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Metabolite profiling of the carnivorous pitcher plants Darlingtonia and Sarracenia

机译:食肉的猪笼草达灵顿藻和瓶子草的代谢产物分析

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摘要

Sarraceniaceae is a New World carnivorous plant family comprising three genera: Darlingtonia, Heliamphora, and Sarracenia. The plants occur in nutrient-poor environments and have developed insectivorous capability in order to supplement their nutrient uptake. Sarracenia flava contains the alkaloid coniine, otherwise only found in Conium maculatum, in which its biosynthesis has been studied, and several Aloe species. Its ecological role and biosynthetic origin in S. flava is speculative. The aim of the current research was to investigate the occurrence of coniine in Sarracenia and Darlingtonia and to identify common constituents of both genera, unique compounds for individual variants and floral scent chemicals. In this comprehensive metabolic profiling study, we looked for compound patterns that are associated with the taxonomy of Sarracenia species. In total, 57 different Sarracenia and D. californica accessions were used for metabolite content screening by gas chromatography-mass spectrometry. The resulting high-dimensional data were studied using a data mining approach. The two genera are characterized by a large number of metabolites and huge chemical diversity between different species. By applying feature selection for clustering and by integrating new biochemical data with existing phylogenetic data, we were able to demonstrate that the chemical composition of the species can be explained by their known classification. Although transcriptome analysis did not reveal a candidate gene for coniine biosynthesis, the use of a sensitive selected ion monitoring method enabled the detection of coniine in eight Sarracenia species, showing that it is more widespread in this genus than previously believed.
机译:race草科是新世界的食肉植物科,包括三个属:达灵顿属,Heliamphora和Sar草。这些植物生长在营养不良的环境中,并具有食虫能力,以补充其对营养的吸收。瓶子草(Sarracenia flava)中含有生物碱类甜氨酸,否则只能在已经对其生物合成进行了研究的斑纹锥(Conium maculatum)中和几种芦荟中找到。它在S. flava中的生态作用和生物合成来源具有推测性。当前研究的目的是调查在香菜属和达灵顿属中发生的甜氨酸含量,并确定这两个属的共同成分,单个变体的独特化合物和花香化学品。在这项全面的代谢概况分析研究中,我们寻找了与瓶子草物种分类相关的复合模式。总共使用了57种不同的瓶子草和D. californica成分,通过气相色谱-质谱法进行代谢物含量筛选。使用数据挖掘方法研究了所得的高维数据。这两个属的特征是大量的代谢产物和不同物种之间巨大的化学多样性。通过将特征选择应用于聚类,并将新的生化数据与现有的系统发育数据进行整合,我们能够证明该物种的化学组成可以通过其已知分类来解释。尽管转录组分析未显示出用于甜菜碱生物合成的候选基因,但使用敏感的选定离子监测方法后,可以在八个瓶子草物种中检测到甜菜碱,这表明它比以前认为的更广泛。

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