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Coherent anti-Stokes Raman scattering and spontaneous Raman spectroscopy and microscopy of microalgae with nitrogen depletion

机译:氮耗竭的微藻的相干抗斯托克斯拉曼散射和自发拉曼光谱及显微学

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摘要

Microalgae are extensively researched as potential feedstocks for biofuel production. Energy-rich compounds in microalgae, such as lipids, require efficient characterization techniques to investigate the metabolic pathways and the environmental factors influencing their accumulation. The model green alga Coccomyxa accumulates significant amounts of triacylglycerols (TAGs) under nitrogen depletion (N-depletion). To monitor the growth of TAGs (lipid) in microalgal cells, a study of microalgal cells (Coccomyxa sp. C169) using both spontaneous Raman and coherent anti-Stokes Raman scattering (CARS) spectroscopy and microscopy were carried out. Spontaneous Raman spectroscopy was conducted to analyze the components in the algal cells, while CARS was carried out to monitor the distribution of lipid droplets in the cells. Raman signals of carotenoid are greater in control microalgae compared to N-depleted cells. Raman signals of lipid droplets appear after N-depletion and its distribution can be clearly observed in the CARS microscopy. Both spontaneous Raman spectroscopy and CARS microscopy were found to be suitable analysis tools for microalgae.
机译:微藻作为生物燃料生产的潜在原料已被广泛研究。微藻中富含能量的化合物(例如脂质)需要有效的表征技术,以研究代谢途径和影响其积累的环境因素。模型绿藻球藻在氮耗竭(N耗竭)下会积聚大量的三酰基甘油(TAG)。为了监测微藻细胞中TAG(脂质)的生长,使用自发拉曼光谱和相干抗斯托克斯拉曼散射(CARS)光谱学和显微镜技术对微藻细胞(Coccomyxa sp。C169)进行了研究。进行自发拉曼光谱分析藻类细胞中的成分,同时进行CARS监测脂质滴在细胞中的分布。与N耗尽的细胞相比,对照微藻中的类胡萝卜素拉曼信号更大。 N耗尽后会出现脂滴的拉曼信号,在CARS显微镜下可以清楚地观察到其分布。自发拉曼光谱法和CARS显微镜法都被认为是微藻的合适分析工具。

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