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首页> 外文期刊>American-Eurasian Journal of Agricultural and Environmental Sciences >Influence of Salinity Stress on Phytoaccumulation of (Fe and Cu) by Two Macrophytes and Their Biochemical Responses
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Influence of Salinity Stress on Phytoaccumulation of (Fe and Cu) by Two Macrophytes and Their Biochemical Responses

机译:盐分胁迫对两种大型植物植物(Fe和Cu)植物累积及其生化响应的影响

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Bioremediation is a helpful tool for elimination of heavy metals pollution from the polluted water. Biosorption performance of macrophytes T. natans and M.glabratus was examined in saline condition. T. natana remove 12.3% and accumulate 14 % more Fe than M. glabratus whereas fresh weight, leaf protein, root protein and photosynthetic pigments found 1.25%, 3.35%, 6.91%, 2.26 % respectively more than M.glabratus. In case of Cu T. natans remove 11.4 % and accumulate 12.75% more than M. glabratus although in term of stress reaction freshweight was observed 1.16%, leaf protein 1.49%, root protein 4.52% and photosynthetic pigments 1.10 % more than M. glabratus. T. natans showed better survival with Fe and Cu removal efficiency in saline condition than M. glabratus
机译:生物修复是消除污水中重金属污染的有用工具。在盐分条件下检查了大型植物T. natans和M.glabratus的生物吸附性能。纳塔纳猪笼草去除了12.3%的铁,并比其多吸收了14%的铁,而鲜重,叶蛋白,根蛋白和光合色素分别比欧洲眼镜鼠多了1.25%,3.35%,6.91%,2.26%。在Cu T. natans的情况下,比glabra。M.去除了11.4%并积累了12.75%,尽管在应激反应方面,鲜重比glabra。M.增长了1.16%,叶蛋白为1.49%,根蛋白为4.52%,光合色素为1.10%。 。与生理条件下相比,纳丹隐球菌在盐分条件下的去除铁和铜的效率更高。

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