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New strategies to study in depth the metabolic mechanism of astaxanthin biosynthesis in <italic>Phaffia rhodozyma</italic>.

Authors :
Li, Zhipeng
You, Li
Du, Xiping
Yang, Haoyi
Yang, Liang
Zhu, Yanbing
Li, Lijun
Jiang, Zedong
Li, Qingbiao
He, Ning
Lin, Rui
Chen, Zhen
Ni, Hui
Source :
Critical Reviews in Biotechnology. May2024, p1-19. 19p. 5 Illustrations, 1 Chart.
Publication Year :
2024

Abstract

AbstractAstaxanthin, a ketone carotenoid known for its high antioxidant activity, holds significant potential for application in nutraceuticals, aquaculture, and cosmetics. The increasing market demand necessitates a higher production of astaxanthin using &lt;italic&gt;Phaffia rhodozyma&lt;/italic&gt;. Despite extensive research efforts focused on optimizing fermentation conditions, employing mutagenesis treatments, and utilizing genetic engineering technologies to enhance astaxanthin yield in &lt;italic&gt;P. rhodozyma&lt;/italic&gt;, progress in this area remains limited. This review provides a comprehensive summary of the current understanding of rough metabolic pathways, regulatory mechanisms, and preliminary strategies for enhancing astaxanthin yield. However, further investigation is required to fully comprehend the intricate and essential metabolic regulation mechanism underlying astaxanthin synthesis. Specifically, the specific functions of key genes, such as &lt;italic&gt;crtYB&lt;/italic&gt;, &lt;italic&gt;crtS&lt;/italic&gt;, and &lt;italic&gt;crtI&lt;/italic&gt;, need to be explored in detail. Additionally, a thorough understanding of the action mechanism of bifunctional enzymes and alternative splicing products is imperative. Lastly, the regulation of metabolic flux must be thoroughly investigated to reveal the complete pathway of astaxanthin synthesis. To obtain an in-depth mechanism and improve the yield of astaxanthin, this review proposes some frontier methods, including: omics, genome editing, protein structure-activity analysis, and synthetic biology. Moreover, it further elucidates the feasibility of new strategies using these advanced methods in various effectively combined ways to resolve these problems mentioned above. This review provides theory and method for studying the metabolic pathway of astaxanthin in &lt;italic&gt;P. rhodozyma&lt;/italic&gt; and the industrial improvement of astaxanthin, and provides new insights into the flexible combined use of multiple modern advanced biotechnologies. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07388551
Database :
Academic Search Index
Journal :
Critical Reviews in Biotechnology
Publication Type :
Academic Journal
Accession number :
177450944
Full Text :
https://doi.org/10.1080/07388551.2024.2344578