College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou, 311121, China.
College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou, 311121, China.
J Plant Physiol. 2021 Jun;261:153419. doi: 10.1016/j.jplph.2021.153419. Epub 2021 Apr 19.
Zinc (Zn) is an essential micronutrient for plants and animals. Because of its low availability in arable soils worldwide, Zn deficiency is becoming a serious agricultural problem resulting in decreases of crop yield and nutritional quality. Plants have evolved multiple responses to adapt to low levels of soil Zn supply, involving biochemical and physiological changes to improve Zn acquisition and utilization, and defend against Zn deficiency stress. In this review, we summarize the physiological and biochemical adaptations of plants to Zn deficiency, the roles of transporters and metal-binding compounds in Zn homeostasis regulation, and the recent progresses in understanding the sophisticated regulatory mechanisms of Zn deficiency responses that have been made by molecular and genetic analyses, as well as diverse 'omics' studies. Zn deficiency responses are tightly controlled by multiple layers of regulation, such as transcriptional regulation that is mediated by transcription factors like F-group bZIP proteins, epigenetic regulation at the level of chromatin, and post-transcriptional regulation mediated by small RNAs and alternative splicing. The insights into the regulatory network underlying Zn deficiency responses and the perspective for further understandings of molecular regulation of Zn deficiency responses have been discussed. The understandings of the regulatory mechanisms will be important for improving Zn deficiency tolerance, Zn use efficiency, and Zn biofortification in plants.
锌(Zn)是动植物必需的微量元素。由于全球可耕地土壤中锌的含量较低,锌缺乏症正成为一个严重的农业问题,导致作物产量和营养价值下降。植物已经进化出多种应对机制来适应低水平的土壤锌供应,包括生化和生理变化,以改善锌的获取和利用,并抵御锌缺乏胁迫。在这篇综述中,我们总结了植物对锌缺乏的生理和生化适应,转运蛋白和金属结合化合物在锌稳态调节中的作用,以及通过分子和遗传分析以及多种“组学”研究理解锌缺乏响应复杂调控机制的最新进展。锌缺乏响应受到多层次的调控,如转录因子如 F 组 bZIP 蛋白介导的转录调控、染色质水平的表观遗传调控以及小 RNA 和可变剪接介导的转录后调控。讨论了锌缺乏响应的调控网络的见解以及进一步理解锌缺乏响应的分子调控的展望。对调控机制的理解对于提高植物的锌缺乏耐受性、锌利用效率和锌生物强化具有重要意义。