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通过代谢工程提高番茄果实中促进健康的叶黄素和玉米黄质含量。

Enrichment of health-promoting lutein and zeaxanthin in tomato fruit through metabolic engineering.

作者信息

Wu Yanjun, Yuan Yong, Jiang Wenqian, Zhang Xin, Ren Siyan, Wang Hsihua, Zhang Xiaolan, Zhang Yang

机构信息

Key Laboratory of Bio-resource and Eco-environment of Ministry of Education, College of Life Sciences, Sichuan University, Chengdu, 610064, China.

Sanya Institute of China Agricultural University, Sanya, 572025, China.

出版信息

Synth Syst Biotechnol. 2022 Aug 24;7(4):1159-1166. doi: 10.1016/j.synbio.2022.08.005. eCollection 2022 Dec.

Abstract

Carotenoids constitute a large group of natural pigments widely distributed in nature. These compounds not only provide fruits and flowers with distinctive colors, but also have significant health benefits for humans. Lutein and zeaxanthin, both oxygen-containing carotenoids, are considered to play vital roles in promoting ocular development and maintaining eye health. However, humans and mammals cannot synthesize these carotenoid derivatives, which can only be taken from certain fruits or vegetables. Here, by introducing four endogenous synthetic genes, and under fruit-specific promoters, we report the metabolic engineering of lutein/zeaxanthin biosynthesis in tomato fruit. Transgenic lines overexpression of one (), two ( and ; and ), and all these four synthetic genes re-established the lutein/zeaxanthin biosynthetic pathways in the ripe tomato fruit and thus resulted in various types of carotenoid riched lines. Metabolic analyses of these engineered tomato fruits showed the strategy involved expression of tends to produce α-carotene and lutein, as well as a higher content of β-carotene and zeaxanthin was detected in lines overexpressing . In addition, the different combinations of engineered tomatoes with riched carotenoids showed higher antioxidant capacity and were associated with a significantly extended shelf life during postharvest storage. This work provides a successful example of accurate metabolic engineering in tomato fruit, suggesting the potential utility for synthetic biology to improve agronomic traits in crops. These biofortified tomato fruits could be also exploited as new research subjects for studying the health benefits of carotenoid derivatives.

摘要

类胡萝卜素是一大类广泛分布于自然界的天然色素。这些化合物不仅赋予果实和花朵独特的颜色,还对人类健康有显著益处。叶黄素和玉米黄质这两种含氧类胡萝卜素,被认为在促进眼部发育和维持眼部健康方面发挥着至关重要的作用。然而,人类和哺乳动物无法合成这些类胡萝卜素衍生物,它们只能从某些水果或蔬菜中获取。在此,通过在果实特异性启动子下引入四个内源性合成基因,我们报道了番茄果实中叶黄素/玉米黄质生物合成的代谢工程。过表达一个()、两个(和;和)以及所有这四个合成基因的转基因株系在成熟番茄果实中重新建立了叶黄素/玉米黄质生物合成途径,从而产生了各种富含类胡萝卜素的株系。对这些工程番茄果实的代谢分析表明,涉及表达的策略倾向于产生α-胡萝卜素和叶黄素,并且在过表达的株系中检测到更高含量的β-胡萝卜素和玉米黄质。此外,富含类胡萝卜素的工程番茄的不同组合显示出更高的抗氧化能力,并且在采后储存期间与显著延长的货架期相关。这项工作为番茄果实中的精确代谢工程提供了一个成功的例子,表明合成生物学在改善作物农艺性状方面的潜在效用。这些生物强化的番茄果实也可作为研究类胡萝卜素衍生物健康益处的新研究对象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db7c/9445293/67ee2210c83c/gr1.jpg

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