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The Cadmium Phytoextraction Efficiency of ScMTII Gene Bearing Transgenic Tobacco Plant

机译:携带ScMTII基因的转基因烟草植物中镉的植物提取效率

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Cadmium pollution is a serious world-wide problem affecting the human health and the environmental quality. Phytoremediation, the use of green plants to remove, sequester or detoxify pollutants offers an environmentally-friendly alternative to engineering-based methods for remediation. The T2 generations of the ScMTII gene bearing transgenic and non-transgenic tobacco plants were grown hydroponically in Hoagland nutrition solution containing 0, 5 and 10 mg/L Cd in controlled growth room to determine their ability to uptake and accumulate Cd within the shoots and roots. There were no significant shoot and root dry weight differences between transgenic and non-transgenic tobacco plants. The ScMTII gene bearing transgenic tobacco plant accumulated 19.8% higher Cd than the non-transgenic tobacco plant in the above ground parts of the plant during the two weeks exposure period in hydroponic culture. In non-transgenic plant, however, Cd is accumulated mainly in the roots. The results of current study indicate that the use of the ScMTII gene bearing transgenic tobacco plant for Cd phytoremediation is limited. Further studies are needed to test the effectiveness of the ScMTII gene for phytoextraction of other heavy metal ions.
机译:镉污染是一个严重的世界性问题,影响着人类健康和环境质量。植物修复,即使用绿色植物去除,隔离或解毒污染物,为基于工程的修复方法提供了一种环境友好的替代方法。在控制生长室内,在含有0、5和10 mg / L Cd的Hoagland营养溶液中水培生长含有ScMTII基因的转基因和非转基因烟草植物的T2代,以确定其在枝条和根中吸收和积累Cd的能力。 。转基因和非转基因烟草植物之间没有明显的茎和根干重差异。在水培培养的两周暴露期中,带有ScMTII基因的转基因烟草植物在植物的地上部分比非转基因烟草植物积累的Cd高19.8%。然而,在非转基因植物中,Cd主要在根部积累。目前的研究结果表明,携带ScMTII基因的转基因烟草植物对Cd的植物修复作用受到限制。需要进一步的研究来测试ScMTII基因对其他重金属离子的植物提取的有效性。

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