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一种用于从土壤中摄取铁的铁螯合物还原酶。

A ferric-chelate reductase for iron uptake from soils.

作者信息

Robinson N J, Procter C M, Connolly E L, Guerinot M L

机构信息

Department of Biochemistry and Genetics, The Medical School, University of Newcastle, UK.

出版信息

Nature. 1999 Feb 25;397(6721):694-7. doi: 10.1038/17800.

Abstract

Iron deficiency afflicts more than three billion people worldwide, and plants are the principal source of iron in most diets. Low availability of iron often limits plant growth because iron forms insoluble ferric oxides, leaving only a small, organically complexed fraction in soil solutions. The enzyme ferric-chelate reductase is required for most plants to acquire soluble iron. Here we report the isolation of the FRO2 gene, which is expressed in iron-deficient roots of Arabidopsis. FRO2 belongs to a superfamily of flavocytochromes that transport electrons across membranes. It possesses intramembranous binding sites for haem and cytoplasmic binding sites for nucleotide cofactors that donate and transfer electrons. We show that FRO2 is allelic to the frd1 mutations that impair the activity of ferric-chelate reductase. There is a nonsense mutation within the first exon of FRO2 in frd1-1 and a missense mutation within FRO2 in frd1-3. Introduction of functional FRO2 complements the frd1-1 phenotype in transgenic plants. The isolation of FRO2 has implications for the generation of crops with improved nutritional quality and increased growth in iron-deficient soils.

摘要

缺铁困扰着全球超过30亿人,而植物是大多数饮食中铁的主要来源。铁的有效性低常常限制植物生长,因为铁会形成不溶性的三氧化二铁,导致土壤溶液中仅留下一小部分有机络合态的铁。大多数植物获取可溶性铁需要铁螯合还原酶。在此,我们报告了FRO2基因的分离,该基因在拟南芥缺铁的根中表达。FRO2属于一个跨膜传递电子的黄素细胞色素超家族。它具有血红素的膜内结合位点以及用于捐赠和传递电子的核苷酸辅因子的细胞质结合位点。我们发现FRO2与损害铁螯合还原酶活性的frd1突变等位。在frd1 - 1中,FRO2的第一个外显子内存在一个无义突变,在frd1 - 3中,FRO2内存在一个错义突变。导入功能性FRO2可在转基因植物中互补frd1 - 1的表型。FRO2的分离对于培育营养品质改善且在缺铁土壤中生长加快的作物具有重要意义。

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