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深度代谢组学揭示了斜纹夜蛾取食后拟南芥中茉莉酸信号介导的初级代谢轨迹。

Deep metabolomics revealed trajectories of jasmonate signaling-mediated primary metabolism in Arabidopsis upon Spodoptera litura herbivory.

作者信息

Kundu Anish, Bera Paramita, Mishra Shruti, Vadassery Jyothilakshmi

机构信息

Plant Biotechnology and Disease Biology Division, Rajiv Gandhi Centre for Biotechnology (RGCB), Thiruvananthapuram, Kerala, India.

National Institute of Plant Genome Research (NIPGR), Aruna Asaf Ali Marg, New Delhi, India.

出版信息

Physiol Plant. 2025 Jan-Feb;177(1):e70035. doi: 10.1111/ppl.70035.

Abstract

Plants defend against chewing herbivores by up-regulating jasmonic acid (JA) signaling, which activates downstream signaling cascades and produces numerous secondary metabolites that act as defense molecules against the herbivores. Although secondary metabolism always remains a focus of research, primary metabolism is also reported to be realigned upon herbivory. However, JA signaling-mediated modulation of primary metabolites and their metabolic pathways in plants are mostly unexplored. Here, we applied gas chromatography-mass spectrometry-based untargeted metabolomics aided with computational statistical frameworks on wild type Arabidopsis, mutants of active JA receptor (i.e., CORONATINE-INSENSITIVE 1, COI1-1) and downstream transcription factor (i.e., MYC2) to navigate the JA signaling-mediated primary metabolism alterations during herbivory. Pathway and metabolite's chemical class enrichment analysis revealed JA signaling is crucial for constitutive as well as herbivore-induced primary metabolism and topology of their interaction networks. JA signaling majorly modulated alterations of sugars, amino acids and related metabolites. Herbivory-mediated sugar depletion and induction of methionine for aliphatic glucosinolates are also dependent on JA signaling. Taken together, our results demonstrate trails of JA signaling-mediated primary metabolic alterations associated with herbivory.

摘要

植物通过上调茉莉酸(JA)信号传导来抵御咀嚼式食草动物,该信号传导激活下游信号级联反应并产生众多次生代谢产物,这些次生代谢产物作为针对食草动物的防御分子。尽管次生代谢一直是研究的重点,但也有报道称,食草作用会使初级代谢重新调整。然而,JA信号传导介导的植物初级代谢产物及其代谢途径的调控大多尚未得到探索。在这里,我们应用基于气相色谱-质谱联用的非靶向代谢组学,并借助计算统计框架,对野生型拟南芥、活性JA受体(即冠菌素不敏感1,COI1-1)和下游转录因子(即MYC2)的突变体进行研究,以探寻食草过程中JA信号传导介导的初级代谢变化。代谢途径和代谢产物的化学类别富集分析表明,JA信号传导对于组成型以及食草动物诱导的初级代谢及其相互作用网络的拓扑结构至关重要。JA信号传导主要调节糖类、氨基酸和相关代谢产物的变化。食草作用介导的糖消耗以及用于脂肪族硫代葡萄糖苷的甲硫氨酸诱导也依赖于JA信号传导。综上所述,我们的结果证明了与食草作用相关的JA信号传导介导的初级代谢变化轨迹。

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