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Metabolomic profiling reveals suppression of oxylipin biosynthesis during the early stages of legume-rhizobia symbiosis

机译:代谢组学分析揭示了豆科植物-根瘤菌共生早期的脂蛋白生物合成受到抑制

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摘要

The establishment of symbiosis between leguminous plants and rhizobial bacteria requires rapid metabolic changes in both partners. We utilized untargeted quantitative mass spectrometry to perform metabolomic profiling of small molecules in extracts of the model legume Medicago truncatula treated with rhizobial Nod factors. One metabolite closely resembling the 9(R)-HODE class of oxylipins reproducibly showed a decrease in concentration within the first hour of in planta nod factor treatment. Oxylipins are precursors of the jasmonic acid biosynthetic pathway and we showed that both this metabolite and jasmonic acid inhibit Nod factor signaling. Since, oxylipins have been implicated as antimicrobial compounds produced by plants, these observations suggest that the oxylipin pathway may play multiple roles in facilitating Nod factor signaling during the early stages of symbiosis.
机译:在豆科植物和根瘤菌之间建立共生关系,需要两个伙伴之间的快速代谢变化。我们利用非靶向定量质谱法对用根瘤菌Nod因子处理过的豆科植物leg藜模型提取物中的小分子进行了代谢组学分析。一种植物代谢素与9(R)-HODE类脂蛋白的代谢产物可再现地显示其浓度在头一小时内降低。脂蛋白是茉莉酸生物合成途径的前体,我们表明该代谢产物和茉莉酸均抑制Nod因子信号传导。由于脂蛋白已被暗示为植物产生的抗菌化合物,因此这些观察结果表明,脂蛋白途径在共生的早期阶段可能在促进Nod因子信号传导中起多种作用。

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