Fu Weiqi, Wichuk Kristine, Brynjólfsson Sigurður
Center for Systems Biology, University of Iceland, Reykjavík 101, Iceland; Division of Science and Math, New York University Abu Dhabi and Center for Genomics and Systems Biology (CGSB), New York University Abu Dhabi Institute, P.O. Box 129188, Abu Dhabi, United Arab Emirates; Faculty of Industrial Engineering, Mechanical Engineering and Computer Science, School of Engineering and Natural Sciences, University of Iceland, Reykjavík 101, Iceland.
Center for Systems Biology, University of Iceland, Reykjavík 101, Iceland.
N Biotechnol. 2015 Dec 25;32(6):547-51. doi: 10.1016/j.nbt.2015.03.016. Epub 2015 Apr 13.
As a major primary producer in marine environments, diatoms have been considered as promising feedstocks for their applications in functional foods, bioactive pharmaceuticals, and cosmetics. This review focuses on the biotechnology potential of diatoms for value-added products like carotenoids. The impact of abiotic environmental stresses, such as intensity and quality of incident light, nutrient deficiency and silicon depletion, on diatoms has been examined to determine key factors that affect the growth performance and the accumulation of valuable compounds. Previous studies suggested that adaptive evolution could be an efficient method to improve the diatom productivity of valuable compounds. Light emitting diode (LED)-based photobioreactors were introduced and proposed as a promising new technology for producing quality products from diatoms. Currently available molecular biology tools were also summarized and discussed in relation to their application in the production of carotenoids and other valuable products. Taken together, systems biology and synthetic biology approaches have the potential to address the challenges faced while working toward the industrial application of diatoms.
作为海洋环境中的主要初级生产者,硅藻被认为是功能性食品、生物活性药物和化妆品应用中很有前景的原料。本综述聚焦于硅藻在类胡萝卜素等增值产品方面的生物技术潜力。已研究了非生物环境胁迫,如入射光的强度和质量、营养缺乏和硅耗竭对硅藻的影响,以确定影响生长性能和有价值化合物积累的关键因素。先前的研究表明,适应性进化可能是提高硅藻有价值化合物生产力的有效方法。引入了基于发光二极管(LED)的光生物反应器,并将其作为从硅藻生产优质产品的一种有前景的新技术。还总结并讨论了目前可用的分子生物学工具及其在类胡萝卜素和其他有价值产品生产中的应用。综上所述,系统生物学和合成生物学方法有潜力应对在硅藻工业应用过程中面临的挑战。