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Colour bio-factories: Towards scale-up production of anthocyanins in plant cell cultures

机译:彩色生物工厂:致力于在植物细胞培养中大规模生产花青素

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摘要

Anthocyanins are widely distributed, glycosylated, water-soluble plant pigments, which give many fruits and flowers their red, purple or blue colouration. Their beneficial effects in a dietary context have encouraged increasing use of anthocyanins as natural colourants in the food and cosmetic industries. However, the limited availability and diversity of anthocyanins commercially have initiated searches for alternative sources of these natural colourants. In plants, high-level production of secondary metabolites, such as anthocyanins, can be achieved by engineering of regulatory genes as well as genes encoding biosynthetic enzymes. We have used tobacco lines which constitutively produce high levels of cyanidin 3-O-rutinoside, delphinidin 3-O-rutinoside or a novel anthocyanin, acylated cyanidin 3-O-(coumaroyl) rutinoside to generate cell suspension cultures. The cell lines are stable in their production rates and superior to conventional plant cell cultures. Scale-up of anthocyanin production in small scale fermenters has been demonstrated. The cell cultures have also proven to be a suitable system for production of 13C-labelled anthocyanins. Our method for anthocyanin production is transferable to other plant species, such as Arabidopsis thaliana, demonstrating the potential of this approach for making a wide range of highly-decorated anthocyanins. The tobacco cell cultures represent a customisable and sustainable alternative to conventional anthocyanin production platforms and have considerable potential for use in industrial and medical applications of anthocyanins.
机译:花青素是广泛分布的,糖基化的水溶性植物色素,可以使许多水果和花朵具有红色,紫色或蓝色。它们在饮食方面的有益作用鼓励了花色苷在食品和化妆品行业中越来越多地用作天然色素。然而,商业上花青素的有限可用性和多样性已经开始寻找这些天然着色剂的替代来源。在植物中,可以通过对调节基因以及编码生物合成酶的基因进行改造来实现次级代谢产物(如花青素)的高水平生产。我们使用的烟草系构成性地产生高水平的花青素3-O-芸香糖苷,飞燕草素3-O-芸香糖苷或新型花色苷,酰化花青素3-O-(香豆酰基)芸香苷来产生细胞悬浮培养物。细胞系的生产率稳定并且优于常规植物细胞培养物。已经证明小规模发酵罐中花青素的生产规模扩大。细胞培养物也被证明是生产 13 C标记的花色苷的合适系统。我们生产花色苷的方法可转移到其他植物物种,例如拟南芥,证明了这种方法在生产各种高度装饰性花色苷方面的潜力。烟草细胞培养物代表了常规花色苷生产平台的可定制且可持续的替代品,在花色苷的工业和医学应用中具有巨大的潜力。

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