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当前对植物锌稳态调节机制的认识。

Current understanding of plant zinc homeostasis regulation mechanisms.

机构信息

K.A. Timiryazev Institute of Plant Physiology RAS, 35 Botanicheskaya St., Moscow, 127276, Russia.

出版信息

Plant Physiol Biochem. 2021 May;162:327-335. doi: 10.1016/j.plaphy.2021.03.003. Epub 2021 Mar 5.

Abstract

The essential nature of Zn and widespread Zn deficiency in plants under field conditions underlie the great interest of researchers in the regulation of plant Zn homeostasis. Here, the current knowledge of plant Zn homeostasis regulation, mainly in A. thaliana, is reviewed. The plant Zn homeostasis machinery is regulated largely at the transcriptional level. Local regulation in response to changes in cellular Zn status is based on the transcription factors bZIP19 and bZIP23, which sense changes in free Zn concentrations in the cell. However, there are likely other unidentified ways to sense cellular free Zn concentrations in addition to the well-known bZIP19 and bZIP23 factors. In recent years, the existence of a shoot-derived systemic Zn deficiency signal, which is involved in the upregulation of Zn transport from roots to shoots, was demonstrated. Additionally, rates of mRNA degradation of Zn homeostasis genes are likely regulated by changes in cellular Zn status. In addition to the regulation of Zn transport, other mechanisms for the regulation of plant Zn homeostasis exist. "Zn sparing" mechanisms could be involved in the decrease in plant Zn requirements under Zn deficiency. Additionally, autophagy is probably regulated by local Zn status and involved in Zn reutilization at the cellular level. Current issues related to studying Zn homeostasis regulation are discussed.

摘要

植物在田间条件下锌的固有性质和普遍缺乏锌,这使得研究人员对植物锌稳态的调节产生了极大的兴趣。在这里,我们综述了植物锌稳态调节的最新知识,主要集中在拟南芥上。植物锌稳态机制主要在转录水平上进行调节。针对细胞内锌状态变化的局部调节基于转录因子 bZIP19 和 bZIP23,它们感知细胞内游离锌浓度的变化。然而,除了众所周知的 bZIP19 和 bZIP23 因子外,可能还有其他未被识别的方法来感知细胞内游离锌浓度。近年来,已经证明存在一种源于地上部的系统性缺锌信号,该信号参与了从根部向地上部上调锌转运。此外,锌稳态基因的 mRNA 降解率可能受到细胞内锌状态的变化调节。除了锌转运的调节外,还存在其他调节植物锌稳态的机制。“锌节约”机制可能涉及在缺锌条件下植物对锌需求的降低。此外,自噬可能受到局部锌状态的调节,并参与细胞水平的锌再利用。本文讨论了与研究锌稳态调节相关的当前问题。

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