定位于叶绿体的玉米 ZmFDR3 参与了铁的运输。

JianHui Han, XiuFang Song, Peng Li, HuiJun Yang, LiPing Yin
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引用次数: 17

摘要

铁是植物新陈代谢的必需营养元素,因此缺铁植物会出现萎黄病并降低光合效率。之前的差异显示发现了一些基因,这些基因在缺铁的玉米根系中表达量升高。在此,我们描述了筛选出的一个基因 ZmFDR3(玉米缺铁相关基因)的功能特征。利用酵母铁吸收突变体进行的异源功能互补试验表明,ZmFDR3 在铁运输中起作用。ZmFDR3 含有一个在 III 型分泌系统的 FliN 蛋白中发现的结构域,并被预测定位在质体的类色素层。荧光免疫细胞化学显示,ZmFDR3 定位于根、茎和叶的质体中,在保卫细胞叶绿体中的表达量较高。表达 35S-ZmFDR3 构建体的转基因烟草含铁量升高,其叶绿体膜排列整齐,光合指数高于野生型。这些结果表明,ZmFDR3 在叶绿体铁运输中起作用。
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Maize ZmFDR3 localized in chloroplasts is involved in iron transport.

Iron is an essential nutrient for plant metabolism such that Fe-limited plants display chlorosis and suffer from reduced photosynthetic efficiency. Differential display previously identified genes whose expression was elevated in Fe-deficient maize roots. Here, we describe the functional characterization of one of the genes identified in the screen, ZmFDR3 (Zea maize Fe-deficiency-related). Heterologous functional complementation assays using a yeast iron uptake mutant showed that ZmFDR3 functions in iron transport. ZmFDR3 contains a domain found in FliN-proteins of the type III secretion system and is predicted to localize to the thylakoid of plastids. Fluorescence immunocytochemistry showed that ZmFDR3 is localized in the plastids of roots, stems and leaves, with high expression found in guard cell chloroplasts. Transgenic tobacco expressing a 35S-ZmFDR3 construct contains elevated iron content, displays well arranged thylakoid membranes and has photosynthetic indices that are higher than those of the wild type. Together, these results suggest that ZmFDR3 functions in chloroplast iron transport.

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