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首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Heterologous expression of the metallothionein PpMT2 gene from Physcomitrella patens confers enhanced tolerance to heavy metal stress on transgenic Arabidopsis plants
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Heterologous expression of the metallothionein PpMT2 gene from Physcomitrella patens confers enhanced tolerance to heavy metal stress on transgenic Arabidopsis plants

机译:来自Physcomitrella patens的金属硫蛋白PPMT2基因的异源表达赋予转基因拟南芥植物的重金属应力增强的耐受性

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Metallothioneins (MTs) play essential roles in plant resistance to heavy metal stress, as well as in the scavenging of reactive oxygen species. A number of metallothionein genes in angiosperm have been identified. However, their functions in Physcomitrella patens are still largely unknown. In this work, the function of PpMT2, a metallothionein encoding gene from Physcomitrella patens, was investigated. Sequence alignment and phylogenetic analyses demonstrated that PpMT2 encoded a metallothionein with conserved sequences as other MTs from Arabidopsis, rice, soybean, black nightshade, sedum and poke weed. RT-PCR analyses revealed that PpMT2 was strongly induced by CuSO4 and CdCl2 in Physcomitrella patens. Heterologous expression of PpMT2 led to improved tolerance to high concentrations of CuSO4 and CdCl2 in both Y2HGold yeast cells and transgenic Arabidopsis plants. These findings suggest that PpMT2 is involved in heavy metal stress responses in Physcomitrella patens, and could be used as a potential candidate gene for the genetic engineering of plants with improved resistance to heavy metal stress.
机译:金属硫酸盐(MTS)在植物抗性对重金属应力的抗性中起主要作用,以及可活性氧物质的清除。已经鉴定了有道期的许多金属硫蛋白基因。然而,它们在Physcomitrella Patens中的功能仍然很大程度上是未知的。在这项工作中,研究了PPMT2的功能,是从Physcomitrella Patens编码基因的金属硫蛋白蛋白。序列对准和系统发育分析表明,PPMT2与拟南芥,大米,大豆,黑夜间,SEDUM和POKE杂草的其他MTS编码了与保守序列的金属硫蛋白。 RT-PCR分析表明,PPMT2在PhysCometrella的CuSO4和CdCl2强烈诱导。 PPMT2的异源表达导致在Y2HGold酵母细胞和转基因拟南芥植物中改善了对高浓度的CUSO4和CDCl2的耐受性。这些发现表明PPMT2参与了Physcomitrella的重金属应激反应,并且可以用作植物基因工程的潜在候选基因,具有改善重金属应力的抗性。

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