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首页> 外文期刊>Journal of Experimental Botany >Novel connections in plant organellar signalling link different stress responses and signalling pathways
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Novel connections in plant organellar signalling link different stress responses and signalling pathways

机译:植物细胞器信号传导中的新型连接链接了不同的胁迫反应和信号传导途径

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摘要

We briefly summarize different signalling pathways involved in organellar signalling and highlight emerging new topics to point out opportunities for future research with a particular focus on chloroplasts.To coordinate growth, development and responses to environmental stimuli, plant cells need to communicate the metabolic state between different sub-compartments of the cell. This requires signalling pathways, including protein kinases, secondary messengers such as Ca2+ ions or reactive oxygen species (ROS) as well as metabolites and plant hormones. The signalling networks involved have been intensively studied over recent decades and have been elaborated more or less in detail. However, it has become evident that these signalling networks are also tightly interconnected and often merge at common targets such as a distinct group of transcription factors, most prominently ABI4, which are amenable to regulation by phosphorylation, potentially also in a Ca2+- or ROS-dependent fashion. Moreover, the signalling pathways connect several organelles or subcellular compartments, not only in functional but also in physical terms, linking for example chloroplasts to the nucleus or peroxisomes to chloroplasts thereby enabling physical routes for signalling by metabolite exchange or even protein translocation. Here we briefly discuss these novel findings and try to connect them in order to point out the remaining questions and emerging developments in plant organellar signalling.
机译:我们简要总结了细胞器信号转导中涉及的不同信号转导途径,并重点介绍了新兴的主题,以指出未来研究的机会,特别是叶绿体。为了协调生长,发育和对环境刺激的反应,植物细胞需要在不同细胞之间传达代谢状态单元的子隔间。这需要信号通路,包括蛋白激酶,次级信使,例如Ca2 +离子或活性氧(ROS)以及代谢产物和植物激素。在最近的几十年中,对所涉及的信令网络进行了深入研究,并已或多或少地进行了详细说明。但是,很明显,这些信号网络也紧密相连,并经常在共同的靶标上融合,例如独特的转录因子组,最显着的是ABI4,它们很容易通过磷酸化进行调节,也可能在Ca2 +-或ROS-中依赖时尚。此外,信号传导途径不仅在功能上而且在物理上还连接了多个细胞器或亚细胞区室,例如将叶绿体连接到细胞核或将过氧化物酶体连接到叶绿体,从而通过代谢物交换或什至蛋白质转运实现了物理途径进行信号传递。在这里,我们简要讨论这些新颖的发现,并尝试将它们联系起来,以指出植物细胞器信号转导中尚存的问题和新兴发展。

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