首页> 外文期刊>Frontiers in Marine Science >Improving the accuracy of single turnover active fluorometry (STAF) for the estimation of phytoplankton primary productivity (PhytoPP)
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Improving the accuracy of single turnover active fluorometry (STAF) for the estimation of phytoplankton primary productivity (PhytoPP)

机译:提高单周转活性荧光法(STAF)估算浮游植物初级生产力(PhytoPP)的准确性

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Photosystem II (PSII) photochemistry is the ultimate source of reducing power for phytoplankton primary productivity (PhytoPP). Single turnover active chlorophyll fluorometry (STAF) provides a non-intrusive method that has the potential to measure PhytoPP on much wider spatiotemporal scales than is possible with more direct methods such as 14C fixation and O2 evolved through water oxidation. Application of a STAF-derived absorption coefficient for PSII light-harvesting (aLHII) provides a method for estimating PSII photochemical flux on a unit volume basis (JVPII). Within this study, we assess potential errors in the calculation of JVPII arising from sources other than photochemically active PSII complexes (baseline fluorescence) and the package effect. Although our data show that such errors can be significant, we identify fluorescence-based correction procedures that can be used to minimize their impact. For baseline fluorescence, the correction incorporates an assumed consensus PSII photochemical efficiency for dark-adapted material. The error generated by the package effect can be minimized through the ratio of variable fluorescence measured within narrow wavebands centered at 730 nm, where the re-absorption of PSII fluorescence emission is minimal, and at 680 nm, where re-absorption of PSII fluorescence emission is maximal. We conclude that, with incorporation of these corrective steps, STAF can provide a reliable estimate of JVPII and, if used in conjunction with simultaneous satellite measurements of ocean color, could take us significantly closer to achieving the objective of obtaining reliable autonomous estimates of PhytoPP.
机译:光系统II(PSII)光化学是降低浮游植物初级生产力(PhytoPP)的能力的最终来源。单周转活性叶绿素荧光测定法(STAF)提供了一种非侵入性方法,与用14C固定和通过水氧化析出的O2等更直接的方法相比,它有可能在更大的时空范围内测量PhytoPP。将STAF派生的吸收系数用于PSII光捕获(aLHII)提供了一种基于单位体积(JVPII)估算PSII光化学通量的方法。在这项研究中,我们评估了除光化学活性PSII配合物(基线荧光)​​以外的其他来源和包装效应所引起的JVPII计算中的潜在误差。尽管我们的数据表明此类错误可能很严重,但我们确定了可用于最小化其影响的基于荧光的校正程序。对于基线荧光,该校正结合了暗适应材料的假定共识PSII光化学效率。通过在以730 nm为中心的窄波段中测得的可变荧光的比率(在其中PSII荧光发射的重吸收最小)和在680 nm(在PSII荧光发射的重吸收中)测量的可变荧光的比率,可以最小化由封装效应产生的误差。最大。我们得出的结论是,通过结合这些纠正步骤,STAF可以提供JVPII的可靠估计值,如果与同时进行的海洋颜色卫星测量结合使用,则可以使我们大大接近于获得可靠的PhytoPP自主估计值的目标。

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