UMR CNRS 7266 LIENSs, La Rochelle Université, 17042 La Rochelle, France.
UR 4312 CBSA, Université de Rouen Normandie, 27000 Évreux, France.
Mar Drugs. 2022 Aug 17;20(8):524. doi: 10.3390/md20080524.
For more than 40 years, marine microorganisms have raised great interest because of their major ecological function and their numerous applications for biotechnology and pharmacology. Particularly, Archaea represent a resource of great potential for the identification of new metabolites because of their adaptation to extreme environmental conditions and their original metabolic pathways, allowing the synthesis of unique biomolecules. Studies on archaeal carotenoids are still relatively scarce and only a few works have focused on their industrial scale production and their biotechnological and pharmacological properties, while the societal demand for these bioactive pigments is growing. This article aims to provide a comprehensive review of the current knowledge on carotenoid metabolism in Archaea and the potential applications of these pigments in biotechnology and medicine. After reviewing the ecology and classification of these microorganisms, as well as their unique cellular and biochemical characteristics, this paper highlights the most recent data concerning carotenoid metabolism in Archaea, the biological properties of these pigments, and biotechnological considerations for their production at industrial scale.
四十多年来,海洋微生物因其重要的生态功能以及在生物技术和药理学方面的广泛应用而引起了极大的兴趣。特别是,古菌由于能够适应极端环境条件和具有原始的代谢途径,因此成为了鉴定新代谢物的重要资源,能够合成独特的生物分子。关于古菌类胡萝卜素的研究仍然相对较少,只有少数工作集中在它们的工业规模生产及其生物技术和药理学特性上,而对这些生物活性色素的社会需求正在增长。本文旨在对古菌类胡萝卜素代谢及其在生物技术和医学中的潜在应用的最新知识进行综述。在回顾了这些微生物的生态学和分类以及它们独特的细胞和生化特性之后,本文重点介绍了关于古菌类胡萝卜素代谢、这些色素的生物学特性以及在工业规模生产方面的生物技术考虑因素的最新数据。