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脂肪酸相关基因的表达促进了虾青素在……中的异源生产。 (原句中“in”后面缺少具体内容)

Expression of fatty acid related gene promotes astaxanthin heterologous production in .

作者信息

Sun Jin-Peng, Wei Xue-Hong, Cong Xiao-Mei, Zhang Wen-Hua, Qiu Le-Xin, Zang Xiao-Nan

机构信息

Key Laboratory of Marine Genetics and Breeding, Ocean University of China, Ministry of Education, Qingdao, China.

出版信息

Front Nutr. 2023 Mar 20;10:1130065. doi: 10.3389/fnut.2023.1130065. eCollection 2023.

Abstract

Natural astaxanthin is a high-value ketone carotenoid mainly derived from , which is an excellent antioxidant for human consumption. To study the role of lipids in accumulation of astaxanthin, the -derived astaxanthin synthesis pathway genes (β-carotene ketolase gene, and β-carotene hydroxylase gene, ) and fatty acid elongation gene (mitochondrial trans-2-enoyl-coa reductase gene, ) were heterologously co-expressed in . Zeaxanthin, the precursor of astaxanthin synthesis, was significantly increased after and were expressed. In contrast, the α-carotene that competes with astaxanthin synthesis for lycopene decreased significantly. This redistribution of carbon flow was conducive to the synthesis of astaxanthin. In addition, the transformant only expressed astaxanthin metabolism related genes (, ) would lead to an increase in total lipid, a decrease in monounsaturated fatty acids and an increase in polyunsaturated fatty acids. On this basis, the expression of gene further increased the total lipid, and the relative content of different fatty acids also changed. The astaxanthin content of algal strains transformed with and genes was nearly 50% higher than that of the wild type. On this basis, the astaxanthin content of transformants expressing gene related to long-chain fatty acid synthesis was increased by 227.5%. In this study, an astaxanthin production model similar to by combining carotenoid metabolism and fatty acid metabolism was constructed in . The results suggest that the increase in astaxanthin is indeed linked to the regulation of fatty acid metabolism, and this link may involve the type of fatty acids and the dynamics of astaxanthin ester in cells. The strategy of promoting the synthesis of fatty acids has potential to achieve efficient production of astaxanthin in .

摘要

天然虾青素是一种高价值的酮类胡萝卜素,主要来源于[具体来源未给出],是一种供人类食用的优秀抗氧化剂。为了研究脂质在虾青素积累中的作用,将[具体来源未给出]来源的虾青素合成途径基因(β-胡萝卜素酮酶基因,[具体基因名称未给出]和β-胡萝卜素羟化酶基因,[具体基因名称未给出])以及脂肪酸延长基因(线粒体反式-2-烯酰辅酶A还原酶基因,[具体基因名称未给出])在[具体宿主未给出]中进行异源共表达。虾青素合成的前体玉米黄质在[具体基因未给出]和[具体基因未给出]表达后显著增加。相反,与虾青素合成竞争番茄红素的α-胡萝卜素显著减少。这种碳流的重新分配有利于虾青素的合成。此外,仅表达虾青素代谢相关基因([具体基因名称未给出],[具体基因名称未给出])的转化体将导致总脂质增加、单不饱和脂肪酸减少和多不饱和脂肪酸增加。在此基础上,[具体基因未给出]基因的表达进一步增加了总脂质,不同脂肪酸的相对含量也发生了变化。用[具体基因未给出]和[具体基因未给出]基因转化的藻株的虾青素含量比野生型高出近50%。在此基础上,表达与长链脂肪酸合成相关的[具体基因未给出]基因的转化体的虾青素含量增加了227.5%。在本研究中,在[具体宿主未给出]中构建了一个通过结合类胡萝卜素代谢和脂肪酸代谢类似于[具体类似对象未给出]的虾青素生产模型。结果表明,虾青素的增加确实与脂肪酸代谢的调节有关,并且这种联系可能涉及脂肪酸的类型和细胞中虾青素酯的动态变化。促进脂肪酸合成的策略有可能在[具体宿主未给出]中实现虾青素的高效生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e94b/10067919/058a4015516d/fnut-10-1130065-g001.jpg

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