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首页> 外文期刊>Comparative biochemistry and physiology. Toxicology & pharmacology: CBP >Comparison of metallothionein concentrations and tissue distribution of trace metals in crabs(Pachygrapsus marmoratus) from a metal-rich estuary,in an out of the reproductive season
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Comparison of metallothionein concentrations and tissue distribution of trace metals in crabs(Pachygrapsus marmoratus) from a metal-rich estuary,in an out of the reproductive season

机译:生殖季节外富金属河口蟹中金属硫蛋白的含量和微量金属的组织分布比较

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摘要

Crabs, Pachygrapsus marmoratus, were sampled in June 1997 and February 1998 from two sites (at the mouth and 25 km upstream) in the metal-rich Gironde estuary, France. Gills and hepatopancreas were analysed for metal (Cd, Cu, Zn) and metallothionein (MT) contents, in order to examine the influence of both biological and environmental factors on the physico-chemical forms of detoxified metal storage in the crabs. The concentrations of MT and both cytosolic and insoluble metals were not greatly different between males and females, and the influence of organ weights was also minimal. Intersite differences were observed, probably resulting from the gradient of salinity in the estuary, which interacts with both the chemical speciation and bioavailability of metals, and the general protein metabolism of the crabs. Seasonal changes were also important, probably in interaction with the moult and reproductive cycles. In February, concentrations of insoluble metals were generally higher than in June, in both organs, suggesting that essential metals, particularly Zn, are stored during winter then remobilised during the breeding season. The natural variability in the concentrations of MT often concealed any relationship with accumulated metal concentrations. Thus MT in crabs cannot be considered as a useful biomarker of metal pollution.
机译:1997年6月和1998年2月,从法国富含金属的吉伦特河口两个地点(上游和上游25公里处)采样了蟹(Pachygrapsus marmoratus)。分析examine和肝胰腺中金属(镉,铜,锌)和金属硫蛋白(MT)的含量,以检查生物学和环境因素对蟹中排毒金属储存的理化形式的影响。雌雄之间MT以及胞质和不溶性金属的浓度差异不大,并且器官重量的影响也很小。观察到站点间的差异,可能是由于河口盐度的梯度所致,该梯度与金属的化学形态和生物利用度以及蟹的一般蛋白质代谢相互作用。季节性变化也很重要,可能与蜕皮和生殖周期有关。 2月份,两个器官中的不溶性金属浓度普遍高于6月,这表明必需金属,特别是锌,在冬季储存,然后在繁殖季节转移。 MT浓度的自然变化通常掩盖了与累积金属浓度的任何关系。因此,不能将螃蟹中的MT视为金属污染的有用生物标记。

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