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High-Throughput Volatilome Fingerprint Using PTR–ToF–MS Shows Species-Specific Patterns in

机译:使用PTR-TOF-MS的高吞吐量波动组指纹显示特定于物种的图案

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摘要

In ecology, Volatile Organic Compounds (VOCs) have a high bioactive and signaling potential. VOCs are not only metabolic products, but are also relevant in microbial cross talk and plant interaction. Here, we report the first large-scale VOC study of 13 different species of Mortierella sensu lato (s.l.) isolated from a range of different alpine environments. Proton Transfer Reaction–Time-of-Flight Mass Spectrometry (PTR–ToF–MS) was applied for a rapid, high-throughput and non-invasive VOC fingerprinting of 72 Mortierella s.l. isolates growing under standardized conditions. Overall, we detected 139 mass peaks in the headspaces of all 13 Mortierella s.l. species studied here. Thus, Mortierellas.l. species generally produce a high number of different VOCs. Mortierella species could clearly be discriminated based on their volatilomes, even if only high-concentration mass peaks were considered. The volatilomes were partially phylogenetically conserved. There were no VOCs produced by only one species, but the relative concentrations of VOCs differed between species. From a univariate perspective, we detected mass peaks with distinctively high concentrations in single species. Here, we provide initial evidence that VOCs may provide a competitive advantage and modulate Mortierella s.l. species distribution on a global scale.
机译:在生态学中,挥发性有机化合物(VOC)具有高生物活性和信号电位。 VOC不仅是代谢产品,而且在微生物交叉谈话和植物互动中也是相关的。在这里,我们报告了13种不同物种的第一个大规模VOC研究,Mortierella Sensu Lato(s。l。)从一系列不同的高山环境中孤立。施用质子转移反应 - 飞行时间的质谱(PTR-TOF-MS)用于72例MIGRIERLA S的快速,高通量和非侵入性VOC指纹识别。湖分离在标准化条件下生长。总的来说,我们在所有13例Migerella s的顶部空间中检测到139个质量峰。湖这里研究的物种。因此,Mortierellas。湖物种通常产生大量不同的VOC。即使仅考虑了高浓度质量峰,也可以基于挥发物清楚地区分Martierella物种。挥发物是部分地值保守的。没有一个物种没有产生任何VOC,但物种之间的VOC的相对浓度不同。从单变量的角度来看,我们在单一物种中检测到具有明显高浓度的质量峰。在这里,我们提供了初步证据,VOC可以提供竞争优势和调节黄昏。湖在全球范围内分布。

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