Department of Medicine and Life Sciences, Universitat Pompeu Fabra, Barcelona, Spain.
Department of Biology, Healthcare and the Environment, Faculty of Pharmacy and Food Science, Universitat de Barcelona, Barcelona, Spain.
Plant Sci. 2023 Sep;334:111776. doi: 10.1016/j.plantsci.2023.111776. Epub 2023 Jun 19.
Novel approaches to optimize the production of plant specialized metabolites are crucial to reach maximum productivity of plant biofactories. Plant polyploidization frequently enhances protein synthesis and thereby increases the biosynthesis of specialized metabolites. Paclitaxel is a valuable anticancer agent scarcely produced in nature. Therefore, plant biofactories represent a sustainable alternative source of this compound and related taxanes. With the aim of improving the productivity of Taxus spp. cell cultures, we induced polyploidy in vitro by treating immature embryos of Taxus baccata with colchicine. To obtain the polyploid cell lines, calli were induced from T. baccata plantlets previously treated with colchicine and ploidy levels were accurately identified using flow cytometry. In terms of cell morphology, tetraploid cells were about 3-fold bigger than the diploid cells. The expression of taxane pathway genes was higher in the tetraploid cell line compared to the diploid cells. Moreover, taxane production was 6.2-fold higher and the production peak was achieved 8 days earlier than in the diploid cell line, indicating a higher productivity. The obtained tetraploid cell line proved to be highly productive, constituting a step forward towards the development of a bio-sustainable production system for this chemotherapeutic drug.
优化植物次生代谢产物生产的新方法对于达到植物生物工厂的最大生产力至关重要。植物多倍化通常会增强蛋白质的合成,从而增加次生代谢产物的生物合成。紫杉醇是一种有价值的抗癌药物,在自然界中很少产生。因此,植物生物工厂是这种化合物和相关紫杉烷的可持续替代来源。为了提高 Taxus spp. 细胞培养物的生产力,我们通过用秋水仙素处理欧洲红豆杉的未成熟胚胎在体外诱导多倍体。为了获得多倍体细胞系,我们从用秋水仙素处理过的 Taxus baccata 植物体中诱导出愈伤组织,并使用流式细胞术准确鉴定出倍性水平。在细胞形态方面,四倍体细胞比二倍体细胞大约大三倍。与二倍体细胞相比,多倍体细胞系中紫杉烷途径基因的表达更高。此外,紫杉烷的产量高出 6.2 倍,产量峰值比二倍体细胞系提前 8 天达到,表明生产力更高。获得的四倍体细胞系证明具有很高的生产力,这是朝着开发这种化疗药物的生物可持续生产系统迈出的一步。