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植物中基于钙的信号转导的进化。

The Evolution of Calcium-Based Signalling in Plants.

机构信息

Institut für Biologie und Biotechnologie der Pflanzen, Universität Münster, Schlossplatz 7, 48149 Münster, Germany.

School of Biological Sciences, Life Sciences Building, University of Bristol, Tyndall Avenue, Bristol BS8 1TQ, UK; Génétique Quantitative et Evolution - Le Moulon, INRA, Univ. Paris-Sud, CNRS, AgroParisTech, Université Paris-Saclay, 91190 Gif-sur-Yvette, France.

出版信息

Curr Biol. 2017 Jul 10;27(13):R667-R679. doi: 10.1016/j.cub.2017.05.020.

Abstract

The calcium-based intracellular signalling system is used ubiquitously to couple extracellular stimuli to their characteristic intracellular responses. It is becoming clear from genomic and physiological investigations that while the basic elements in the toolkit are common between plants and animals, evolution has acted in such a way that, in plants, some components have diversified with respect to their animal counterparts, while others have either been lost or have never evolved in the plant lineages. In comparison with animals, in plants there appears to have been a loss of diversity in calcium-influx mechanisms at the plasma membrane. However, the evolution of the calcium-storing vacuole may provide plants with additional possibilities for regulating calcium influx into the cytosol. Among the proteins that are involved in sensing and responding to increases in calcium, plants possess specific decoder proteins that are absent from the animal lineage. In seeking to understand the selection pressures that shaped the plant calcium-signalling toolkit, we consider the evolution of fast electrical signalling. We also note that, in contrast to animals, plants apparently do not make extensive use of cyclic-nucleotide-based signalling. It is possible that reliance on a single intracellular second-messenger-based system, coupled with the requirement to adapt to changing environmental conditions, has helped to define the diversity of components found in the extant plant calcium-signalling toolkit.

摘要

基于钙的细胞内信号系统被广泛用于将细胞外刺激与其特征性的细胞内反应联系起来。从基因组和生理学研究中可以清楚地看出,虽然工具箱中的基本元素在植物和动物之间是共同的,但进化的作用是,在植物中,一些成分相对于其动物对应物发生了多样化,而另一些成分则在植物谱系中丢失或从未进化过。与动物相比,植物似乎在质膜的钙流入机制方面失去了多样性。然而,钙储存液泡的进化可能为植物提供了额外的调节胞质钙流入的可能性。在参与感知和响应钙增加的蛋白质中,植物具有特定的解码器蛋白质,而这些蛋白质在动物谱系中不存在。在试图理解塑造植物钙信号工具包的选择压力时,我们考虑快速电信号的进化。我们还注意到,与动物不同,植物显然不广泛利用基于环核苷酸的信号。可能是对单个细胞内第二信使系统的依赖,加上适应不断变化的环境条件的需要,有助于定义现存植物钙信号工具包中发现的各种成分。

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