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首页> 外文期刊>Plant, Cell & Environment >Expression of a Pteris vittata glutaredoxin PvGRX5 in transgenic Arabidopsis thaliana increases plant arsenic tolerance and decreases arsenic accumulation in the leaves.
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Expression of a Pteris vittata glutaredoxin PvGRX5 in transgenic Arabidopsis thaliana increases plant arsenic tolerance and decreases arsenic accumulation in the leaves.

机译:转基因拟南芥中的蕨类植物戊二醛谷胱甘肽PvGRX5的表达增加植物对砷的耐受性并减少叶片中砷的积累。

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Chinese brake fern Pteris vittata hyperaccumulates arsenic in its fronds. In a study to identify brake fern cDNAs in arsenic resistance, we implicated a glutaredoxin, PvGRX5, because when expressed in Escherichia coli, it improved arsenic tolerance in recombinant bacteria. Here, we asked whether PvGRX5 transgenic expression would alter plant arsenic tolerance and metabolism. Two lines of Arabidopsis thaliana constitutively expressing PvGrx5 cDNA were compared with vector control and wild-type lines. PvGRX5-expressors were significantly more tolerant to arsenic compared with control lines based on germination, root growth and whole plant growth under imposed arsenic stress. PvGRX5-expressors contained significantly lower total arsenic compared with control lines following treatment with arsenate. Additionally, PvGRX5-expressors were significantly more efficient in their arsenate reduction in vivo. Together, our results indicate that PvGRX5 has a role in arsenic tolerance via improving arsenate reduction and regulating cellular arsenic levels. Paradoxically, our results suggest that PvGRX5 from the arsenic hyperaccumulator fern can be used in a novel biotechnological solution to decrease arsenic in crops.
机译:中国刹车蕨 Pteris vittata 的叶片中富集了砷。在一项鉴定具有抗砷性的蕨类植物cDNA的研究中,我们牵涉了一种戊二醛毒素PvGRX5,因为当在大肠杆菌中表达时,它可以提高重组细菌的砷耐受性。在这里,我们问是否PvGRX5转基因表达会改变植物的砷耐受性和代谢。比较了两个组成性表达PvGrx5 cDNA的拟南芥品系与载体对照品系和野生型品系。与基于在砷胁迫下发芽,根系生长和整株植物生长的对照系相比,PvGRX5表达子对砷的耐受性明显更高。与砷酸盐处理后的对照品系相比,PvGRX5表达子的总砷含量明显降低。另外,PvGRX5-表达体在体内降低砷化物的效率明显更高。总之,我们的结果表明PvGRX5通过改善砷酸盐的还原和调节细胞的砷水平在砷耐受性中发挥作用。矛盾的是,我们的结果表明,来自砷超富集蕨类植物的PvGRX5可用于新型生物技术解决方案,以减少农作物中的砷。

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