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首页> 外文期刊>Environmental Pollution >Comparative studies on the biokinetics of Cd, Cr, and Zn in the green mussel Perna viridis and the Manila clam Ruditapes philippinarum
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Comparative studies on the biokinetics of Cd, Cr, and Zn in the green mussel Perna viridis and the Manila clam Ruditapes philippinarum

机译:Cd,Cr和Zn在淡菜贻贝(Perna viridis)和马尼拉蛤仔菲律宾蛤仔(Ruditapes philippinarum)中的生物动力学比较研究

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A kinetic approach was employed to determine the rates of metal uptake (Cd, Cr and Zn) from the dissolved phase and the rate constants of metal depuration in the mussel Perna viridis and the clam Ruditapes philippinarum. The effects of ambient metal con- centration, salinity, and body size on the metal influx rate were examined. A linear positive relationship was observed between the metal influx rate and the metal concentration in ambient seawater. There was some evidence that Zn uptake was regulated by the bivalves in response to an increase in ambient Zn concentration. The uptake rate constant was highest for Zn and lowest for Cr in both bivalves, and was higher in mussels than in clams. The metal influx rate decreased by 1.6-1.8 times for the three metals when the salinity was increased from 15 ppt to 30 ppt. However, the effect of salinity on Zn influx in mussels was not statistically sig- nificant. A negative relationship of Cd and Zn influx rates with tissue dry weight was also found in both bivalves. Cr uptake in mussels was not significantly correlated with body size, but its uptake in clams was significantly correlated with body size. Metal concentration in ambient seawater appeared to be the most determining factor on metal uptake from the dissolved phase in both bivalves. The efflux rate constants of the three metals were within the range of 0.01-0.03 d~-1, and were comparable between the mussels and the clams. Using a simple bioenergetic-based kinetic model, it was shown that both dissolved uptake and food inges- tion can contribute to metal accumulation in the bivalves. However, Zn accumulation in the clam R. philippinarum was dominated by uptake from food ingestion. Metal partitioning in ingested food was found to be critical in affecting the relative importance of metal uptake from the dissolved phase and food source, primarily because of the large variability of this parameter in natural environments.
机译:动力学方法被用来确定贻贝Perna viridis和蛤仔Ruditapes philippinarum中溶解相的金属吸收速率(Cd,Cr和Zn)以及金属净化的速率常数。研究了周围金属浓度,盐度和体形对金属入流率的影响。观察到金属渗透率与周围海水中金属浓度之间存在线性正相关。有证据表明,随着环境锌浓度的增加,双壳类动物对锌的吸收有调节作用。在两个双壳类动物中,锌的吸收速率常数最高,而铬的吸收速率常数最低,贻贝中的吸收速率常数高于蛤类。当盐度从15 ppt增加到30 ppt时,三种金属的金属流入速率降低了1.6-1.8倍。然而,盐度对贻贝中锌流入的影响在统计学上不显着。在两个双壳类动物中,Cd和Zn的流入速率与组织干重之间也存在负相关关系。贻贝中Cr的摄入量与体型没有显着相关,但蛤类中Cr的摄入量与体型有显着相关。在两个双壳类动物中,周围海水中的金属浓度似乎是从溶解相吸收金属的最主要因素。三种金属的外排速率常数在0.01-0.03 d〜-1范围内,在贻贝和蛤之间相当。使用简单的基于生物能的动力学模型,表明溶解的摄入量和食物摄入均可促进双壳类动物体内金属的积累。然而,蛤仔菲律宾蛤中的锌积累主要来自食物摄入。发现摄取食物中的金属分配对于影响从溶解相和食物来源摄取金属的相对重要性至关重要,这主要是因为该参数在自然环境中的变异性很大。

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