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Involvement of miR528 in the Regulation of Arsenite Tolerance in Rice (Oryza sativa L.)

机译:miR528参与调节水稻(Oryza sativa L.)的砷耐受性

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Tens of miRNAs were previously established as being arsenic (As) stress responsive in rice. However, their functional role in As tolerance remains unclear. This study demonstrates that transgenic plants overexpressing miR528 (Ubi::MIRS28) were more sensitive to arsenite [As(III)] compared with wild-type (WT) rice. Under normal and stress conditions, miR528-5p and -3p were highly up-regulated in both the roots and leaves of transgenic plants, which exhibited a negative correlation with the expression of seven target genes. Compared with WT plants, Ubi::MIR528 plants showed excessive oxidative stress generation and remarkable amino acid content changes in the roots and leaves upon As(III) exposure. Notably, the expression profiles of diverse functional genes were clearly different between WT and transgenic plants. Thus, the observed As(III) sensitivity of Ubi::MIR528 plants was likely due to the strong alteration of antioxidant enzyme activity and amino acid profiles and the impairment of the As(III) uptake, translocation, and tolerance systems of rice.
机译:先前已确定数十种miRNA对水稻中的砷(As)胁迫具有响应性。然而,它们在As耐受性中的功能作用尚不清楚。这项研究表明,与野生型(WT)水稻相比,过量表达miR528(Ubi :: MIRS28)的转基因植物对亚砷酸盐[As(III)]更为敏感。在正常和胁迫条件下,转基因植物的根和叶中的miR528-5p和-3p均上调,与七个靶基因的表达呈负相关。与野生型植物相比,Ubi :: MIR528植物显示出过量的氧化胁迫产生,并且暴露于As(III)后根和叶中的氨基酸含量发生显着变化。值得注意的是,不同功能基因的表达谱在野生型和转基因植物之间明显不同。因此,观察到的Ubi :: MIR528植物对As(III)的敏感性可能是由于抗氧化酶活性和氨基酸谱的强烈变化以及水稻对As(III)的吸收,转运和耐性系统的损害。

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