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拟南芥在矿物质缺乏时的表达谱揭示了参与金属稳态的新型转运蛋白。

Expression profiles of Arabidopsis thaliana in mineral deficiencies reveal novel transporters involved in metal homeostasis.

作者信息

Wintz Henri, Fox Tama, Wu Ying-Ying, Feng Victoria, Chen Wenqiong, Chang Hur-Song, Zhu Tong, Vulpe Chris

机构信息

Department of Nutritional Sciences and Toxicology, University of California, Berkeley, California 94720, USA.

出版信息

J Biol Chem. 2003 Nov 28;278(48):47644-53. doi: 10.1074/jbc.M309338200. Epub 2003 Sep 16.

Abstract

Plants directly assimilate minerals from the environment and thus are key for acquisition of metals by all subsequent consumers. Limited bio-availability of copper, zinc and iron in soil decreases both the agronomic productivity and the nutrient quality of crops. Understanding the molecular mechanisms underlying metal homeostasis in plants is a prerequisite to optimizing plant yield and metal nutrient content. To absorb and maintain a balance of potentially toxic metal ions, plants utilize poorly understood mechanisms involving a large number of membrane transporters and metal binding proteins with overlapping substrate specificities and complex regulation. To better understand the function and the integrated regulation, we analyzed in Arabidopsis the expression patterns in roots and in leaves of 53 genes coding for known or potential metal transporters, in response to copper, zinc, and iron deficiencies in Arabidopsis. Comparative analysis of gene expression profiles revealed specific transcriptional regulation by metals of the genes contrasting with the known wide substrate specificities of the encoded transporters. Our analysis suggested novel transport roles for several gene products and we used functional complementation of yeast mutants to correlate specific regulation by metals with transport activity. We demonstrate that two ZIP genes, ZIP2 and ZIP4, are involved in copper transport. We also present evidence that AtOPT3, a member of the oligopeptide transporter gene family with significant similarities to the maize iron-phytosiderophore transporter YS1, is regulated by metals and heterologous expression AtOPT3 can rescue yeast mutants deficient in metal transport.

摘要

植物直接从环境中吸收矿物质,因此对于所有后续消费者获取金属而言至关重要。土壤中铜、锌和铁的生物有效性有限,这降低了作物的农艺生产力和营养品质。了解植物体内金属稳态的分子机制是优化植物产量和金属养分含量的前提条件。为了吸收并维持潜在有毒金属离子的平衡,植物利用了一些尚不清楚的机制,这些机制涉及大量具有重叠底物特异性和复杂调控的膜转运蛋白和金属结合蛋白。为了更好地理解其功能和综合调控,我们在拟南芥中分析了53个编码已知或潜在金属转运蛋白的基因在根和叶中的表达模式,以响应拟南芥中铜、锌和铁的缺乏。基因表达谱的比较分析揭示了金属对这些基因的特异性转录调控,这与所编码转运蛋白已知的广泛底物特异性形成对比。我们的分析表明几种基因产物具有新的转运作用,并且我们利用酵母突变体的功能互补将金属的特异性调控与转运活性相关联。我们证明两个ZIP基因ZIP2和ZIP4参与铜的转运。我们还提供证据表明,寡肽转运蛋白基因家族的成员AtOPT3与玉米铁载体转运蛋白YS1具有显著相似性,它受金属调控,并且AtOPT3的异源表达可以拯救金属转运缺陷的酵母突变体。

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