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植物中的主要营养传感器。

Primary nutrient sensors in plants.

作者信息

Podar Dorina, Maathuis Frans J M

机构信息

Faculty of Biology and Geology and Centre for Systems Biology, Biodiversity and Bioresources (3B), Babes-Bolyai University, Cluj 400084, Romania.

Biology Department, University of York, YO10 5DD York, UK.

出版信息

iScience. 2022 Mar 4;25(4):104029. doi: 10.1016/j.isci.2022.104029. eCollection 2022 Apr 15.

Abstract

Nutrients are scarce and valuable resources, so plants developed sophisticated mechanisms to optimize nutrient use efficiency. A crucial part of this is monitoring external and internal nutrient levels to adjust processes such as uptake, redistribution, and cellular compartmentation. Measurement of nutrient levels is carried out by primary sensors that typically involve either transceptors or transcription factors. Primary sensors are only now starting to be identified in plants for some nutrients. In particular, for nitrate, there is detailed insight concerning how the external nitrate status is sensed by members of the nitrate transporter 1 (NRT1) family. Potential sensors for other macronutrients such as potassium and sodium have also been identified recently, whereas for micronutrients such as zinc and iron, transcription factor type sensors have been reported. This review provides an overview that interprets and evaluates our current understanding of how plants sense macro and micronutrients in the rhizosphere and root symplast.

摘要

营养物质是稀缺且宝贵的资源,因此植物进化出了复杂的机制来优化营养利用效率。其中关键的一部分是监测外部和内部营养水平,以调整诸如吸收、再分配和细胞区室化等过程。营养水平的测量由主要传感器进行,这些传感器通常涉及转运体感受器或转录因子。目前才刚刚开始在植物中鉴定出一些营养物质的主要传感器。特别是对于硝酸盐,人们对硝酸盐转运蛋白1(NRT1)家族成员如何感知外部硝酸盐状态有了详细的了解。最近也已鉴定出其他大量营养素(如钾和钠)的潜在传感器,而对于微量营养素(如锌和铁),已有转录因子类型传感器的相关报道。本综述提供了一个概述,解释并评估了我们目前对植物如何感知根际和根共质体中的大量和微量营养素的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd6f/8933713/cef41857e412/fx1.jpg

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