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海洋来源的土曲霉中化学多样性和生物活性的生物勘探

Bioprospecting Chemical Diversity and Bioactivity in a Marine Derived Aspergillus terreus.

作者信息

Adpressa Donovon A, Loesgen Sandra

机构信息

Department of Chemistry, Oregon State University, Corvallis, Oregon 97331, USA, (phone: +01 541-737-1690).

出版信息

Chem Biodivers. 2016 Feb;13(2):253-9. doi: 10.1002/cbdv.201500310.

Abstract

A comparative metabolomic study of a marine derived fungus (Aspergillus terreus) grown under various culture conditions is presented. The fungus was grown in eleven different culture conditions using solid agar, broth cultures, or grain based media (OSMAC). Multivariate analysis of LC/MS data from the organic extracts revealed drastic differences in the metabolic profiles and guided our subsequent isolation efforts. The compound 7-desmethylcitreoviridin was isolated and identified, and is fully described for the first time. In addition, 16 known fungal metabolites were also isolated and identified. All compounds were elucidated by detailed spectroscopic analysis and tested for antibacterial activities against five human pathogens and tested for cytotoxicity. This study demonstrates that LC/MS based multivariate analysis provides a simple yet powerful tool to analyze the metabolome of a single fungal strain grown under various conditions. This approach allows environmentally-induced changes in metabolite expression to be rapidly visualized, and uses these differences to guide the discovery of new bioactive molecules.

摘要

本文介绍了对一种海洋来源真菌(土曲霉)在不同培养条件下生长的比较代谢组学研究。该真菌在使用固体琼脂、肉汤培养或谷物基培养基(OSMAC)的11种不同培养条件下生长。对有机提取物的LC/MS数据进行多变量分析,揭示了代谢谱的巨大差异,并指导了我们后续的分离工作。化合物7-去甲基黄绿青霉素被分离并鉴定,首次对其进行了全面描述。此外,还分离并鉴定了16种已知的真菌代谢产物。所有化合物均通过详细的光谱分析进行了阐明,并测试了对五种人类病原体的抗菌活性以及细胞毒性。这项研究表明,基于LC/MS的多变量分析提供了一个简单而强大的工具,用于分析在各种条件下生长的单一真菌菌株的代谢组。这种方法能够快速直观地呈现环境诱导的代谢物表达变化,并利用这些差异来指导新生物活性分子的发现。

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