Jaeger Daniel, Pilger Christian, Hachmeister Henning, Oberländer Elina, Wördenweber Robin, Wichmann Julian, Mussgnug Jan H, Huser Thomas, Kruse Olaf
Algae Biotechnology and Bioenergy, Faculty of Biology, Center for Biotechnology (CeBiTec), Bielefeld University, 33615 Bielefeld, Germany.
Biomolecular Photonics, Faculty of Physics, Bielefeld University, 33615 Bielefeld, Germany.
Sci Rep. 2016 Oct 21;6:35340. doi: 10.1038/srep35340.
Oleaginous photosynthetic microalgae hold great promise as non-food feedstocks for the sustainable production of bio-commodities. The algal lipid quality can be analysed by Raman micro-spectroscopy, and the lipid content can be imaged in vivo in a label-free and non-destructive manner by coherent anti-Stokes Raman scattering (CARS) microscopy. In this study, both techniques were applied to the oleaginous microalga Monoraphidium neglectum, a biotechnologically promising microalga resistant to commonly applied lipid staining techniques. The lipid-specific CARS signal was successfully separated from the interfering two-photon excited fluorescence of chlorophyll and for the first time, lipid droplet formation during nitrogen starvation could directly be analysed. We found that the neutral lipid content deduced from CARS image analysis strongly correlated with the neutral lipid content measured gravimetrically and furthermore, that the relative degree of unsaturation of fatty acids stored in lipid droplets remained similar. Interestingly, the lipid profile during cellular adaption to nitrogen starvation showed a two-phase characteristic with initially fatty acid recycling and subsequent de novo lipid synthesis. This works demonstrates the potential of quantitative CARS microscopy as a label-free lipid analysis technique for any microalgal species, which is highly relevant for future biotechnological applications and to elucidate the process of microalgal lipid accumulation.
产油光合微藻作为生物商品可持续生产的非食品原料具有巨大潜力。藻类脂质质量可通过拉曼显微光谱分析,脂质含量可通过相干反斯托克斯拉曼散射(CARS)显微镜以无标记且无损的方式在体内成像。在本研究中,这两种技术都应用于产油微藻纤细角毛藻,这是一种在生物技术方面具有潜力的微藻,对常用的脂质染色技术具有抗性。脂质特异性CARS信号成功地与叶绿素的干扰双光子激发荧光分离,并且首次能够直接分析氮饥饿期间脂质滴的形成。我们发现,从CARS图像分析得出的中性脂质含量与重量法测量的中性脂质含量高度相关,此外,储存在脂质滴中的脂肪酸的相对不饱和度保持相似。有趣的是,细胞适应氮饥饿期间的脂质谱显示出两阶段特征,最初是脂肪酸循环利用,随后是从头合成脂质。这项工作证明了定量CARS显微镜作为一种用于任何微藻物种的无标记脂质分析技术的潜力,这对于未来的生物技术应用以及阐明微藻脂质积累过程高度相关。