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一个水稻酚类外排转运蛋白对于在植物木质部中溶解沉淀的细胞外铁是必需的。

A rice phenolic efflux transporter is essential for solubilizing precipitated apoplasmic iron in the plant stele.

机构信息

Department of Global Agricultural Sciences, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Yayoi 1-1-1, Bunkyo-ku, Tokyo 113-8657, Japan.

出版信息

J Biol Chem. 2011 Jul 15;286(28):24649-55. doi: 10.1074/jbc.M111.221168. Epub 2011 May 20.

Abstract

Iron deficiency is one of the major agricultural problems, as 30% of the arable land of the world is too alkaline for optimal crop production, rendering plants short of available iron despite its abundance. To take up apoplasmic precipitated iron, plants secrete phenolics such as protocatechuic acid (PCA) and caffeic acid. The molecular pathways and genes of iron uptake strategies are already characterized, whereas the molecular mechanisms of phenolics synthesis and secretion have not been clarified, and no phenolics efflux transporters have been identified in plants yet. Here we describe the identification of a phenolics efflux transporter in rice. We identified a cadmium-accumulating rice mutant in which the amount of PCA and caffeic acid in the xylem sap was dramatically reduced and hence named it phenolics efflux zero 1 (pez1). PEZ1 localized to the plasma membrane and transported PCA when expressed in Xenopus laevis oocytes. PEZ1 localized mainly in the stele of roots. In the roots of pez1, precipitated apoplasmic iron increased. The growth of PEZ1 overexpression lines was severely restricted, and these lines accumulated more iron as a result of the high solubilization of precipitated apoplasmic iron in the stele. We show that PEZ1 is responsible for an increase of PCA concentration in the xylem sap and is essential for the utilization of apoplasmic precipitated iron in the stele.

摘要

缺铁是一个主要的农业问题,因为世界上 30%的可耕地对于作物的最佳生产来说碱性过高,尽管铁很丰富,但植物仍缺乏可用的铁。为了吸收质外体沉淀的铁,植物会分泌对香豆酸(PCA)和咖啡酸等酚类物质。铁摄取策略的分子途径和基因已经得到了描述,而酚类物质合成和分泌的分子机制尚未阐明,并且植物中尚未鉴定出酚类物质外排转运蛋白。在这里,我们描述了水稻中一种酚类物质外排转运蛋白的鉴定。我们在水稻中鉴定到一个镉积累突变体,其木质部汁液中的 PCA 和咖啡酸含量明显减少,因此将其命名为酚类物质外排零 1(PEZ1)。PEZ1 定位于质膜,并且在非洲爪蟾卵母细胞中表达时可转运 PCA。PEZ1 主要定位于根的中柱。在 pez1 的根中,沉淀的质外体铁增加。PEZ1 过表达系的生长受到严重限制,由于中柱沉淀的质外体铁的高溶解,这些系积累了更多的铁。我们表明,PEZ1 负责增加木质部汁液中的 PCA 浓度,并且对于中柱中沉淀的质外体铁的利用是必需的。

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