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菌根真菌可提高贯叶连翘中金丝桃素和伪金丝桃素的浓度。

Hypericin and pseudohypericin concentrations of a valuable medicinal plant Hypericum perforatum L. are enhanced by arbuscular mycorrhizal fungi.

机构信息

Laboratory of Mycology, Institute of Botany, Jagiellonian University, Lubicz 46, Kraków, Poland.

出版信息

Mycorrhiza. 2012 Feb;22(2):149-56. doi: 10.1007/s00572-011-0391-1. Epub 2011 May 28.

Abstract

Hypericum perforatum L. (St. John's-wort, Hypericaceae) is a valuable medicinal plant species cultivated for pharmaceutical purposes. Although the chemical composition and pharmacological activities of H. perforatum have been well studied, no data are available concerning the influence of arbuscular mycorrhizal fungi (AMF) on this important herb. A laboratory experiment was therefore conducted in order to test three AMF inocula on H. perforatum with a view to show whether AMF could influence plant vitality (biomass and photosynthetic activity) and the production of the most valuable secondary metabolites, namely anthraquinone derivatives (hypericin and pseudohypericin) as well as the prenylated phloroglucinol-hyperforin. The following treatments were prepared: (1) control-sterile soil without AMF inoculation, (2) Rhizophagus intraradices (syn. Glomus intraradices), (3) Funneliformis mosseae (syn. Glomus mosseae), and (4) an AMF Mix which contained: Funneliformis constrictum (syn. Glomus constrictum), Funneliformis geosporum (syn. Glomus geosporum), F. mosseae, and R. intraradices. The application of R. intraradices inoculum resulted in the highest mycorrhizal colonization, whereas the lowest values of mycorrhizal parameters were detected in the AMF Mix. There were no statistically significant differences in H. perforatum shoot mass in any of the treatments. However, we found AMF species specificity in the stimulation of H. perforatum photosynthetic activity and the production of secondary metabolites. Inoculation with the AMF Mix resulted in higher photosynthetic performance index (PI(total)) values in comparison to all the other treatments. The plants inoculated with R. intraradices and the AMF Mix were characterized by a higher concentration of hypericin and pseudohypericin in the shoots. However, no differences in the content of these metabolites were detected after the application of F. mosseae. In the case of hyperforin, no significant differences were found between the control plants and those inoculated with any of the AMF applied. The enhanced content of anthraquinone derivatives and, at the same time, better plant vitality suggest that the improved production of these metabolites was a result of the positive effect of the applied AMF strains on H. perforatum. This could be due to improved mineral nutrition or to AMF-induced changes in the phytohormonal balance. Our results are promising from the biotechnological point of view, i.e. the future inoculation of H. perforatum with AMF in order to improve the quality of medicinal plant raw material obtained from cultivation.

摘要

贯叶金丝桃(贯叶连翘,藤黄科)是一种具有重要药用价值的植物,被广泛用于制药领域。尽管贯叶金丝桃的化学成分和药理活性已经得到了深入研究,但目前尚无关于丛枝菌根真菌(AMF)对这种重要草药影响的相关数据。因此,进行了一项实验室实验,以测试三种 AMF 接种体对贯叶金丝桃的影响,以期证明 AMF 是否可以影响植物活力(生物量和光合作用活性)以及产生最有价值的次生代谢产物,即蒽醌衍生物(金丝桃素和伪金丝桃素)以及prenylated phloroglucinol-hyperforin。以下是制备的处理方法:(1)无菌土壤对照,无 AMF 接种,(2)Rhizophagus intraradices(同义 Glomus intraradices),(3)Funneliformis mosseae(同义 Glomus mosseae),和(4)AMF Mix,其中包含:Funneliformis constrictum(同义 Glomus constrictum),Funneliformis geosporum(同义 Glomus geosporum),F. mosseae 和 R. intraradices。R. intraradices 接种体的应用导致最高的菌根定植,而 AMF Mix 中的菌根参数值最低。在任何处理中,贯叶金丝桃地上部分的生物量均无统计学差异。然而,我们发现 AMF 物种在刺激贯叶金丝桃光合作用和次生代谢产物产生方面具有特异性。与其他所有处理相比,接种 AMF Mix 可提高光合作用性能指数(PI(total))值。接种 R. intraradices 和 AMF Mix 的植物在地上部分的金丝桃素和伪金丝桃素浓度更高。然而,接种 F. mosseae 后,这些代谢物的含量没有差异。就 hyperforin 而言,对照植物与任何应用的 AMF 接种植物之间没有发现显著差异。蒽醌衍生物含量的增加,同时植物活力的提高表明,这些代谢物产量的提高是由于应用的 AMF 菌株对贯叶金丝桃的积极影响。这可能是由于矿物质营养的改善,或者是由于 AMF 诱导的植物激素平衡变化。从生物技术的角度来看,我们的结果是有希望的,即未来可以用 AMF 接种贯叶金丝桃,以提高从栽培中获得的药用植物原料的质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3564/3261393/123d30049244/572_2011_391_Fig1_HTML.jpg

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