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AN ALGAL PROBE FOR COPPER SPECIATION IN MARINE WATERS: LABORATORY METHOD DEVELOPMENT

机译:海水铜含量的藻类探针:实验室方法的发展

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Laboratory-based algal assays were developed to explore the bioavailability of copper to the marine alga Thalassiosira weissflogii. A calibration strategy was developed that avoided use of the synthetic ligand ethylenediaminetetraacetic acid (EDTA) in the Aquil growth medium, thereby allowing ambient metal speciation. In a comparison of T. weissflogii cells grown in Aquil medium with EDTA to medium containing no added copper, zinc, and less than 0.003 nM of EDTA, no significant growth differences were observed after 8 d, indicating adequate stored nutrients. A 30-h assay was selected as the optimal time frame after examination of data from concentration-response experiments. Using ~(65)Cu stable isotope additions, parameters examined included growth, chlorophyll a, copper uptake, phytochelatin production, and dissolved organic carbon excretion. The T. weissflogii specific growth rates decreased from 1.36 d~(-1) at pCu (i.e., the negative logarithmic concentration of free Cu) = 8.8 to 0.56 d~(-1) at pCu = 7.8, whereas intercellular copper concentrations increased from 13.6 to 70.1 fg/cell, respectively. Calculated values of the copper concentration that caused a 50% reduction in algal growth of pCu = 7.7 and copper per algal mass of 625 μg/g were established. Using an algal assay based on EDTA-free culture medium, along with trace-metal clean techniques, the effect of copper on T. weissflogii and the speciation of copper in marine waters can be studied.
机译:开发了基于实验室的藻类检测方法,以探索铜对海藻Thalasiosira weissflogii的生物利用度。开发了一种校准策略,避免了在Aquil生长培养基中使用合成配体乙二胺四乙酸(EDTA),从而实现了周围金属的形成。在具有EDTA的Aquil培养基中与未添加铜,锌和少于0.003 nM EDTA的培养基中生长的T. weissflogii细胞进行比较,在8 d后未观察到明显的生长差异,表明有足够的营养存储。在检查浓度响应实验数据后,选择30小时分析作为最佳时间范围。使用〜(65)Cu稳定同位素添加,检查的参数包括生长,叶绿素a,铜吸收,植物螯合素的产生和溶解的有机碳排泄。 T. weissflogii比生长速率从pCu时的1.36 d〜(-1)(即游离Cu的负对数浓度)= 8.8降低到pCu = 7.8时的0.56 d〜(-1),而胞间铜的浓度从13.6至70.1 fg / cell。建立了导致pCu = 7.7的藻类生长减少50%的铜浓度的计算值,并且每藻质量的铜为625μg/ g。使用基于不含EDTA的培养基的藻类测定法以及痕量金属清洁技术,可以研究铜对魏氏锥虫和海水中铜的形态的影响。

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