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保卫细胞离子组学:解析离子在保卫细胞功能中的作用。

The guard cell ionome: Understanding the role of ions in guard cell functions.

机构信息

Center for Precision Medicine, Department of Internal Medicine, Section on Molecular Medicine, Wake Forest School of Medicine, Medical Center Boulevard, Winston Salem, 27157, NC, USA; Department of Biology, Genetics Institute, Plant Molecular and Cellular Biology Program, University of Florida, Gainesville, FL, 32610, USA.

School of Engineering, RMIT University, GPO Box 2476, Melbourne, 3001, Australia; Centre for Environmental Sustainability and Remediation, RMIT University, GPO Box 2476, Melbourne, 3001, Australia.

出版信息

Prog Biophys Mol Biol. 2019 Sep;146:50-62. doi: 10.1016/j.pbiomolbio.2018.11.007. Epub 2018 Nov 17.

Abstract

The ionome is critical for plant growth, productivity, defense, and it eventually affects human food quantity and quality. Located on the leaf surface, stomatal guard cells are critical gatekeepers for water, gas, and pathogens. Insights form ionomics (metallomics) is imperative as we enter an omics-driven systems biology era where an understanding of guard cell function and physiology is advanced through efforts in genomics, transcriptomics, proteomics, and metabolomics. While the roles of major cations (K, Ca) and anions (Cl) are well known in guard cell function, the related physiology, movement and regulation of trace elements, metal ions, and heavy metals are poorly understood. The majority of the information on the role of trace elements in guard cells emanates from classical feeding experiments, field or in vitro fortification, micropropagation, and microscopy studies, while novel insights are available from limited metal ion transporter and ion channel studies. Given the rejuvenated and recent interest in the constantly changing ionome in plant mineral balance and eventually in human nutrition and health, we looked into the far from established guard cell ionome in lieu of the modern omics era of high throughput research endeavors. Newer technologies and tools i.e., high resolution mass spectrometry, advanced imaging, and phenomics are now available to delve into the guard cell ionomes. In this review, research efforts on guard cell ionomes were collated and categorized, and we highlight the underlying role of the largely unknown ionome in guard cell function towards a systems physiology understanding of plant health and productivity.

摘要

离子组学对于植物的生长、生产力、防御至关重要,最终会影响人类食物的数量和质量。位于叶片表面的保卫细胞是水、气体和病原体的重要守门员。随着我们进入一个基于组学的系统生物学时代,离子组学(金属组学)的见解是必要的,在这个时代,通过基因组学、转录组学、蛋白质组学和代谢组学的努力,我们对保卫细胞的功能和生理学有了更深入的了解。虽然主要阳离子(K、Ca)和阴离子(Cl)在保卫细胞功能中作用已得到充分认识,但微量元素、金属离子和重金属的相关生理学、运动和调节仍知之甚少。关于微量元素在保卫细胞中作用的信息大部分来自经典的喂养实验、野外或体外强化、微繁殖和显微镜研究,而从有限的金属离子转运蛋白和离子通道研究中可以获得新的见解。鉴于人们对植物矿物质平衡中不断变化的离子组学以及最终对人类营养和健康的兴趣重新焕发,我们研究了远未确定的保卫细胞离子组学,以替代高通量研究的现代组学时代。现在有更新的技术和工具,如高分辨率质谱、高级成像和表型组学,可深入研究保卫细胞离子组学。在这篇综述中,我们整理和分类了有关保卫细胞离子组学的研究工作,并强调了在很大程度上未知的离子组学在保卫细胞功能中的潜在作用,以实现对植物健康和生产力的系统生理学理解。

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