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首页> 外文期刊>Environmental Science and Pollution Research >Epoxiconazole exposure affects terpenoid profiles of oilseed rape plantlets based on a targeted metabolomic approach
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Epoxiconazole exposure affects terpenoid profiles of oilseed rape plantlets based on a targeted metabolomic approach

机译:环氧喹啉暴露会影响基于靶向代谢物种的油籽油植物的萜类曲线

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Epoxiconazole is a broad-spectrum fungicide described as highly persistent in soil and as such can be considered as an abiotic agent like other problematic agrochemicals. Furthermore, the plant phenotyping tool involving non-invasive monitoring of plant-emitted volatile organic compounds (VOCs) may be useful in the identification of metabolic markers for abiotic stress. We therefore decided to profile the VOCs from secondary metabolism of oilseed rape through a dose-response experiment under several epoxiconazole concentrations (0, 0.01, 0.1 and 1mgL(-1)). VOC collections of 35-day-old whole plantlets were performed through a dynamic headspace sampling technique under defined and controlled conditions. The plantlets grew freely within a home-made, laboratory and high-throughput glass chamber without any disturbance. Putative metabolic markers were analysed using a targeted metabolomic approach based on TD-GC-MS method coupled with data acquisition in SIM mode in order to focus on terpenes and sulphur-containing volatiles. Chromatograms of emitted terpenes were achieved accurately for the 35-day-old oilseed rape plantlets. We also analysed the presence of sulphur-containing volatiles in samples of shoot and root tissues using an innovative DHS-TD-GC-MS method, but no difference was found between qualitative profiles. Nevertheless, we demonstrated through this experiment that sesquiterpenes such as -elemene and (E,E)--farnesene are involved in epoxiconazole dose-response. In particular, (E,E)--farnesene could serve as a metabolic marker of fungicide exposure for oilseed rape plantlets.
机译:氧唑菌是一种广谱杀菌剂在土壤中被描述为具有高度持久性,因此可以被认为是象其他有问题的农用化学品的非生物剂。此外,涉及植物释放的挥发性有机化合物(VOC)的非侵入性监控的植物表型分型工具可以是在非生物胁迫代谢标记物的鉴定是有用的。因此,我们决定简要介绍下几个氟环唑浓度从通过剂量 - 响应实验油菜次级代谢挥发性有机化合物(0,0.01,0.1和1mgL(-1))。的35日龄幼苗整体VOC集合是通过定义和控制的条件下,动态顶空取样技术进行。该苗自制,实验室和高通量的玻璃容器内自由生长不受任何干扰。使用基于以专注于萜类和含硫挥发物加上在SIM模式数据采集TD-GC-MS法的靶向代谢物组学的方法推定代谢指标进行分析。发射的萜烯的色谱图的35日龄油菜苗精确地实现。我们还分析了含硫挥发物的枝条和根组织的样品使用创新的DHS-TD-GC-MS法的存在,但被发现定性曲线之间没有差别。然而,我们通过该实验表明,倍半萜烯如榄香烯和(E,E) - 法呢烯参与氧唑菌剂量 - 响应。特别是,(E,E) - 法呢烯可以作为杀真菌剂曝光油菜植株的代谢标记物。

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