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The evaluation of cadmium, zinc and nickel accumulation ability of transgenic tobacco bearing different transgenes.

机译:评估带有不同转基因的转基因烟草中镉,锌和镍的积累能力。

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摘要

Tobacco, Nicotiana tabacum cv. Wisconsin 38 as the control (WSC), and four genetically modified lines of the same cultivar were tested for Cd, Zn and Ni accumulation. Genetically modified lines of the same variety, bearing the transgene CUP1 (gene coding a yeast metallothionein), GUS (reporter gene for beta -glucuronidase), HisCUP (CUP combined with a polyhistidine tail), and HisGUS (reporter gene for beta -glucuronidase, combined with a polyhistidine tail) under a constitutive promoter, enabling it to follow the heavy metal tolerance and uptake changes as a function of the transgene present. Control and transgenic lines were tested for accumulation of risk elements on sand nutrient medium with the addition of cadmium, zinc and nickel. The results showed high Cd accumulation ability of HisCUP line. The Cd content in aboveground biomass was increased by 90% compared to the non-transformed control and Cd content in roots was decreased by 49%. Determination of Zn content in aboveground biomass did not confirm higher uptake by transgenic plants significant for phytoremediation. The Ni content was significantly increased in aboveground biomass of HisGUS construct. GUS construct introduced the ability to accumulate all investigated metals; the others accumulated only one in extended amount.
机译:烟草,烟草测试了威斯康星州38作为对照(WSC)和同一品种的四个转基因品系的Cd,Zn和Ni积累。同一品种的转基因品系,带有转基因CUP1(编码酵母金属硫蛋白的基因),GUS(β-葡糖醛酸糖苷酶的报道基因),HisCUP(与多组氨酸尾巴结合的CUP)和HisGUS(β-葡糖醛酸糖苷酶的报道基因,在一个组成型启动子下与一个多聚组氨酸尾结合),使其能够跟随重金属的耐受性并根据存在的转基因来适应吸收变化。测试了对照和转基因品系中添加镉,锌和镍后,在沙子营养培养基上的风险元素的积累。结果表明HisCUP品系具有较高的镉积累能力。与未转化的对照相比,地上生物量中的Cd含量提高了90%,而根部中的Cd含量降低了49%。地上生物量中锌含量的测定不能证实对植物修复具有重要意义的转基因植物对锌的吸收更高。在HisGUS构建体的地上生物量中,Ni含量显着增加。 GUS结构引入了累积所有被调查金属的能力;其他的只累积了一个。

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