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首页> 外文期刊>Molecular Biology Reports >Overexpression of AtFRO6 in transgenic tobacco enhances ferric chelate reductase activity in leaves and increases tolerance to iron-deficiency chlorosis
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Overexpression of AtFRO6 in transgenic tobacco enhances ferric chelate reductase activity in leaves and increases tolerance to iron-deficiency chlorosis

机译:AtFRO6在转基因烟草中的过表达增强了叶片中铁螯合物还原酶的活性,并提高了对缺铁性缺氯病的耐受性

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The Arabidopsis gene FRO6(AtFRO6) encodes ferric chelate reductase and highly expressed in green tissues of plants. We have expressed the gene AtFRO6 under the control of a 35S promoter in transgenic tobacco plants. High-level expression of AtFRO6 in transgenic plants was confirmed by northern blot analysis. Ferric reductase activity in leaves of transgenic plants grown under iron-sufficient or iron-deficient conditions is 2.13 and 1.26 fold higher than in control plants respectively. The enhanced ferric reductase activity led to increased concentrations of ferrous iron and chlorophyll, and reduced the iron deficiency chlorosis in the transgenic plants, compared to the control plants. In roots, the concentration of ferrous iron and ferric reductase activity were not significantly different in the transgenic plants compared to the control plants. These results suggest that FRO6 functions as a ferric chelate reductase for iron uptake by leaf cells, and overexpression of AtFRO6 in transgenic plants can reduce iron deficiency chlorosis.
机译:拟南芥基因FRO6(AtFRO6)编码铁螯合还原酶,并在植物的绿色组织中高度表达。我们已经在转基因烟草植物中的35S启动子控制下表达了AtFRO6基因。通过Northern印迹分析证实了AtFRO6在转基因植物中的高表达。在铁充足或铁不足的条件下生长的转基因植物叶片中的铁还原酶活性分别比对照植物高2.13倍和1.26倍。与对照植物相比,增强的铁还原酶活性导致转基因植物中亚铁和叶绿素的浓度增加,并减少了缺铁性缺氯。在根部,与对照植物相比,转基因植物中亚铁和铁还原酶活性的浓度没有显着差异。这些结果表明FRO6可以作为铁螯合还原酶来促进叶细胞摄取铁,而AtFRO6在转基因植物中的过表达可以减少铁缺乏症的中毒。

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