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植物细胞培养中的生育酚生产。

Tocopherol production in plant cell cultures.

机构信息

C.N.R. - Istituto di Scienze delle Produzioni Alimentari, Lecce, Italy.

出版信息

Mol Nutr Food Res. 2010 May;54(5):726-30. doi: 10.1002/mnfr.200900397.

Abstract

Tocopherols, collectively known as vitamin E, are lipophilic antioxidants, essential dietary components for mammals and exclusively synthesized by photosynthetic organisms. Of the four forms (alpha, beta, gamma and delta), alpha-tocopherol is the major vitamin E form present in green plant tissues, and has the highest vitamin E activity. Synthetic alpha-tocopherol, being a racemic mixture of eight different stereoisomers, always results less effective than the natural form (R,R,R) alpha-tocopherol. This raises interest in obtaining this molecule from natural sources, such as plant cell cultures. Plant cell and tissue cultures are able to produce and accumulate valuable metabolites that can be used as food additives, nutraceuticals and pharmaceuticals. Sunflower cell cultures, growing under heterotrophic conditions, were exploited to establish a suitable in vitro production system of natural alpha-tocopherol. Optimization of culture conditions, precursor feeding and elicitor application were used to improve the tocopherol yields of these cultures. Furthermore, these cell cultures were useful to investigate the relationship between alpha-tocopherol biosynthesis and photomixotrophic culture conditions, revealing the possibility to enhance tocopherol production by favouring sunflower cell photosynthetic properties. The modulation of alpha-tocopherol levels in plant cell cultures can provide useful hints for a regulatory impact on tocopherol metabolism.

摘要

生育酚,统称维生素 E,是亲脂性抗氧化剂,是哺乳动物必需的膳食成分,只能由光合生物合成。在四种形式(α、β、γ和δ)中,α-生育酚是绿色植物组织中主要的维生素 E 形式,具有最高的维生素 E 活性。合成的α-生育酚是八种不同立体异构体的外消旋混合物,其效果总是不如天然形式(R,R,R)α-生育酚。这引起了人们从天然来源(如植物细胞培养物)获取这种分子的兴趣。植物细胞和组织培养能够产生和积累有价值的代谢产物,可作为食品添加剂、营养保健品和药物使用。在异养条件下生长的向日葵细胞培养物被用来建立一个合适的体外生产天然α-生育酚的系统。通过优化培养条件、前体喂养和诱导剂应用,提高了这些培养物的生育酚产量。此外,这些细胞培养物还可用于研究α-生育酚生物合成与光混合培养条件之间的关系,揭示了通过促进向日葵细胞光合作用特性来提高生育酚产量的可能性。调节植物细胞培养物中的α-生育酚水平可为调节生育酚代谢提供有用的线索。

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