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Probing the Influence of the Environment on Microalgae Using Infrared and Raman Spectroscopy

机译:红外线和拉曼光谱探测微藻环境对微藻的影响

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Since 2000, a diverse range of methods employing vibrational spectroscopy have been developed to study microalgae, mainly focused on probing the effects of environmental change on these ecologically important organisms These include: FTIR microspectroscopy and Attenuated Total Reflectance (ATR) FTIR spectroscopy of ex vivo samples; synchrotron FTIR microspectroscopy of in vivo samples; Raman microspectroscopy of living algal cells; and in vivo Raman spectroscopy of algal samples using acoustic levitation. It has been demonstrated that ex vivo FTIR spectroscopic analysis can track macromolecular changes in microalgae as accurately as conventional methods, whilst requiring much less biological material for the analyses. This work has been extended, through the use of synchrotron sources of IR light, to the measurement of changes in macromolecular composition in living algal cells at the intracellular level It has also been shown that Raman spectroscopy can detect changes in pigments such as chlorophyll a and P-carotene in living microalgal cells, caused by changing light and nutrient conditions, thus providing complementary information on the same processes probed by FTIR spectroscopy.
机译:自2000年以来,已经开发了采用振动光谱的各种方法来研究微藻,主要集中在这些生态学上重要的生物体对这些生态学变化的影响,这些内容包括:FTIR MicroStormopy和衰减的总反射率(ATR)exVivo样品的FTIR光谱;在体内样品中的同步rotron ftir微型光谱; Liman Micropectectock的生物藻类细胞;并使用声悬浮的藻类样品的体内拉曼光谱。已经证明,离体FTIR光谱分析可以作为常规方法准确地追踪微血脂的大分子变化,同时需要更少的生物材料进行分析。这项工作已经扩展,通过使用同步r光来源,在细胞内水平的血管藻类细胞中测量大分子组合物的变化,还表明拉曼光谱可以检测叶绿素A和叶绿素A和叶绿素A和叶绿素A的变化活性微藻细胞中的p-胡萝卜素,由光和营养条件改变引起,从而提供了对由FTIR光谱探测的相同方法的互补信息。

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