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首页> 外文期刊>Aquatic Toxicology >Capacity of the aquatic fern (Salvinia minima Baker) to accumulate high concentrations of nickel in its tissues, and its effect on plant physiological processes
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Capacity of the aquatic fern (Salvinia minima Baker) to accumulate high concentrations of nickel in its tissues, and its effect on plant physiological processes

机译:水生蕨类植物(Salvinia minima Baker)在其组织中积累高浓度镍的能力及其对植物生理过程的影响

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An experiment was designed to assess the capacity of Salvinia minima Baker to uptake and accumulate nickel in its tissues and to evaluate whether or not this uptake can affect its physiology. Our results suggest that S. minima plants are able to take up high amounts of nickel in its tissues, particularly in roots. In fact, our results support the idea that S. minima might be considered a hyper-accumulator of nickel, as it is able to accumulate 16.3 mg g(-1) (whole plant DW basis). Our results also showed a two-steps uptake pattern of nickel, with a fast uptake of nickel at the first 6 to 12 h of being expose to the metal, followed by a slow take up phase until the end of the experiment at 144 h. S. minima thus, may be considered as a fern useful in the phytoremediation of residual water bodies contaminated with this metal. Also from our results, S. minima can tolerate fair concentrations of the metal; however, at concentrations higher than 80 mu M Ni (1.5 mg g(-1) internal nickel concentration), its physiological performance can be affected. For instance, the integrity of cell membranes was affected as the metal concentration and exposure time increased. The accumulation of high concentrations of internal nickel did also affect photosynthesis, the efficiency of PSII, and the concentration of photosynthetic pigments, although at a lower extent
机译:设计了一个实验来评估Salvinia minima Baker在组织中摄取和积累镍的能力,并评估这种摄取是否会影响其生理。我们的结果表明,小型链球菌植物能够在其组织中,尤其是根部吸收大量的镍。实际上,我们的结果支持以下观点:极小链霉菌可被视为镍的超富集剂,因为它能够积累16.3 mg g(-1)(以整个植物的DW为基础)。我们的结果还显示了镍的两步吸收模式,在暴露于金属的最初6至12小时内镍的快速吸收,然后是缓慢吸收阶段,直到144 h实验结束。因此,极小链霉菌可被认为是用于植物修复被该金属污染的残留水体的蕨类植物。同样从我们的结果来看,最小链霉菌可以忍受适当浓度的金属。但是,在高于80μMNi(1.5 mg g(-1)内部镍浓度)的浓度下,其生理性能会受到影响。例如,细胞膜的完整性随着金属浓度和暴露时间的增加而受到影响。高浓度内部镍的积累也影响了光合作用,PSII的效率和光合色素的浓度,尽管程度较低

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