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首页> 外文期刊>Environmental and experimental botany >Arsenic accumulation by aquatic macrophyte coontail (Ceratophyllum demersum L.) exposed to arsenite, and the effect of iron on the uptake of arsenite and arsenate.
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Arsenic accumulation by aquatic macrophyte coontail (Ceratophyllum demersum L.) exposed to arsenite, and the effect of iron on the uptake of arsenite and arsenate.

机译:暴露于亚砷酸盐的水生大型植物凤尾鱼( L.)积累的砷,以及铁对砷和砷的吸收的影响。

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In this study, the aquatic macrophyte Ceratophyllum demersum L. (coontail or hornwort) was tested for its efficiency of arsenic (As) uptake under laboratory conditions. Our results revealed that the solution pH had a significant effect on As accumulation by C. demersum (p<0.001). The accumulation was highest at pH 5 and decreased as pH values increased. Plants that were exposed to various concentrations of arsenite (As(III)) for 24 and 48 h, exhibited tolerance and toxic responses, respectively. As accumulation by C. demersum depended on the concentrations of As(III) and the duration of exposure (p<0.001). At 40 micro M after 24 h, plants accumulated 227.5 micro g As g-1 dw and showed no visible symptoms of toxicity. However, after 48 h, As level reached 302.4 micro g g-1 dw and biomass production decreased significantly. Toxic effects were evident by plant necrosis and negative biomass production, leading to a decrease in the amount of accumulated As. Also, the addition of iron (Fe) into the nutrient solutions (0.18 mM) had contrasting effects on the uptake of 2 As species - the uptake of As(III) was enhanced by the presence of Fe, but the uptake of arsenate (As(V)) was considerably inhibited.
机译:在这项研究中,在实验室条件下测试了水生植物金鱼藻(香菜或金缕梅)对砷(As)的吸收效率。我们的结果表明,溶液的pH值对iC的As积累具有显着影响。 demersum ( p <0.001)。积累在pH 5时最高,并随着pH值增加而降低。暴露于不同浓度的亚砷酸盐(As(III))24小时和48小时的植物分别表现出耐受性和毒性反应。由C累积。 demersum 取决于As(III)的浓度和暴露持续时间( p <0.001)。 24 h后40 micro M,植物累积227.5 micro g As g -1 dw,没有明显的毒性症状。然而,在48小时后,砷水平达到了302.4微克g -1 dw,生物量的产生显着下降。植物坏死和负生物量产生明显的毒性作用,导致砷的累积量减少。同样,在营养液中添加铁(Fe)(0.18 mM)对2种砷的吸收有相反的影响-铁的存在会提高砷(III)的吸收,但砷(砷)的吸收会增加(V))被大大抑制。

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