AsterBioChem Team, Laboratory of Pharmacognosy, School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo. Av. do Café s/n, Monte Alegre, Ribeirão Preto, SP, 14040-903, Brazil.
Strathclyde Institute of Pharmacy and Biomedical Sciences, University of Strathclyde. 161 Cathedral Street, Glasgow, G4 0RE, Scotland, United Kingdom.
Sci Rep. 2016 Jul 7;6:29265. doi: 10.1038/srep29265.
Tithonia diversifolia is an invasive weed commonly found in tropical ecosystems. In this work, we investigate the influence of different abiotic environmental factors on the plant's metabolite profile by multivariate statistical analyses of spectral data deduced by UHPLC-DAD-ESI-HRMS and NMR methods. Different plant part samples of T. diversifolia which included leaves, stems, roots, and inflorescences were collected from two Brazilian states throughout a 24-month period, along with the corresponding monthly environmental data. A metabolomic approach employing concatenated LC-MS and NMR data was utilised for the first time to study the relationships between environment and plant metabolism. A seasonal pattern was observed for the occurrence of metabolites that included sugars, sesquiterpenes lactones and phenolics in the leaf and stem parts, which can be correlated to the amount of rainfall and changes in temperature. The distribution of the metabolites in the inflorescence and root parts were mainly affected by variation of some soil nutrients such as Ca, Mg, P, K and Cu. We highlight the environment-metabolism relationship for T. diversifolia and the combined analytical approach to obtain reliable data that contributed to a holistic understanding of the influence of abiotic environmental factors on the production of metabolites in various plant parts.
黄秋英是一种常见于热带生态系统的入侵性杂草。在这项工作中,我们通过 UHPLC-DAD-ESI-HRMS 和 NMR 方法推导的光谱数据的多元统计分析,研究了不同非生物环境因素对植物代谢物谱的影响。我们从巴西的两个州收集了不同植物部位的黄秋英样本,包括叶子、茎、根和花序,以及相应的每月环境数据。这是首次采用串联 LC-MS 和 NMR 数据的代谢组学方法来研究环境与植物代谢之间的关系。我们观察到在叶子和茎部分代谢物的季节性模式,包括糖、倍半萜内酯和酚类物质,这可以与降雨量和温度变化相关联。花序和根部的代谢物分布主要受 Ca、Mg、P、K 和 Cu 等一些土壤养分的变化影响。我们强调了黄秋英的环境-代谢关系以及综合分析方法,以获得可靠的数据,有助于全面了解非生物环境因素对不同植物部位代谢产物产生的影响。