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拟南芥IRT2与高亲和力铁吸收系统协同作用,以维持根表皮细胞中的铁稳态。

Arabidopsis IRT2 cooperates with the high-affinity iron uptake system to maintain iron homeostasis in root epidermal cells.

作者信息

Vert Grégory, Barberon Marie, Zelazny Enric, Séguéla Mathilde, Briat Jean-François, Curie Catherine

机构信息

Biochimie et Physiologie Moléculaire des Plantes, Institut de Biologie Intégrative des Plantes, CNRS UMR 5004, 2 place Viala, 34060, Montpellier Cedex 1, France.

出版信息

Planta. 2009 May;229(6):1171-9. doi: 10.1007/s00425-009-0904-8. Epub 2009 Feb 28.

Abstract

Iron is an essential nutrient for all organisms but toxic when present in excess. Consequently, plants carefully regulate their iron uptake, dependent on the FRO2 ferric reductase and the IRT1 transporter, to control its homeostasis. Arabidopsis IRT2 gene, whose expression is induced in root epidermis upon iron deprivation, was shown to encode a functional iron/zinc transporter in yeast, and proposed to function in iron acquisition from the soil. In this study, we demonstrate that, unlike its close homolog IRT1, IRT2 is not involved in iron absorption from the soil since overexpression of IRT2 does not rescue the iron uptake defect of irt1-1 mutant and since a null irt2 mutant shows no chlorosis in low iron. Consistently, an IRT2-green fluorescent fusion protein, transiently expressed in culture cells, localizes to intracellular vesicles. However, IRT2 appears strictly co-regulated with FRO2 and IRT1, supporting the view that IRT2 is an integral component of the root response to iron deficiency in root epidermal cells. We propose a model where IRT2 likely prevents toxicity from IRT1-dependent iron fluxes in epidermal cells, through compartmentalization.

摘要

铁是所有生物体必需的营养素,但过量时具有毒性。因此,植物会通过依赖FRO2铁还原酶和IRT1转运蛋白来仔细调节其铁吸收,以控制铁的体内平衡。拟南芥IRT2基因在缺铁时在根表皮中表达被诱导,已证明其在酵母中编码一种功能性铁/锌转运蛋白,并被认为在从土壤中获取铁的过程中发挥作用。在本研究中,我们证明,与它的紧密同源物IRT1不同,IRT2不参与从土壤中吸收铁,因为IRT2的过表达不能挽救irt1-1突变体的铁吸收缺陷,并且一个irt2缺失突变体在低铁条件下没有出现黄化现象。一致地,在培养细胞中瞬时表达的IRT2-绿色荧光融合蛋白定位于细胞内囊泡。然而,IRT2似乎与FRO2和IRT1严格共同调节,支持了IRT2是根表皮细胞对缺铁反应的一个组成部分的观点。我们提出了一个模型,其中IRT2可能通过区室化作用防止表皮细胞中依赖IRT1的铁通量产生毒性。

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