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Functional expression of a bacteral heavy metal transporter in arabidopsis enhances resistance to and decrease uptake of heavy metals

机译:拟南芥中细菌重金属转运蛋白的功能表达增强了对重金属的抵抗力并减少了对重金属的吸收

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Large parts of agricultural soil are contaminated with lead (Pb) and cadmium (Cd). Although most environments are not heavily contaminated, the low levels observed nonetheless pose a high risk of heavy metal accumulation in the food chain. Therefore, approaches to develop plants with reduced heavy metal uptake are important. Recently, many transgenic plants with increased heavy metal resistance and uptake of heavy metals were developed for the purpose of phytoremediation. However, to reduce heavy metal in the food chain, plants that transfer less heavy metals to the shoot are required. We tested whether an Escherichia coli gene, ZntA, which encodes a Pb(II)/Cd(II)/Zn(II) pump, could be useful for developing plants with reduced heavy metal content. Yeast cells transformed with this gene had improved resistance to Pb(II) and Cd(II). In Arabidopsis plants transformed with ZntA, ZntA was localized at the plasma membrane and improved the resistance of the plants to Pb(II) and Cd(II). The shoots of the transgenic plants had decreased Pb and Cd content. Moreover, the transgenic protoplasts showed lower accumulation of Cd and faster release of preloaded Cd than wild-type protoplasts. These results show that a bacterial transporter gene, ZntA, can be functionally expressed in plant cells, and that that it may be useful for the development of crop plants that are safe from heavy metal contamination.
机译:农业土壤的大部分被铅(Pb)和镉(Cd)污染。尽管大多数环境并未受到严重污染,但所观察到的低水平仍构成食物链中重金属积累的高风险。因此,开发减少重金属吸收的植物的方法很重要。近来,出于植物修复的目的,开发了许多具有增加的重金属抗性和重金属吸收的转基因植物。然而,为了减少食物链中的重金属,需要将较少的重金属转移到芽上的植物。我们测试了编码Pb(II)/ Cd(II)/ Zn(II)泵的大肠杆菌基因ZntA是否可用于开发重金属含量降低的植物。用该基因转化的酵母细胞对Pb(II)和Cd(II)的抵抗力有所提高。在用ZntA转化的拟南芥植物中,ZntA位于质膜上,并提高了植物对Pb(II)和Cd(II)的抗性。转基因植物的芽中铅和镉的含量降低。此外,与野生型原生质体相比,转基因原生质体显示出较低的Cd积累和更快的预载Cd释放。这些结果表明,细菌转运蛋白基因ZntA可以在植物细胞中功能性表达,并且对于开发不受重金属污染影响的农作物可能有用。

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