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在帕劳采集的样本中,隐匿种解释了看似特殊的次生代谢产物。

Cryptic Species Account for the Seemingly Idiosyncratic Secondary Metabolism of Specimens Collected in Palau.

机构信息

Department of Chemistry, Point Loma Nazarene University, 3900 Lomaland Drive, San Diego, California 92106, United States.

Department of Chemistry, Harvey Mudd College, 301 Platt Boulevard, Claremont, California 91711, United States.

出版信息

J Nat Prod. 2020 Mar 27;83(3):693-705. doi: 10.1021/acs.jnatprod.9b01128. Epub 2020 Jan 23.

Abstract

is one of the most abundant and chemically studied soft corals with over 100 natural products reported in the literature, primarily cembrane diterpenoids. Yet, wide variation in the chemistry observed from over the past 50 years has led to its reputation as a capricious producer of bioactive metabolites. Recent molecular phylogenetic analysis revealed that is not a single species but a complex of at least seven genetically distinct species not distinguishable using traditional taxonomic criteria. We hypothesized that perceived intraspecific chemical variation observed in was actually due to differences between cryptic species (interspecific variation). To test this hypothesis, we collected samples in Palau, performed molecular phylogenetic analysis, and prepared chemical profiles of sample extracts using gas chromatography-flame ionization detection. Both unsupervised (principal component analysis) and supervised (linear discriminant analysis) statistical analyses of these profiles revealed a strong relationship between cryptic species membership and chemical profiles. Liquid chromatography with tandem mass spectrometry-based analysis using feature-based molecular networking permitted identification of the chemical drivers of this difference between clades, including cembranoid diterpenes (2,11,12)-isosarcophytoxide (), (2,11,12)-isosarcophytoxide (), and isosarcophine (). Our results suggest that early chemical studies of may have unknowingly conflated different cryptic species of , leading to apparently idiosyncratic chemical variation.

摘要

是软珊瑚中最丰富和化学研究最多的一种,文献中报道了超过 100 种天然产物,主要是cembrane 二萜。然而,过去 50 年来观察到的化学变化的广泛差异导致它被认为是生物活性代谢产物的任性生产者。最近的分子系统发育分析表明, 不是一个单一的物种,而是一个至少由七个遗传上不同的物种组成的复合体,不能用传统的分类标准来区分。我们假设在 中观察到的种内化学变异实际上是由于隐种之间的差异(种间变异)。为了验证这一假设,我们在帕劳收集了 个样本,进行了分子系统发育分析,并使用气相色谱-火焰离子化检测法对样品提取物的化学特征进行了制备。对这些图谱进行的无监督(主成分分析)和监督(线性判别分析)统计分析都表明,隐种成员和化学图谱之间存在很强的关系。基于液相色谱-串联质谱的基于特征的分子网络分析允许鉴定出这种差异的化学驱动因素,包括cembrane 二萜(2,11,12)-异沙蟾毒内酯()、(2,11,12)-异沙蟾毒内酯()和异沙蟾素()。我们的结果表明,早期对 的化学研究可能无意中混淆了 的不同隐种,导致了明显的特质化学变异。

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