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How Does the Species Used for Calibration Affect Chlorophyll a Measurements by In Situ Fluorometry?

机译:用于校准的物种如何通过原位荧光法影响叶绿素a的测量?

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We determined how the species used for calibration affects the accuracy of in situ chlorophyll a (chl a) measurements by fluorometry using single-species cultures and natural phytoplankton populations from Winyah Bay, South Carolina, USA. When a diatom was used for calibration, chl a in a dinoflagellate culture was overestimated by 66 ± 7%, whereas concentrations of a cryptophyte, chlorophyte, and cyanobacterium were underestimated by 16 ± 20%, 40 ± 7%, and 71 ± 33%, respectively. In natural populations, the combination of species-specific and environmentally induced variation in the ratio of fluorescence to chl a (F Chl−1) led to an overestimate by the in situ fluorometer of 40–169% for an April experiment and an underestimate of 4–50% in July. Even when field samples were dominated by diatoms, environmental effects resulted in highly variable predictions of chl a. Thus, while a carefully selected calibration species can improve estimates of in vivo chl a in the laboratory, calibration of in situ fluorometers should be done with natural communities collected from the site of interest.
机译:我们确定了用于校准的物种如何通过荧光法使用来自美国南卡罗来纳州Winyah湾的单物种培养物和天然浮游植物种群,通过荧光法测定原位叶绿素a(chl a)的测量准确性。当使用硅藻进行校准时,鞭毛硅藻中的chl a被高估了66±7%,而隐藻,绿藻和蓝细菌的浓度被低估了16±20%,40±7%和71±33% , 分别。在自然种群中,物种特异性和环境诱导的荧光与chl a(F Chl-1 )之比的变化的结合导致原位荧光计高估了40%至169%的四月实验并在7月低估了4%至50%。即使当现场样品被硅藻控制时,环境影响也导致对chl a的高度预测。因此,尽管精心选择的校准物质可以改善实验室对体内胆固醇的估计,但是原位荧光计的校准应使用从目标地点收集的自然群落来进行。

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