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首页> 外文期刊>Environmental Monitoring and Assessment >Photosynthetic pigment laser-induced fluorescence indicators for the detection of changes associated with trace element stress in the diatom model species Phaeodactylum tricornutum
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Photosynthetic pigment laser-induced fluorescence indicators for the detection of changes associated with trace element stress in the diatom model species Phaeodactylum tricornutum

机译:光合作用色素激光诱导的荧光指示剂,用于检测硅藻模型物种三角藻(Phaeodactylum tricornutum)中与微量元素胁迫相关的变化

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This work reports changes on cell number, growth rate, trace element content, chlorophyll a (Chl a) and carotenoid concentrations, and laser-induced fluorescence (LIF) spectra of Phaeodactylum tricornutum exposed to Co, Ni, Cu, Zn, Cd, Hg, Pb, and a mixture of all elements combined (Mix). The total levels of trace elements associated with the cells were significantly higher in the exposed than in control ones. Concomitantly, specific cell growth was significantly lower in exposed P. tricornutum, suggesting that trace elements affected the microalgae physiology. The LIF emission spectra showed two typical emission bands in red (683698 nm) and far-red (725-730 nm) regions. Deviations in LIF spectra and changes in F685/F735 ratio were investigated as indicators of trace element-induced changes. Fluorescence intensity emitted by exposed microalgae decreased in far-red region when compared to control cells, suggesting Chl a damage and impairment of pigment biosynthesis pathways by trace elements, confirmed by Chl a and carotenoid concentration decrease. Significant increase in F685/F735 ratio was detected for all elements except Zn and more accentuated for Co, Hg, and Mix. Significant deviations in wavelength emission maxima in red region were also more significant (between 8 and 13 nm) for Co, Hg, and Mix. Growth changes agreed with deviations in LIF spectra and F685/F735 ratio, supporting their applicability as indicators. This study clearly shows F685/F735 ratio and the deviations in wavelength emission maxima as adequate trace element stress indicators and P. tricornutum as a promising biomonitor model species. LIF-based techniques can be used as time-saving, highly sensitive, and effective alternative tool for the detection of trace element stress, with potential for remote sensing and trace element contamination screening in marine coastal areas.
机译:这项工作报告了暴露于Co,Ni,Cu,Zn,Cd,Hg的Tricornactumlum tricornutum的细胞数量,生长速率,微量元素含量,叶绿素a(Chl a)和类胡萝卜素浓度以及激光诱导的荧光(LIF)光谱的变化。 ,Pb和所有元素的混合物组合在一起(混合)。与细胞相关的痕量元素的总含量在暴露时明显高于对照。随之而来的是,裸露的角果疟原虫的特异性细胞生长显着降低,表明微量元素影响了微藻的生理。 LIF发射光谱在红色(683698 nm)和远红色(725-730 nm)区域显示两个典型的发射带。研究了LIF光谱的偏差和F685 / F735比值的变化,作为痕量元素引起的变化的指标。与对照细胞相比,暴露的微藻发出的荧光强度在远红色区域降低,表明Chl a微量元素对色素生物合成途径的破坏和损害,由Chla和类胡萝卜素浓度降低证实。对于除锌以外的所有元素,均检测到F685 / F735比的显着增加,而对Co,Hg和Mix的影响更大。对于Co,Hg和Mix,红色区域中的最大波长发射最大值的显着偏差也更大(在8和13 nm之间)。生长变化与LIF光谱和F685 / F735比值的偏差一致,从而支持了它们作为指标的适用性。这项研究清楚地表明,F685 / F735比率和波长发射最大值的偏差可以作为足够的痕量元素应激指标,而三角锥假单胞菌则可以作为有希望的生物监测模型物种。基于LIF的技术可以用作节省时间,高度灵敏且有效的替代工具,用于检测痕量元素应力,并有可能在海洋沿海地区进行遥感和痕量元素污染筛选。

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