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Higher Fluctuating Asymmetry: Indication of Stress on Anadara trapezia Associated with Contaminated Seagrass

机译:更高的波动不对称性:与污染的海草相关的Anadara斜方肌的压力指示

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摘要

Seagrasses are marine angiosperms that colonize near-shore environments. Concern has arisen over increasing concentrations of heavy metals in these systems resulting from industrial and urban development due to the ability of seagrass to accumulate trace metals from the environment without showing any impact on their productivity. This may pose a threat to a coastal community because the polluted seagrass will then provide a source of contamination to seagrass consumers. The main aim of this study was to determine whether there was any detectable effect of heavy metal pollution in seagrass on associated fauna. Fluctuating asymmetry of shell structure of a bivalve, Anadara trapezia, were employed as biomarkers for this environmental study. The result from this study revealed that A. trapezia showed distinct morphological characters and high shell asymmetry in the polluted location. Thus, A. trapezia associated with seagrass may be responsive to heavy metal stress and possibly a good indicator of heavy metal pollution in this system. The present study discusses the possibility of using a more cost-effective biomarker to define areas of heavy metal pollution.
机译:海草是在近岸环境中定殖的海洋被子植物。由于海草能够从环境中积累痕量金属而不会对它们的生产率产生任何影响,因此,由于工业和城市的发展,人们对这些系统中重金属的浓度不断增加表示关注。这可能对沿海社区构成威胁,因为受污染的海草将为海草消费者提供污染源。这项研究的主要目的是确定海草中重金属污染对相关动物是否有可检测的影响。双壳动物Anadara trapezia的壳结构的波动不对称被用作该环境研究的生物标记。这项研究的结果表明,梯形曲霉在受污染的位置表现出明显的形态特征和高度的壳不对称性。因此,与海草相关的梯形曲霉可能对重金属胁迫作出反应,并且可能是该系统中重金属污染的良好指标。本研究讨论了使用更具成本效益的生物标记物来定义重金属污染区域的可能性。

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