“光谱指纹”在沉积物上的特定藻类群体:一种新的传感器

N. Aberle, M. Beutler, C. Moldaenke, K. Wiltshire
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引用次数: 33

摘要

目前,在沉积物中充分取样微藻种群以进行大规模生物量测定仍然是极其困难的。我们现在已经设计了一种新的底栖生物传感器(BenthoFluor)的原型,用于定量和定性地评估原位的微底栖植物种群。该传感器具有较高的空间和时间分辨率,能够快速评估群落结构和分布。这些测定是基于这样一个概念,即五个光谱激发范围可用于在几秒钟内就地区分微藻群。此外,由于沉积物中含有大量黄色物质,会影响藻类的荧光和光学分化,因此该装置配备了UV-LED进行黄色物质校正。该装置用HPLC法进行了标定,并在现场进行了测试。该方法可以实时监测沉积物中藻类的组合组成,是研究沉积物中藻类种群大尺度时空变化的理想工具。除了藻类种群的分化外,BenthoFluor还可以在现场和实验装置中对沉积物最表层的叶绿素浓度进行即时监测,并确定是哪种藻类造成了这种情况。
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"Spectral fingerprinting" for specific algal groups on sediments in situ: a new sensor
Currently it is still extremely difficult to adequately sample populations of microalgae on sediments for large-scale biomass determination. We have now devised a prototype of a new benthic sensor (BenthoFluor) for the quantitative and qualitative assessment of microphytobenthos populations in situ. This sensor enables a high spatial and temporal resolution and a rapid evaluation of the community structure and distribution. These determinations are based on the concept that five spectral excitation ranges can be used to differentiate groups of microalgae, in situ, within a few seconds. In addition, because sediments contain a lot of yellow substances, which can affect the fluorescence and optical differentiation of the algae, the device was equipped with a UV-LED for yellow substances correction. The device was calibrated against HPLC with cultures and tested in the field. Our real-time approach can be used to monitor algal assemblage composition on sediments and is an ideal tool for investigations on the large-scale spatial and temporal variation of algal populations in sediments. Apart from the differentiation of algal populations, the BenthoFluor allows instantaneous monitoring of the chlorophyll concentrations and determination of which algae are responsible for this on the uppermost surface of sediments in the field and in experimental set-ups.
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