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Co-transport of metal complexes by the green mussel Perna viridis

机译:绿色贻贝Perna viridis与金属配合物的共同运输

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We examined the uptake of ligand-bound metals (Cd and Zn) by the green mussel Perna viridis using defined artificial seawater. Different free ion concentrations (1 pM to 10 AM) in uptake solutions were created by adding different amounts of total metals (Cd 0.1 nM to 0.1 mM; Zn 0.5 nM to 0.05 mM) and ligands (EDTA, NTA, citric acid). Our results showed that Cd and Zn uptake could not be fully explained by the free Cd and Zn concentrations in the presence of different ligands, indicating that metal-ligand complexes were at least partially available for uptake by the mussels. Total Zn concentrations appeared to be a better predictor of metal uptake than the free Zn ion concentrations in the presence of different ligands. Uptake of lipophilic organic metal complexes was substantially greater than the hydrophilic metal complexes, even though the free ion concentration was comparable or lower. Moreover, the radiolabeled ligand compounds were directly accumulated by the mussels. The accumulation of metal complexes may explain the increased metal uptake with increasing ligand and total metal concentration, even though the free ion metal concentration was constant. Overall, our experimental results indicated that free metal ion cannot fully explain metal uptake since metal complex species were also available to the mussels to some extent, apparently through a co-transport process.
机译:我们使用定义的人工海水检查了贻贝绿贻贝对绿配体对配体结合的金属(镉和锌)的吸收。通过添加不同量的总金属(Cd 0.1 nM至0.1 mM; Zn 0.5 nM至0.05 mM)和配体(EDTA,NTA,柠檬酸),在吸收溶液中产生不同的游离离子浓度(1 pM至10 AM)。我们的结果表明,在存在不同配体的情况下,游离Cd和Zn的浓度不能完全解释Cd和Zn的吸收,这表明贻贝至少可以部分吸收金属-配体配合物。在不同配体存在下,总锌的浓度似乎比游离锌离子的浓度更好地预测了金属的吸收。即使游离离子浓度相当或更低,亲脂性有机金属络合物的摄取也比亲水性金属络合物大得多。而且,放射性标记的配体化合物直接由贻贝积累。金属配合物的积累可能解释了金属的吸收随着配体和总金属浓度的增加而增加,即使自由离子金属浓度恒定。总体而言,我们的实验结果表明,游离金属离子不能完全解释金属的吸收,因为贻贝在某种程度上也可以通过共运过程获得金属络合物。

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