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锌缺乏反应:弥合拟南芥与双子叶作物之间的差距

Zinc deficiency responses: bridging the gap between Arabidopsis and dicotyledonous crops.

作者信息

Thiébaut Noémie, Hanikenne Marc

机构信息

InBioS - PhytoSystems, Translational Plant Biology, University of Liège, 4000 Liège, Belgium.

出版信息

J Exp Bot. 2022 Mar 15;73(6):1699-1716. doi: 10.1093/jxb/erab491.

Abstract

Zinc (Zn) deficiency is a widespread phenomenon in agricultural soils worldwide and has a major impact on crop yield and quality, and hence on human nutrition and health. Although dicotyledonous crops represent >30% of human plant-based nutrition, relatively few efforts have been dedicated to the investigation of Zn deficiency response mechanisms in dicotyledonous, in contrast to monocotyledonous crops, such as rice or barley. Here, we describe the Zn requirement and impact of Zn deficiency in several economically important dicotyledonous crops, Phaseolus vulgaris, Glycine max, Brassica oleracea, and Solanum lycopersicum. We briefly review our current knowledge of the Zn deficiency response in Arabidopsis and outline how this knowledge is translated in dicotyledonous crops. We highlight commonalities and differences between dicotyledonous species (and with monocotyledonous species) regarding the function and regulation of Zn transporters and chelators, as well as the Zn-sensing mechanisms and the role of hormones in the Zn deficiency response. Moreover, we show how the Zn homeostatic network intimately interacts with other nutrients, such as iron or phosphate. Finally, we outline how variation in Zn deficiency tolerance and Zn use efficiency among cultivars of dicotyledonous species can be leveraged for the design of Zn biofortification strategies.

摘要

锌(Zn)缺乏是全球农业土壤中普遍存在的现象,对作物产量和品质有重大影响,进而影响人类营养与健康。尽管双子叶作物占人类植物性营养的30%以上,但与水稻或大麦等单子叶作物相比,针对双子叶作物锌缺乏响应机制的研究相对较少。在此,我们描述了几种经济上重要的双子叶作物,即菜豆、大豆、甘蓝和番茄对锌的需求以及锌缺乏的影响。我们简要回顾了目前对拟南芥锌缺乏响应的认识,并概述了这些知识如何在双子叶作物中得到应用。我们强调了双子叶物种(以及与单子叶物种)在锌转运蛋白和螯合剂的功能与调控、锌感知机制以及激素在锌缺乏响应中的作用方面的共性和差异。此外,我们展示了锌稳态网络如何与铁或磷酸盐等其他营养素密切相互作用。最后,我们概述了如何利用双子叶物种不同品种间锌缺乏耐受性和锌利用效率的差异来设计锌生物强化策略。

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