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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhancing lutein productivity of an indigenous microalga Scenedesmus obliquus FSP-3 using light-related strategies
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Enhancing lutein productivity of an indigenous microalga Scenedesmus obliquus FSP-3 using light-related strategies

机译:使用光相关策略提高本地微藻斜生海藻FSP-3的叶黄素生产率

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摘要

Lutein, one of the main photosynthetic pigments, is a promising natural product with both nutritional and pharmaceutical applications. In this study, light-related strategies were applied to enhance the cell growth and lutein production of a lutein-rich microalga Scenedesmus obliquus FSP-3. The results demonstrate that using white LED resulted in better lutein production efficiency when compared to the other three monochromatic LEDs (red, blue, and green). The lutein productivity of S. obliquus FSP-3 was further improved by adjusting the type of light source and light intensity. The optimal lutein productivity of 4.08 mg/L/d was obtained when using a TL5 fluorescent lamp at a light intensity of 300 μmol/m~2/s, and this performance is better than that reported in most related studies. Moreover, the time-course profile of lutein accumulation in the microalga shows that the maximal lutein content and productivity were obtained at the onset of nitrogen depletion.
机译:叶黄素是主要的光合色素之一,是一种有前途的天然产品,在营养和药物方面均得到应用。在这项研究中,与光有关的策略被应用来增强富含叶黄素的微藻斜生场景藻FSP-3的细胞生长和叶黄素的产生。结果表明,与其他三个单色LED(红色,蓝色和绿色)相比,使用白色LED可以提高叶黄素的生产效率。通过调节光源的类型和光强度,进一步提高了斜生链球菌FSP-3的叶黄素生产率。当使用TL5荧光灯在300μmol/ m〜2 / s的光强度下获得的最佳叶黄素生产率为4.08 mg / L / d,该性能优于大多数相关研究报道的水平。此外,叶绿素在微藻中的积累的时程图表明,在氮耗尽时,叶黄素的最大含量和生产率最高。

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