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Biotechnological production of value-added carotenoids from microalgae

机译:从微藻类生物技术生产增值类胡萝卜素

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We recently evaluated the relationship between abiotic environmental stresses and lutein biosynthesis in the green microalga Dunaliella salina and suggested a rational design of stress-driven adaptive evolution experiments for carotenoids production in microalgae. Here, we summarize our recent findings regarding the biotechnological production of carotenoids from microalgae and outline emerging technology in this field. Carotenoid metabolic pathways are characterized in several representative algal species as they pave the way for biotechnology development. The adaptive evolution strategy is highlighted in connection with enhanced growth rate and carotenoid metabolism. In addition, available genetic modification tools are described, with emphasis on model species. A brief discussion on the role of lights as limiting factors in carotenoid production in microalgae is also included. Overall, our analysis suggests that light-driven metabolism and the photosynthetic efficiency of microalgae in photobioreactors are the main bottlenecks in enhancing biotechnological potential of carotenoid production from microalgae.
机译:我们最近评估了绿色微藻盐沼中非生物环境胁迫与叶黄素生物合成之间的关系,并提出了合理设计应力驱动的适应性进化实验的方法,用于微藻中类胡萝卜素的生产。在这里,我们总结了有关微藻类胡萝卜素生物技术生产的最新发现,并概述了该领域的新兴技术。类胡萝卜素代谢途径的特征在于几种代表性的藻类,因为它们为生物技术的发展铺平了道路。与提高的生长速度和类胡萝卜素代谢有关,强调了适应性进化策略。此外,描述了可用的遗传修饰工具,重点是模型物种。还简要讨论了光作为微藻类胡萝卜素生产中的限制因素的作用。总体而言,我们的分析表明,光驱动代谢和光生物反应器中微藻的光合效率是增强微藻类胡萝卜素生产生物技术潜力的主要瓶颈。

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