加强藻类生产战略:菌种选择、人工智能培育和诱变

A. Alzahmi, Sarah Daakour, David Nelson, D. Al-Khairy, J. Twizere, K. Salehi-Ashtiani
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引用次数: 0

摘要

微藻类正在成为一种可持续的生物产品来源,包括食品、动物饲料、营养保健品和生物燃料。本综述强调了仔细选择合适物种的必要性,并强调了菌株优化的重要性,以提高开发藻类作为食品和生物材料生产的可持续资源的可行性。文章讨论了微藻生物勘探方法、不同类型的培养系统、微藻生物质产量以及利用废水进行培养等问题。论文强调了人工智能的进步,它可以优化藻类生产力,克服当前微藻产业面临的局限性。此外,论文还探讨了紫外诱变与高通量筛选相结合的潜力,将其作为一种在不引入外来遗传物质的情况下生成改良菌株的策略。我们认识到,必须采用多方面的优化方法来提高生产率。本综述概述了对微藻生产取得商业成功至关重要的最新进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing algal production strategies: strain selection, AI-informed cultivation, and mutagenesis
Microalgae are emerging as a sustainable source of bioproducts, including food, animal feed, nutraceuticals, and biofuels. This review emphasizes the need to carefully select suitable species and highlights the importance of strain optimization to enhance the feasibility of developing algae as a sustainable resource for food and biomaterial production. It discusses microalgal bioprospecting methods, different types of cultivation systems, microalgal biomass yields, and cultivation using wastewater. The paper highlights advances in artificial intelligence that can optimize algal productivity and overcome the limitations faced in current microalgal industries. Additionally, the potential of UV mutagenesis combined with high-throughput screening is examined as a strategy for generating improved strains without introducing foreign genetic material. The necessity of a multifaceted optimization approach for enhanced productivity is acknowledged. This review provides an overview of recent developments crucial for the commercial success of microalgal production.
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