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Coupling Nicotiana tabaccum Transgenic Plants with Rhizophagus irregularis for Phytoremediation of Heavy Metal Polluted Areas

机译:偶联尼古利亚塔巴契转基因植物具有根瘤菌植物修复重金属污染区域的植物植物

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Several studies have shown that hairy roots (HRs) can increase the phytoextraction of organic and inorganic pollutants. In addition, microorganisms colonizing the rhizosphere of hairy roots have demonstrated the efficacy of HRs either in removing or in stabilizing of pollutants. This growth chamber study aimed to determine the effect of colonization by the arbuscular mycorrhizal (AM) fungus (Rhizophagus irregularis) on the HRs of tobacco (Nicotiana tabaccum cv Virginia gold) under heavy metals (Cu, Pb and Zn) conditions. Seedlings of N. tabacum were grown in contaminated substrate without infection caused by Agrobacterium rhizogenes expressed in the form of HRs disease, a second one with infection, and the third treatment contained AM fungus beside the A. rhizogenes infection. In the order they have been described, these treatments were coded with C, CT and CTM. The experiment demonstrated that HRs mutants resisted better in terms of higher biomass content in the contaminated soil than the normal plants. Even more, the transgenic plants also had a very strong interaction with mycorrhizal fungi. Thus, soil respiration, biomass and some biochemical variables such as assimilating pigments, protein content and lipid peroxidation indicate a decrease in stress due to the presence of heavy metals in the CTM treatment. Furthermore, CTM treatment significantly alleviated the concentration of toxic elements in plants, compared with the CT treatment, in which a significant increase was registered when compared to treatment C.
机译:几项研究表明,毛状根(HRS)可以增加有机和无机污染物的植物萃取物。此外,殖民化毛状根根际的微生物已经证明了HRS在除去或稳定污染物中的功效。这种增长室的研究旨在通过在重金属(Cu,Pb和Zn)条件下,在烟草(Nicotiana Tabaccum CV virginia金)的HRS上,确定丛枝菌根(am)真菌(rhizophagus irregular)的疗效。 N. Tabacum的幼苗在污染的基质中生长,没有受HRS疾病形式表达的土壤杆菌,第二个具有感染的根除生成,第三种治疗含有A.无毒感染旁边的Am真菌。按照描述的顺序,这些处理用C,CT和CTM编码。实验表明,在污染的土壤中的污染土壤中的更高生物量含量比法线植物,HRS突变体均更好。更重要的是,转基因植物也与菌根真菌的相互作用非常强烈。因此,土壤呼吸,生物质和一些生化变量如同化颜料,蛋白质含量和脂质过氧化表明由于CTM处理中的重金属存在而导致的应力降低。此外,与CT处理相比,CTM治疗显着减轻了植物中有毒元素的浓度,其中与处理C.进行了显着增加。

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