Biomonitoring Climate Change and Pollution in Marine Ecosystems: A Review on Aulacomya ater

Q1 Agricultural and Biological Sciences
M. Cledón, Y. St-Pierre
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引用次数: 10

Abstract

The sedentarism and wide global distribution of the blue mussel Mytilus edulis have made it a useful bioindicator to assess changes in the health status of the marine ecosystem in response to pollution and other environmental stresses. Effective biomonitoring of an ecosystem requires, however, that multiple biomarkers be used to obtain an accurate measure of the cumulative effects of different sources of environmental stress. Here, we provide a first integrated review of the biological, economical, and geographical characteristics of another species of mussels, the ribbed mussel Aulacomya ater. We discuss the use of Aulacomya ater as a complementary biomonitor to the blue mussel to assess the impact of pollutants and climate change. Recent findings have indeed shown that Mytilus edulis and Aulacomya ater have distinctive anatomy and physiology and respond differently to environmental stress. Monitoring of mixed beds containing blue and ribbed mussels may thus represent a unique opportunity to study the effect of environmental stress on the biodiversity of marine ecosystems, most notably in the Southern hemisphere, which is particularly sensitive to climate change and where both species often cohabitate in the same intertidal zones.
海洋生态系统中气候变化和污染的生物监测:黄藻水研究进展
蓝贻贝(Mytilus edulis)的定居性和广泛的全球分布使其成为评估海洋生态系统在污染和其他环境胁迫下健康状况变化的有用生物指标。然而,对生态系统进行有效的生物监测需要使用多种生物标志物来获得不同环境压力来源累积效应的准确测量。在这里,我们提供了另一种贻贝的生物,经济和地理特征的第一个综合综述,肋贻贝Aulacomya水。我们讨论了使用Aulacomya水作为蓝贻贝的补充生物监测仪来评估污染物和气候变化的影响。最近的研究结果确实表明,紫贻贝和紫贻贝具有不同的解剖和生理特征,对环境压力的反应也不同。因此,监测含有蓝贻贝和肋贻贝的混合河床可能是研究环境压力对海洋生态系统生物多样性影响的一个独特机会,尤其是在对气候变化特别敏感的南半球,这两个物种经常在同一个潮间带同居。
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来源期刊
Journal of Marine Biology
Journal of Marine Biology Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
3.10
自引率
0.00%
发文量
3
审稿时长
18 weeks
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