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叶绿体钙信号备受关注。

Chloroplast Calcium Signaling in the Spotlight.

作者信息

Navazio Lorella, Formentin Elide, Cendron Laura, Szabò Ildikò

机构信息

Department of Biology, University of Padova, Padova, Italy.

Botanical Garden, University of Padova, Padova, Italy.

出版信息

Front Plant Sci. 2020 Mar 11;11:186. doi: 10.3389/fpls.2020.00186. eCollection 2020.

Abstract

Calcium has long been known to regulate the metabolism of chloroplasts, concerning both light and carbon reactions of photosynthesis, as well as additional non photosynthesis-related processes. In addition to undergo Ca regulation, chloroplasts can also influence the overall Ca signaling pathways of the plant cell. Compelling evidence indicate that chloroplasts can generate specific stromal Ca signals and contribute to the fine tuning of cytoplasmic Ca signaling in response to different environmental stimuli. The recent set up of a toolkit of genetically encoded Ca indicators, targeted to different chloroplast subcompartments (envelope, stroma, thylakoids) has helped to unravel the participation of chloroplasts in intracellular Ca handling in resting conditions and during signal transduction. Intra-chloroplast Ca signals have been demonstrated to occur in response to specific environmental stimuli, suggesting a role for these plant-unique organelles in transducing Ca-mediated stress signals. In this mini-review we present current knowledge of stimulus-specific intra-chloroplast Ca transients, as well as recent advances in the identification and characterization of Ca-permeable channels/transporters localized at chloroplast membranes. In particular, the potential role played by cMCU, a chloroplast-localized member of the mitochondrial calcium uniporter (MCU) family, as component of plant environmental sensing is discussed in detail, taking into account some specific structural features of cMCU. In summary, the recent molecular identification of some players of chloroplast Ca signaling has opened new avenues in this rapidly developing field and will hopefully allow a deeper understanding of the role of chloroplasts in shaping physiological responses in plants.

摘要

长期以来,人们都知道钙能调节叶绿体的代谢,这涉及光合作用的光反应和碳反应,以及其他与光合作用无关的过程。除了接受钙的调节外,叶绿体还能影响植物细胞的整体钙信号通路。有力的证据表明,叶绿体能够产生特定的基质钙信号,并有助于在响应不同环境刺激时对细胞质钙信号进行微调。最近建立的一套针对不同叶绿体亚区室(包膜、基质、类囊体)的基因编码钙指示剂工具包,有助于揭示叶绿体在静息状态和信号转导过程中参与细胞内钙处理的情况。叶绿体内部的钙信号已被证明是对特定环境刺激的响应而产生的,这表明这些植物特有的细胞器在转导钙介导的应激信号中发挥作用。在这篇小型综述中,我们介绍了目前关于刺激特异性叶绿体内部钙瞬变的知识,以及位于叶绿体膜上的钙通透通道/转运体的鉴定和表征方面的最新进展。特别是,详细讨论了线粒体钙单向转运体(MCU)家族中叶绿体定位成员cMCU作为植物环境感知成分所发挥的潜在作用,并考虑了cMCU的一些特定结构特征。总之,最近对叶绿体钙信号一些参与者的分子鉴定为这个快速发展的领域开辟了新途径,有望使人们更深入地了解叶绿体在塑造植物生理反应中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40a7/7081724/275fe11a8bff/fpls-11-00186-g001.jpg

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