The Mina and Everard Goodman, Faculty of Life Sciences, Bar-Ilan University, Ramat-Gan 5290002, Israel.
The Mina and Everard Goodman, Faculty of Life Sciences, Bar-Ilan University, Ramat-Gan 5290002, Israel.
Bioresour Technol. 2021 Jun;329:124895. doi: 10.1016/j.biortech.2021.124895. Epub 2021 Feb 27.
Microalgae have gained significant importance in biotechnology development, providing valuable goods and services in multiple applications. Although there is a rising market for most of these applications, the incorporation and introduction of microalgae into new venues will extend in the near future. These advances are due to the vast biodiversity of microalgal species, recent genetic engineering tools, and culture techniques. There are three main possible approaches for novel algal compounds from: (1) recently isolated yet less known microalgae; (2) selectively stressed conditions; and (3) enzymatically adjusted compounds from conventional molecules. All these approaches can be combined in a specific manner. This review discusses the opportunities, potential and limitations of introducing novel microalgae-based products, and how the recent technologies can be deployed to make these products financially viable. To give an outlook to the future, an analysis of the developments and predicted future market that further enlarge the promise of cultivating microalgae for commercial purposes are considered.
微藻在生物技术发展中具有重要意义,在多种应用中提供有价值的商品和服务。尽管这些应用中的大多数都有不断增长的市场,但微藻在新领域的融入和引入将在不久的将来得到扩展。这些进展归功于微藻物种的广泛生物多样性、最近的遗传工程工具和培养技术。新型藻类化合物的主要有三种可能的方法:(1)最近分离但了解较少的微藻;(2)选择性胁迫条件;(3)常规分子的酶调整化合物。所有这些方法都可以以特定的方式组合。本文综述了引入新型基于微藻的产品的机会、潜力和限制,以及如何部署最近的技术使这些产品具有经济可行性。为了展望未来,对未来的发展和预测市场进行了分析,这些发展和预测市场进一步扩大了以商业目的培养微藻的前景。