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高山火绒草生态型的代谢变化与其与真菌的相互作用有关。

Metabolic variation in Cistus monspeliensis L. ecotypes correlated to their plant-fungal interactions.

机构信息

Natural Products Laboratory, Institute of Biology, Leiden University, Sylviusweg 72, 2333, BE Leiden, the Netherlands.

Natural Products Laboratory, Institute of Biology, Leiden University, Sylviusweg 72, 2333, BE Leiden, the Netherlands; Department of Pharmacy and Biotechnology, University of Bologna, Via Irnerio 42, 40126, Bologna, Italy.

出版信息

Phytochemistry. 2020 Aug;176:112402. doi: 10.1016/j.phytochem.2020.112402. Epub 2020 May 28.

Abstract

The effect of environmental factors on the chemical composition of plants eventually resulting in plant growth regulation is an age-old issue in plant biology. Nowadays, the acceleration in changes in environmental conditions (e.g. global warming) can act as an incentive to investigate their correlation with metabolic changes. In this study, Cistus monspeliensis plants grown on the island of Sardinia (Italy) were used to explore the geographical-mediated metabolic variation and its repercussion on plant-fungus interactions. Samples of different ecotypes of C. monspeliensis were collected and chemically profiled by H NMR and HPTLC-based metabolomics and the relationship between the variations of biological activity was examined by multivariate data analysis. The ecotypes, collected from different geographical zones and altitudes, exhibited clearly distinguishable chemical profiles, particularly in their terpene and phenolic contents. In particular, multivariate data analysis revealed several diterpenes of the labdane and clerodane series among the terpenes and methoxyflavonoids to be responsible for the differentiation. The antifungal activity of the plants was used to explore the correlation between chemical variation and biological activity. Results showed that there was a strong correlation between the metabolic profiles and the antifungal activity, revealing terpenes and methoxylated flavonoids as the main involved metabolites. This demonstrated that environmental factors can influence the chemical variation of plant ecotypes, resulting in the generation of chemotypes that are potentially adapted to their niche conditions including the plant-fungal interactions.

摘要

环境因素对植物化学成分的影响,最终导致植物生长调节,这是植物生物学中的一个古老问题。如今,环境条件(例如全球变暖)的变化加速,可以促使人们研究它们与代谢变化的相关性。在这项研究中,使用生长在撒丁岛(意大利)的 Cistus monspeliensis 植物来探索地理介导的代谢变化及其对植物-真菌相互作用的影响。收集了不同生态型的 C. monspeliensis 样本,并通过基于 1H NMR 和 HPTLC 的代谢组学进行了化学分析,并通过多元数据分析研究了生物活性变化之间的关系。从不同地理区域和海拔采集的生态型表现出明显可区分的化学特征,特别是在萜类和酚类含量方面。特别是,多元数据分析显示,萜类化合物中存在几种贝壳杉烷和克来烷系列的二萜类化合物,以及甲氧基黄酮类化合物,这是导致分化的原因。植物的抗真菌活性被用来探索化学变异与生物活性之间的相关性。结果表明,代谢谱与抗真菌活性之间存在很强的相关性,表明萜类化合物和甲氧基化黄酮类化合物是主要的相关代谢物。这表明环境因素可以影响植物生态型的化学变异,从而产生可能适应其生态位条件的化学型,包括植物-真菌相互作用。

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