Shanghai Key Lab of Modern Optical System, University of Shanghai for Science and Technology No. 516, Jungong Road, 200093, Shanghai, China.
Shanghai Cooperation Innovation Centre of Terahertz Spectroscopy and Imaging Technology No. 516, Jungong Road, 200093, Shanghai, China.
Sci Rep. 2019 Aug 20;9(1):12097. doi: 10.1038/s41598-019-47208-2.
As an ideal raw material for the production of astaxanthin, H. pluvialis was drawing attention during the last few years, there are some research topics initiated to find out the synthetic pathway of astaxanthin in H. pluvialis. In this study, confocal microscopic Raman technology was utilized to analyze the point-by-point mapping for H. pluvialis, and the visualization of pigment such as carotenoid and astaxanthin content were achieved. By comparing the Raman spectra of H. pluvialis and standard product of astaxanthin, and using the C = C stretching vibration of the Raman intensity as the main indicator for carotenoids, the visual spatial distribution for the carotenoids content was obtained. The MCR-ALS was applied to analyze the Raman data of H. pluvialis, and the information of astaxanthin was extracted to achieve real-time spatial distribution. The visualization of astaxanthin content shows that MCR-ALS is very effective for extracting the information of astaxanthin content from H. pluvialis. By exploring the spatial distribution of carotenoids and astaxanthin contents, analyzing the spatial distribution rules during its growth, Raman spectroscopy technology can be utilized to investigate the internal components of the pigment (ataxanthin, etc.) in H. pluvialis, which make it as an effective methodology to monitor the accumulation and changing mechanism of pigment content in microalgae.
雨生红球藻作为虾青素生产的理想原料,近年来受到关注,一些研究课题已经启动,以找出雨生红球藻中虾青素的合成途径。在这项研究中,利用共聚焦显微拉曼技术对雨生红球藻进行逐点映射分析,实现了类胡萝卜素和虾青素含量等色素的可视化。通过比较雨生红球藻和虾青素标准品的拉曼光谱,并以拉曼强度的 C=C 伸缩振动作为类胡萝卜素的主要指标,获得了类胡萝卜素含量的可视化空间分布。采用 MCR-ALS 对雨生红球藻的拉曼数据进行分析,提取虾青素的信息,实现实时空间分布。虾青素含量的可视化表明,MCR-ALS 非常有效地从雨生红球藻中提取虾青素含量的信息。通过探索类胡萝卜素和虾青素含量的空间分布,分析其在生长过程中的空间分布规律,拉曼光谱技术可用于研究雨生红球藻中色素(虾青素等)的内部成分,这使其成为监测微藻中色素含量积累和变化机制的有效方法。