Scarsini Matteo, Thurotte Adrien, Veidl Brigitte, Amiard Frederic, Niepceron Frederick, Badawi Myriam, Lagarde Fabienne, Schoefs Benoît, Marchand Justine
Mer Molécules Santé, Le Mans University, IUML-FR 3473 CNRS, Le Mans, France.
Institute of Molecular Biosciences, Goethe University Frankfurt, Frankfurt, Germany.
Front Plant Sci. 2021 Nov 10;12:756421. doi: 10.3389/fpls.2021.756421. eCollection 2021.
Diatoms are feedstock for the production of sustainable biocommodities, including biofuel. The biochemical characterization of newly isolated or genetically modified strains is seminal to identify the strains that display interesting features for both research and industrial applications. Biochemical quantification of organic macromolecules cellular quotas are time-consuming methodologies which often require large amount of biological sample. Vibrational spectroscopy is an essential tool applied in several fields of research. A Fourier transform infrared (FTIR) microscopy-based imaging protocol was developed for the simultaneous cellular quota quantification of lipids, carbohydrates, and proteins of the diatom . The low amount of sample required for the quantification allows the high throughput quantification on small volume cultures. A proof of concept was performed (1) on nitrogen-starved experimental cultures and (2) on three different wild-type strains. The results are supported by the observation of lipid droplets by confocal and brightfield microscopy. The results show that major differences exist in the regulation of lipid metabolism between ecotypes of .
硅藻是包括生物燃料在内的可持续生物商品生产的原料。新分离或基因改造菌株的生化特性对于鉴定在研究和工业应用中具有有趣特征的菌株至关重要。有机大分子细胞配额的生化定量是耗时的方法,通常需要大量生物样本。振动光谱是应用于多个研究领域的重要工具。开发了一种基于傅里叶变换红外(FTIR)显微镜的成像方案,用于同时定量硅藻的脂质、碳水化合物和蛋白质的细胞配额。定量所需的样品量少,允许对小体积培养物进行高通量定量。在(1)氮饥饿实验培养物和(2)三种不同的野生型菌株上进行了概念验证。通过共聚焦和明场显微镜观察脂滴支持了结果。结果表明,不同生态型之间在脂质代谢调控方面存在主要差异。