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A Mass Spectrometry-Based Study Shows that Volatiles Emitted by Arthrobacter agilis UMCV2 Increase the Content of Brassinosteroids in Medicago truncatula in Response to Iron Deficiency Stress

机译:基于质谱的研究表明由于铁缺乏胁迫敏捷节肢动物UMCV2发出的挥发物会增加Increase藜中油菜素内酯的含量

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摘要

Iron is an essential plant micronutrient. It is a component of numerous proteins and participates in cell redox reactions; iron deficiency results in a reduction in nutritional quality and crop yields. Volatiles from the rhizobacterium Arthrobacter agilis UMCV2 induce iron acquisition mechanisms in plants. However, it is not known whether microbial volatiles modulate other metabolic plant stress responses to reduce the negative effect of iron deficiency. Mass spectrometry has great potential to analyze metabolite alterations in plants exposed to biotic and abiotic factors. Direct liquid introduction-electrospray-mass spectrometry was used to study the metabolite profile in Medicago truncatula due to iron deficiency, and in response to microbial volatiles. The putatively identified compounds belonged to different classes, including pigments, terpenes, flavonoids, and brassinosteroids, which have been associated with defense responses against abiotic stress. Notably, the levels of these compounds increased in the presence of the rhizobacterium. In particular, the analysis of brassinolide by gas chromatography in tandem with mass spectrometry showed that the phytohormone increased ten times in plants grown under iron-deficient growth conditions and exposed to microbial volatiles. In this mass spectrometry-based study, we provide new evidence on the role of A. agilis UMCV2 in the modulation of certain compounds involved in stress tolerance in M. truncatula.
机译:铁是植物必需的微量元素。它是众多蛋白质的组成部分,并参与细胞氧化还原反应。缺铁会导致营养质量和农作物减产。根茎杆状节菌UMCV2的挥发物诱导植物中铁的吸收机制。但是,尚不清楚微生物挥发物是否能调节其他代谢植物的应激反应,以减少铁缺乏的负面影响。质谱法在分析暴露于生物和非生物因素的植物中的代谢物变化方面具有巨大潜力。直接液体引入-电喷雾质谱法研究了由于缺铁和对微生物挥发物的响应而引起的Medi藜代谢产物的变化。假定鉴定出的化合物属于不同类别,包括色素,萜烯,类黄酮和油菜甾醇,它们与针对非生物胁迫的防御反应有关。值得注意的是,在根瘤菌存在下,这些化合物的水平增加。特别是,通过气相色谱与质谱联用对油菜素内酯的分析表明,在缺铁生长条件下生长并暴露于微生物挥发物的植物中,植物激素增加了十倍。在这项基于质谱的研究中,我们提供了新的证据,表明拟南芥UMCV2在调节参与截短分枝杆菌抗逆性的某些化合物中的作用。

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