Division of Environmental Science and Ecological Engineering, Korea University, Seoul 02841, Republic of Korea.
Division of Environmental Science and Ecological Engineering, Korea University, Seoul 02841, Republic of Korea; Institute of Green Manufacturing Technology, Korea University, Seoul 02841, Republic of Korea.
Bioresour Technol. 2022 Jan;344(Pt A):126206. doi: 10.1016/j.biortech.2021.126206. Epub 2021 Oct 26.
The interest in developing microalgae for industrial use has been increasing because of concerns about the depletion of petroleum resources and securing sustainable energy sources. Microalgae have high biomass productivity and short culture periods. However, despite these advantages, various barriers need to be overcome for industrial applications. Microalgal cultivation has a high unit price, thus rendering industrial application difficult. It is indispensably necessary to co-produce their primary and secondary metabolites to compensate for these shortcomings. In this regard, this article reviews the following aspects, (1) co-production of primary and secondary metabolites in microalgae, (2) induction methods for the promotion of the biosynthesis of secondary metabolites, and (3) perspectives on the co-production and co-extraction of primary and secondary metabolites. This paper presents various approaches for producing useful metabolites from microalgae and suggests strategies that can be utilized for the co-production of primary and secondary metabolites.
由于对石油资源枯竭和确保可持续能源的担忧,开发微藻用于工业用途的兴趣日益增加。微藻具有较高的生物质生产力和较短的培养周期。然而,尽管有这些优势,但其在工业应用中仍需要克服各种障碍。微藻培养的单价较高,因此使得工业应用变得困难。不可避免地需要共同生产其初级和次级代谢产物来弥补这些缺点。在这方面,本文综述了以下几个方面:(1)微藻中初级和次级代谢产物的共生产;(2)促进次生代谢物生物合成的诱导方法;(3)初级和次级代谢产物共生产和共提取的展望。本文提出了从微藻中生产有用代谢物的各种方法,并提出了可用于初级和次级代谢产物共生产的策略。