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首页> 外文期刊>Metabolites >Characterization of Plant Volatiles Reveals Distinct Metabolic Profiles and Pathways among 12 Brassicaceae Vegetables
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Characterization of Plant Volatiles Reveals Distinct Metabolic Profiles and Pathways among 12 Brassicaceae Vegetables

机译:植物挥发物的表征揭示了12种十字花科蔬菜中不同的代谢特征和途径

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Plants emit characteristic organic volatile compounds (VOCs) with diverse biological/ecological functions. However, the links between plant species/varieties and their phytochemical emission profiles remain elusive. Here, we developed a direct headspace solid-phase microextraction (HS-SPME) technique and combined with non-targeted gas chromatography?high-resolution mass spectrometry (GC-HRMS) platform to investigate the VOCs profiles of 12 common Brassicaceae vegetables (watercress, rocket, Brussels sprouts, broccoli, kai lan, choy sum, pak choi, cabbage, Chinese cabbage, cauliflower, radish and cherry radish). The direct HS-SPME sampling approach enabled reproducible capture of the rapid-emitting VOCs upon plant tissue disruption. The results revealed extensive variation in VOCs profiles among the 12 Brassicaceae vegetables. Furthermore, principal component analysis (PCA) showed that the VOC profiles could clearly distinguish the 12 Brassicaceae vegetables, and that these profiles well reflected the classical morphological classification. After multivariate statistical analysis, 44 VOCs with significant differences among the Brassicaceae vegetables were identified. Pathway analysis showed that three secondary metabolism pathways, including the fatty acid pathway, methylerythritol phosphate (MEP) pathway and glucosinolate (GLS) pathway, behave distinctively in these vegetables. These three pathways are responsible for the generation and emission of green leaf volatiles (GLVs), terpenes and isothiocyanates (ITCs), respectively. Correlation analysis further showed that volatile metabolites formed via the common pathway had significantly positive correlations, whereas metabolites from different pathways had either non-significant or significantly negative correlations. Genetic influences on these metabolites across various vegetable types were also evaluated. These findings extend our phytochemical knowledge of the 12 edible Brassicaceae vegetables and provide useful information on their secondary metabolism.
机译:植物释放出具有多种生物学/生态功能的特征性有机挥发性化合物(VOC)。但是,植物物种/品种及其植物化学物质排放状况之间的联系仍然难以捉摸。在这里,我们开发了一种直接的顶空固相微萃取(HS-SPME)技术,并与非目标气相色谱-高分辨率质谱(GC-HRMS)平台相结合,研究了12种常见十字花科蔬菜(西洋菜,火箭,布鲁塞尔芽菜,西兰花,凯兰,菜,白菜,白菜,大白菜,花椰菜,萝卜和樱桃萝卜)。直接HS-SPME采样方法能够在植物组织破裂后可再现地捕获快速释放的VOC。结果表明,在12种十字花科蔬菜中,挥发性有机化合物的分布差异很大。此外,主成分分析(PCA)表明,挥发性有机化合物特征可以清楚地区分12种十字花科蔬菜,并且这些特征很好地反映了经典的形态学分类。经过多变量统计分析,发现了十字花科蔬菜中的44种挥发性有机化合物含量明显不同。途径分析表明,三个次级代谢途径,包括脂肪酸途径,磷酸甲基赤藓糖醇(MEP)途径和芥子油苷(GLS)途径,在这些蔬菜中表现出明显的不同。这三个途径分别负责绿叶挥发物(GLV),萜烯和异硫氰酸酯(ITC)的产生和排放。相关分析进一步表明,通过共同途径形成的挥发性代谢产物具有显着的正相关,而来自不同途径的代谢产物则具有无显着或显着的负相关。还评估了各种蔬菜类型对这些代谢物的遗传影响。这些发现扩展了我们对12种食用十字花科蔬菜的植物化学知识,并提供了有关其次级代谢的有用信息。

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