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Biological responses of duckweed (Lemna minor L.) exposed to the inorganic arsenic species As(III) and As(V): effects of concentration and duration of exposure

机译:浮萍(Lemna minor L.)暴露于无机砷物种As(III)和As(V)的生物响应:浓度和暴露时间的影响

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The accumulation of arsenic (As) and physiological responses of Lemna minor L. under different concentration (0, 1, 4, 16 and 64 μM) and duration (1, 2, 4 and 6 days) of two species As, NaAsO2 and Na2HAsO4·7H2O, were studied in hydroponics. The accumulation of both As species depended on As concentration and exposure duration. The highest accumulation of As was found as 17408 and 8674 μg g−1, for plants exposed to 64 μM of As(III) and As(V), respectively, after 6 days. Two-way ANOVA analyses indicated that, for plants exposed to arsenite (As(III)), exposure duration had a greater effect than concentration on As accumulation. Conversely, exposure concentration had a greater effect on As accumulation in plants exposed to arsenate (As(V)). Arsenic exposure levels, approaching 16 μM for As(III) and 64 μM for As(V), did not significantly affect EC values. Beyond these exposure concentrations, EC values increased in a manner that depended on duration. Significant effect of As(III) on lipid peroxidation was observed at 1 μM application whereas, this effect started to be significant after an exposure to 16 μM As(V). For both As(III) and As(V), photosynthetic pigment levels slightly increased for the first day with respect to the control, followed by a gradual decline at higher concentrations and durations. An increase in protein content and enzyme activity was observed at moderate exposure conditions, followed by a decrease. Significant positive correlations were determined between accumulated As and ion leakage and lipid peroxidation. Negative correlations were found between accumulated As and total chlorophyll and protein content. Our results suggested that exposure duration and concentration had a strong synergetic effect on antioxidant enzyme activity. The findings of the present study may be useful when this plant is used as a phytoremediator in arsenic-polluted water.
机译:NaAsO 2 和Na 2 HAsO 4 ·7H 2 O。两种砷的积累都取决于砷的浓度和暴露时间。 6天后分别暴露于64μMAs(III)和As(V)的植物中,As的最高积累量为17408和8674μgg -1 。双向方差分析表明,对于暴露于砷(As(III))的植物,暴露持续时间比浓度对As积累的影响更大。相反,暴露浓度对砷暴露于植物(As(V))中的As积累具有更大的影响。砷暴露水平(As(III)接近16μM,As(V)接近64μM)对EC值没有显着影响。除了这些暴露浓度,EC值还取决于持续时间。施用1μM时观察到As(III)对脂质过氧化的显著作用,而暴露于16μMAs(V)后这种作用开始显着。对于As(III)和As(V),相对于对照,光合色素水平在第一天就略有增加,然后在较高浓度和持续时间内逐渐下降。在中等暴露条件下观察到蛋白质含量和酶活性增加,然后下降。在累积的砷与离子泄漏和脂质过氧化之间确定了显着的正相关。发现累积的As与总叶绿素和蛋白质含量之间呈负相关。我们的结果表明,暴露时间和浓度对抗氧化酶活性具有很强的协同作用。当该植物用作砷污染水中的植物修复剂时,本研究的发现可能有用。

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