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新型化学合成水杨酸酯衍生物作为诱导植物次生代谢产物生物合成的有效激发子。

Novel chemically synthesized salicylate derivative as an effective elicitor for inducing the biosynthesis of plant secondary metabolites.

作者信息

Qian Zhi-Gang, Zhao Zhen-Jiang, Xu Yufang, Qian Xuhong, Zhong Jian-Jiang

机构信息

State Key Laboratory of Bioreactor Engineering, Shanghai 200237, China.

出版信息

Biotechnol Prog. 2006 Jan-Feb;22(1):331-3. doi: 10.1021/bp0502330.

Abstract

Trifluoroethyl salicylate (TFESA), a novel salicylate derivative, was chemically synthesized and evaluated by bioassay as a potential elicitor for inducing the biosynthesis of plant secondary metabolites. A cell line of Taxus chinensis, which stably produced a high level of bioactive taxuyunnanine C (Tc), was taken as a model plant cell system. The application of TFESA to the cell cultures could significantly induce Tc biosynthesis, although the cell growth was slightly inhibited. More interestingly, Tc production was enhanced more in the presence of TFESA compared with a structure-similar well-known elicitor, salicylic acid (SA). For example, addition of 100 microM TFESA on day 7 led to a high Tc content of 21.9 +/- 0.1 mg g(-1) (at day 21), whereas the Tc content was 14.0 +/- 0.2 and 16.7 +/- 0.3 mg g(-1) for the control and that with addition of 100 microM SA, respectively. The results indicate that the newly synthesized TFESA can act as a powerful elicitor for secondary metabolism induction in plant cell cultures.

摘要

三氟乙基水杨酸酯(TFESA)是一种新型的水杨酸酯衍生物,通过化学合成并经生物测定评估其作为诱导植物次生代谢产物生物合成的潜在激发子的能力。以稳定产生高水平生物活性紫杉醇C(Tc)的中国红豆杉细胞系作为模式植物细胞系统。将TFESA应用于细胞培养物中可显著诱导Tc的生物合成,尽管细胞生长略有抑制。更有趣的是,与结构相似的著名激发子水杨酸(SA)相比,在TFESA存在下Tc的产量增加得更多。例如,在第7天添加100微摩尔TFESA导致在第21天Tc含量高达21.9±0.1毫克/克,而对照和添加100微摩尔SA时的Tc含量分别为14.0±0.2和16.7±0.3毫克/克。结果表明,新合成的TFESA可作为植物细胞培养中次生代谢诱导的强大激发子。

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