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Biofilms grown in aquatic microcosms affect mercury and selenium accumulation in Daphnia

机译:生物膜在水生微科肌层中生长,会影响多巴诺的汞和硒积累

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摘要

Experiments examining mercury (Hg) toxicity in Daphnia are usually conducted in highly standardized conditions that prevent the formation of biofilm. Although such standardization has many advantages, extrapolation of results to natural conditions and inference of ecological effects is challenging. This is especially true since biofilms can accumulate metals/metalloids and play a key role in their transfer to higher trophic level organisms. In this study, we experimentally tested the effects of spontaneously appearing biofilm in Daphnia cultures on accumulation of Hg and its natural antagonist selenium (Se) in Daphnia magna. We added Hg (in the form of mercury (II) chloride) at two concentrations (0.2 mu g/L and 2 mu g/L) to experimental microcosms and measured the uptake of Hg and Se by D. magna in the presence and absence of biofilm. To test for consistent and replicable results, we ran two identical experimental sets one week apart. Biofilm presence significantly reduced the accumulation of Hg, while increasing the tissue Se content in D. magna, and these findings were reproducible across experimental sets. These findings indicate that highly standardized tests may not be adequate to predict the bioaccumulation and potential toxicity of metals/metalloids under natural conditions.
机译:实验检查Daphnia中的汞(Hg)毒性通常在高度标准化的条件下进行,以防止生物膜的形成。虽然这种标准化具有许多优点,但对生态效应的自然条件的引渡产生了外推是挑战性的。这尤其如此,因为生物膜可以积聚金属/金属,并在转移到更高营养的水平生物中发挥关键作用。在这项研究中,我们通过实验测试了在Daphnia Magna中HG及其天然拮抗剂硒的积累中的Daphnia培养物中自发出现的生物膜的影响。我们在两种浓度(0.2μg/ l和2μg/ l)上加入hg(以汞(ii)氯化物的形式)至实验微观,并测量了在存在和缺失的情况下D. magna的Hg和Se的摄取生物膜。为了测试一致和可复制的结果,我们将两周分开两种相同的实验组。生物膜存在显着降低了Hg的积累,同时增加了D. Magna中的组织Se含量,这些发现在实验组上可再现。这些发现表明,高度标准化的测试可能不足以预测自然条件下金属/金属的生物累积和潜在毒性。

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