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通过根际细菌和衍生激发子在幼苗和芽培养物中诱导贯叶金丝桃的次生代谢。

Elicitation of secondary metabolism in Hypericum perforatum by rhizosphere bacteria and derived elicitors in seedlings and shoot cultures.

机构信息

Universidad San Pablo CEU, Boadilla del Monte, Madrid, Spain.

出版信息

Pharm Biol. 2012 Oct;50(10):1201-9. doi: 10.3109/13880209.2012.664150. Epub 2012 Aug 20.

Abstract

CONTEXT

Hypericum perforatum L. (Guttiferae) appears as an alternative treatment to mild and moderate depression and been traditionally used as a health enhancer based on the phytochemicals hyperforin and hypericin. However, field grown medicinal plants show variable levels of phytopharmaceuticals depending on environmental conditions. Elicitation is a good strategy to trigger secondary metabolism.

OBJECTIVE

This study explored the ability of 6 rhizobacterial strains to trigger secondary metabolism in H. perforatum seedlings and molecular elicitors from the most effective strain N5.18 were tested in shoot cultures.

MATERIALS AND METHODS

Hypericin and pseudohypericin were determined on seedlings and shoot cultures by HPLC. Three putative elicitors from bacterial culture media were assayed in three different concentrations.

RESULTS

Strain N5.18 significantly increased hypericin up to 1.2 ppm and pseudohypericin up to 3.4 ppm, over controls (0.3 and 2.5 ppm, respectively) when delivered to seedlings. In shoot cultures, only pseudohypericin was detected (168.9 ppm) and significant increases were observed under the different elicitors, reaching values of 3164.8 ppm with small elicitors in the middle concentration.

DISCUSSION AND CONCLUSION

Secondary metabolism in plants is highly inducible due to its role in plant communication and defense. Our findings demonstrate that some beneficial bacterial strains are able to trigger secondary metabolism in H. perforatum plants when delivered through the roots and bacterial determinants released to culture media are able to reproduce the effect in shoot cultures. Therefore, these elicitors have great potential to enhance phytopharmaceutical production.

摘要

背景

贯叶金丝桃(藤黄科)作为轻度和中度抑郁症的替代疗法出现,其基于 hyperforin 和 hypericin 等植物化学物质,传统上被用作增强健康的物质。然而,田间生长的药用植物由于环境条件的不同,其植物药的含量也有所不同。激发是触发次生代谢的一种很好的策略。

目的

本研究探索了 6 株根际细菌菌株在贯叶金丝桃幼苗中触发次生代谢的能力,并测试了最有效的菌株 N5.18 的分子激发子在芽培养中的作用。

材料和方法

通过 HPLC 测定幼苗和芽培养物中的金丝桃素和伪金丝桃素。在三种不同浓度下,检测了来自细菌培养基的三种假定的激发子。

结果

当菌株 N5.18 被输送到幼苗中时,与对照(分别为 0.3 和 2.5 ppm)相比,金丝桃素显著增加到 1.2 ppm,伪金丝桃素增加到 3.4 ppm。在芽培养物中,仅检测到伪金丝桃素(168.9 ppm),并且在不同的激发子下观察到显著增加,在中间浓度下,小激发子达到 3164.8 ppm 的值。

讨论与结论

由于次生代谢在植物通讯和防御中的作用,植物的次生代谢具有很强的诱导性。我们的研究结果表明,当通过根部输送时,一些有益的细菌菌株能够触发贯叶金丝桃植物的次生代谢,并且释放到培养基中的细菌决定因素能够在芽培养物中重现这种效果。因此,这些激发子具有增强植物药生产的巨大潜力。

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