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在原位暴露于镉和锌后,金属硫蛋白在双壳贝类河蚬净化阶段的关键作用。

The key role of metallothioneins in the bivalve Corbicula fluminea during the depuration phase, after in situ exposure to Cd and Zn.

作者信息

Baudrimont Magalie, Andres Sandrine, Durrieu Gilles, Boudou Alain

机构信息

LEESA, Laboratoire d'Ecophysiologie et Ecotoxicologie des Systèmes Aquatiques, Université Bordeaux 1/UMR CNRS 5805, Place du Dr Peyneau, 33120, Arcachon, France.

出版信息

Aquat Toxicol. 2003 Apr 10;63(2):89-102. doi: 10.1016/s0166-445x(02)00134-0.

Abstract

An experimental study of the role of metallothioneins (MTs) in Cd and Zn depuration processes in the freshwater bivalve Corbicula fluminea was conducted after in situ exposure on the river Lot (France). Specimens of adult C. fluminea were first transplanted from a lacustrine reference site to a polymetallic polluted station (Bouillac, (B)) for a 42-days' exposure period from September to November 1996. They were then depurated after transfer to the laboratory, and were sub-sampled periodically until May 1997. During the first phase, MT concentrations measured with the Mercury-Saturation Assay were induced for a factor of 3.5 compared with time 0, whereas metal uptake showed accumulation factors of 17 and 4 for Cd and Zn, respectively. During the depuration phase, Cd and Zn concentrations decreased by 18 and 70%, respectively, giving estimated biological half-lives of 500 and 40 days. During the same period, MT concentrations decreased by 37% after transfer under unpolluted conditions, especially between 0 and 3 days, suggesting that MTs play a predominant role in Cd depuration. The quantity of Cd sequestered by the MT fraction, after size-exclusion liquid chromatography, represents on average 40% of the total Cd bioaccumulated in the soft body of the molluscs, compared with only 4-9% for total accumulated Zn. This essential metal was principally bound to low molecular weight proteins, which represented 20% of total Zn. Furthermore, it was observed that MTs had a key role in Cd remanence in the bivalves, and it was also reported that other proteins or small peptides were involved in the depuration of Zn.

摘要

在法国洛特河进行原位暴露后,开展了一项关于金属硫蛋白(MTs)在淡水双壳贝类河蚬Cd和Zn净化过程中作用的实验研究。成年河蚬样本首先从一个湖泊参考地点移植到一个多金属污染站点(布亚克,(B)),于1996年9月至11月进行为期42天的暴露期。然后将它们转移到实验室进行净化,并定期进行子采样直至1997年5月。在第一阶段,用汞饱和分析法测得的MT浓度与时间0相比增加了3.5倍,而金属摄取显示Cd和Zn的累积系数分别为17和4。在净化阶段,Cd和Zn浓度分别下降了18%和70%,估计生物半衰期分别为500天和40天。在同一时期,在未受污染条件下转移后MT浓度下降了37%,尤其是在0至3天之间,这表明MTs在Cd净化中起主要作用。经尺寸排阻液相色谱分析后,MT部分螯合的Cd量平均占软体动物体内生物累积总Cd的40%,而累积总Zn的这一比例仅为4 - 9%。这种必需金属主要与低分子量蛋白质结合,低分子量蛋白质占总Zn的20%。此外,观察到MTs在双壳贝类Cd残留中起关键作用,并且还报道了其他蛋白质或小肽参与Zn的净化。

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