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Mitochondrial Perturbation Negatively Affects Auxin Signaling

机译:线粒体摄动负面影响生长素信号转导。

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Mitochondria are crucial players in the signaling and metabolic homeostasis of the plant cell. The molecular components that orchestrate the underlying processes, however, are largely unknown. Using a chemical biology approach, we exploited the responsiveness of Arabidopsis UDP-glucosyltransferase-encoding UGT74E2 towards mitochondrial perturbation in order to look for novel mechanisms regulating mitochondria-to-nucleus communication. The most potent inducers of UGT74E2 shared a (2-furyl) acrylate (FAA) substructure that negatively affected mitochondrial function and was identified before as an auxin transcriptional inhibitor. Based on these premises, we demonstrated that perturbed mitochondria negatively affect the auxin signaling machinery. Moreover, chemical perturbation of polar auxin transport and auxin biosynthesis was sufficient to induce mitochondrial retrograde markers and their transcript abundance was constitutively elevated in the absence of the auxin transcriptional activators ARF7 and ARF19.
机译:线粒体是植物细胞信号传导和代谢稳态的关键因素。但是,组成潜在过程的分子成分在很大程度上是未知的。使用化学生物学方法,我们利用拟南芥UDP-葡萄糖基转移酶编码的UGT74E2对线粒体微扰的响应性,以寻找调节线粒体与核之间通讯的新机制。 UGT74E2最有效的诱导剂共有一个对线粒体功能产生负面影响的(2-呋喃基)丙烯酸酯(FAA)亚结构,以前被鉴定为生长素转录抑制剂。基于这些前提,我们证明了扰动的线粒体会对生长素信号传导机制产生负面影响。此外,极性生长素运输和生长素生物合成的化学扰动足以诱导线粒体逆行标记,并且在缺乏生长素转录激活因子ARF7和ARF19的情况下其转录本丰度组成性提高。

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