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一种在光合营养和异养营养中能够积累虾青素和角黄素的快速生长产油菌株。

A Fast-Growing Oleaginous Strain of Capable of Astaxanthin and Canthaxanthin Accumulation in Phototrophy and Heterotrophy.

作者信息

Corato Amélie, Le Thanh Tung, Baurain Denis, Jacques Philippe, Remacle Claire, Franck Fabrice

机构信息

Laboratory of Bioenergetics, InBios/PhytoSystems, Department of Life Sciences, University of Liege, Chemin de la Vallée 4, 4000 Liege, Belgium.

Genetics and Physiology of Microalgae, InBios/PhytoSystems, Department of Life Sciences, University of Liege, Chemin de la Vallée 4, 4000 Liege, Belgium.

出版信息

Life (Basel). 2022 Feb 23;12(3):334. doi: 10.3390/life12030334.

Abstract

Considering the importance of microalgae as a promising feedstock for the production of both low- and high-value products, such as lipids and pigments, it is desirable to isolate strains which simultaneously accumulate these two types of products and grow in various conditions in order to widen their biotechnological applicability. A novel freshwater strain from the genus was isolated in Belgium. Compared to other species, the isolate presented rapid growth in phototrophy, dividing 3.5 times per day at a light intensity of 400 µmol·m·s and 5% CO. In addition, nitrogen depletion was associated with the accumulation of astaxanthin, canthaxanthin, and fatty acids, which reached ~30% of dry weight, and a majority of SFAs and MUFAs, which are good precursors for biodiesel. This strain also accumulated astaxanthin and canthaxanthin in heterotrophy. Although the content was very low in this latter condition, it is an interesting feature considering the biotechnological potential of the microalgal heterotrophic growth. Thus, due to its rapid growth in the light, its carotenogenesis, and its fatty acids characteristics, the newly identified strain could be considered as a potential candidate for biorefinery purposes of both low- and high-values products.

摘要

考虑到微藻作为生产低价值和高价值产品(如脂质和色素)的有前景的原料的重要性,为了扩大其生物技术适用性,分离出能同时积累这两类产品并能在各种条件下生长的菌株是很有必要的。在比利时分离出了一种来自该属的新型淡水菌株。与其他该属物种相比,该分离株在光养条件下生长迅速,在光照强度为400 µmol·m·s和5%二氧化碳的条件下每天分裂3.5次。此外,氮耗尽与虾青素、角黄素和脂肪酸的积累有关,这些物质占干重的~30%,还有大量饱和脂肪酸和单不饱和脂肪酸,它们是生物柴油的良好前体。该菌株在异养条件下也积累了虾青素和角黄素。尽管在后一种条件下含量很低,但考虑到微藻异养生长的生物技术潜力,这是一个有趣的特征。因此,由于其在光照下的快速生长、类胡萝卜素生成以及脂肪酸特性,新鉴定的该菌株可被视为用于生产低价值和高价值产品的生物精炼目的的潜在候选菌株。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3da/8955800/b5bbad8d5901/life-12-00334-g001.jpg

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