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The potential use of metallothionein in the clam Ruditapes decussatus as a biomarker of in situ metal exposure

Identifieur interne : 000C80 ( Main/Exploration ); précédent : 000C79; suivant : 000C81

The potential use of metallothionein in the clam Ruditapes decussatus as a biomarker of in situ metal exposure

Auteurs : A. Hamza-Chaffai [Tunisie] ; J. C Amiard [France] ; J. Pellerin ; L. Joux [France] ; B. Berthet

Source :

RBID : ISTEX:2F54509B764E27E1241439C7DFFF5D12F089FC26

Descripteurs français

English descriptors

Abstract

This work aimed to validate the relationship between metallothioneins (MTs) and metals (Cd, Cu and Zn) in field conditions. Specimens of the marine bivalve Ruditapes decussatus (Linné, 1758) from Gargour were transferred in two sites: Gargour and Sidi Mansour, both situated along the south-eastern coast of Tunisia. The bivalves were removed from pairs of cages at day 0 (date of transplantation), day 62 and day 132. Metals (Cd, Cu and Zn) and MTs were determined in the subcellular fractions of the digestive gland. In Gargour, metal and MT levels increased significantly after 62 days of transplantation. However, they showed modest and non-significant variations in Sidi Mansour. Zn was mainly associated with the insoluble fraction, whereas Cd and Cu percentages in the soluble and the insoluble fractions were equivalent. Simple correlation analysis showed a positive and significant relationship between MTs and each metal. If all metals were taken together, multiple correlations showed that MTs were significantly correlated with Cd and Zn, with an important coefficient for Cd, but no significant relationship was observed for Cu. Gel filtration chromatography showed that in the heat stable fraction, the only cytosolic SH rich compounds have an apparent low molecular mass (about 15 kDa), which could correspond to metallothioneins. In the digestive gland of R. decussatus MTs responded to moderate increases of metal contamination, without interference with other factors, and could be a promising biochemical indicator of metal exposure.

Url:
DOI: 10.1016/S0742-8413(00)00147-X


Affiliations:


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