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重金属对淡水贻贝影响的综述。

A review of the effects of heavy metals on freshwater mussels.

机构信息

Department of Animal Ecology, Iowa State University, 50011, Ames, IA, USA.

出版信息

Ecotoxicology. 1995 Dec;4(6):341-62. doi: 10.1007/BF00118870.

Abstract

: The widespread recent decline in the species diversity and population density of freshwater mussels in North America may be partly related to chronic, low-level exposure to toxic metals. As benthic filter-feeding organisms, freshwater mussels are exposed to metals that are dissolved in water, associated with suspended particles and deposited in bottom sediments. Thus, freshwater mussels can bioaccumulate certain metals to concentrations that greatly exceed those dissolved in water. In adult mussels, the most common site of metal uptake is the gill, followed by the mantle and the kidney. The toxic effects of metals on freshwater mussels have been examined in a few acute toxicity tests, but the sublethal effects of long-term exposure to low environmental concentrations are little understood. Sublethal exposure to metals can alter growth, filtration efficiency, enzyme activity and behaviour. Sublethal effects are frequently observed at concentrations that are only half the lethal concentrations. However, few toxicity tests have used environmentally realistic exposure concentrations. Total concentrations of Cd, Cu, Hg and Zn in many oxic surface waters are in the ngl(-1) range, yet many toxicity studies have exposed mussels to concentrations in the μgl(-1) or even the mgl(-1) range. An understanding of the processes by which metals affect freshwater mussels would provide insights on the ecotoxicological significance of metal contamination to natural mussel populations and aid in the development of water-quality criteria that adequately protect mussels.

摘要

: 近年来,北美的淡水贻贝的物种多样性和种群密度普遍下降,这可能部分与长期、低水平暴露于有毒金属有关。作为底栖滤食性生物,淡水贻贝会接触到溶解在水中、与悬浮颗粒结合以及沉积在底泥中的金属。因此,淡水贻贝可以将某些金属生物累积到远远超过水中溶解浓度的水平。在成年贻贝中,金属最常见的吸收部位是鳃,其次是套膜和肾脏。已有一些急性毒性测试研究了金属对淡水贻贝的毒性效应,但对于长期低环境浓度暴露的亚致死效应却知之甚少。亚致死浓度的金属暴露会改变贻贝的生长、过滤效率、酶活性和行为。在仅为半数致死浓度的浓度下,就经常会观察到亚致死效应。然而,很少有毒性测试使用具有实际环境意义的暴露浓度。许多含氧地表水的 Cd、Cu、Hg 和 Zn 的总浓度处于 ng/L 范围内,但许多毒性研究将贻贝暴露于 μgl(-1) 甚至 mgl(-1) 范围内的浓度中。了解金属影响淡水贻贝的过程,将有助于深入了解金属污染对自然贻贝种群的生态毒理学意义,并有助于制定充分保护贻贝的水质标准。

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