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首页> 外文期刊>Marine ecology progress series >Fluorescence and nonphotochemical quenching responses to simulated vertical mixing in the marine diatom Thalassiosira weissflogii
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Fluorescence and nonphotochemical quenching responses to simulated vertical mixing in the marine diatom Thalassiosira weissflogii

机译:海洋硅藻Thalassiosira weissflogii中模拟垂直混合的荧光和非光化学猝灭响应

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The fluorescence signal emitted from phytoplankton exposed to natural sunlight has been considered a potentially useful tool to examine phytoplankton physiology from in situ radiometers and satellites, but variability in the fluorescence signal is confounded by non-photochemical quenching (NPQ). This pathway dissipates excitation energy as heat rather than fluorescence. It is necessary to first correct for this NPQ signal in order to extract physiological information, such as rates or nutrient stresses. Here we examine the fluorescence-irradiance response and NPQ in a marine diatom grown under simulated vertical mixing. Contrary to previous studies, we find that low-light-acclimated cultures express greater NPQ than high-light-acclimated cultures. Our results differ from previous studies because we employ realistic vertical mixing, rather than constant light conditions. We also find that fluorescence yields do not saturate at high-light levels. This observation impacts how we might apply NPQ corrections to radiometer and satellite data.
机译:从暴露于自然光下的浮游植物发出的荧光信号被认为是检查原位辐射计和卫星浮游植物生理学的潜在有用工具,但荧光信号的可变性因非光化学猝灭(NPQ)而混淆。该途径将激发能作为热量而不是荧光消散。必须首先对此NPQ信号进行校正,以提取生理信息,例如比率或营养胁迫。在这里,我们研究了在模拟垂直混合下生长的海洋硅藻中的荧光辐射响应和NPQ。与以前的研究相反,我们发现低光照适应文化比高光照适应文化表现出更大的NPQ。我们的结果与以前的研究有所不同,因为我们采用了逼真的垂直混合,而不是恒定的光照条件。我们还发现荧光强度在高光下不会饱和。这一观察结果影响了我们如何将NPQ校正应用于辐射计和卫星数据。

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