时监测具有高空间和时间分辨率。采用叶绿素A (CHL)和藻蓝蛋白(PC)联合荧光传感器对Hotinja vas的Koseze Pond和Pond两个小水体进行了浮游植物的定量和分化。尽管浮游植物具有季节性演替,但在两年的自然池塘环境监测中,证实了CHL和PC荧光信号与生物体积的高度相关性。此外,还研究了传感器的扰动。以藻类为主的水体PC传感器产生假阳性信号,假阳性信号强度达到CHL信号强度的1%。同样,用CHL荧光传感器测量的被低估的蓝藻数量也可以用PC荧光传感器进行调整。
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