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Se(IV), Se(VI), Cu and Zn phytotoxicity in correlation to their accumulation in Sinapis alba L. seedlings

机译:Se(IV),Se(VI),Cu和Zn的植物毒性与其在Sinapis alba L.幼苗中的积累相关

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Phytotoxicity of Se(IV), Se(VI), Cu and Zn to Sinapis alba L. seedlings was expressed by inhibition of selected physiological processes (root and shoot growth, fresh and dry biomass production, water content) and correlated with their bioaccumulation. Roots growth was inhibited more than that of shoots and only Se(IV) reduced also shoots growth (IC50= 25.8 mg L-1). Se(VI) decreased more roots (IC50= 23.6 mg L-1) than shoots growth (IC50= 461.4 mg L-1). Phytotoxicity to roots growth increased as follows: Zn < Se(VI)?Cu < Se(IV). All metals, except Cu, decreased more roots and shoots fresh mass than that of dry mass. Water content was for all (semi)metals more depressed in shoots, however, for Zn any significant changes in roots WC were confirmed. In any case transportation index Ti overreached value 1 and that indicate metals storage in the roots; however, for control the opposite results were obtained. While the highest bioaccumulation factor (BAF) was determined for Cu in both roots (1.016) and shoots (0.271) the lowest values for this parameter were confirmed for Se(VI) in the roots (0.061) and for Se(IV) in the shoots (0.010). While in the control Cu, Se and Zn content was higher in the shoots, treatment with these metals increased their accumulation mainly in the roots. Statistically negative correlation was confirmed among Se(IV), Se(VI) and Cu accumulation in the roots and water content in the roots, and among Se(IV) and Cu accumulation in the roots and water content in the shoots.
机译:Se(IV),Se(VI),Cu和Zn对芥菜幼苗的植物毒性通过抑制选定的生理过程(根和茎生长,新鲜和干燥的生物量产生,水分)来表达,并与其生物积累相关。根的生长受到抑制的程度超过了芽,并且只有Se(IV)的减少也使芽生长(IC 50 = 25.8 mg L -1 )。 Se(VI)减少的根系(IC 50 = 23.6 mg L -1 )比芽生长(IC 50 = 461.4 mg L -1 )。对根生长的植物毒性增加如下:Zn

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