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Functional response of tropical estuarine benthic assemblages to perturbation by Polycyclic Aromatic Hydrocarbons

机译:热带河口底栖生物对多环芳烃扰动的功能响应

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摘要

The potential effects of perturbations by Polycyclic Aromatic Hydrocarbons (PAHs) on nematode and macrobenthos assemblages were investigated using the Biological Traits Analysis (BTA). We sampled at tidal flats near an oil refinery and in a reference estuary. Morphological and ecological traits of benthic fauna were selected and analyzed in order to assess the contribution of PAHs concentrations, the proximity to the oil refinery, the sediment characteristics and interaction between these predictor variables on benthic fauna. Multivariate analyses (DISTLM and db-RDA), showed that a large fraction of functional and taxonomic variation of benthic assemblages was explained by the interaction between location and sediment characteristics. The interaction between ∑PAHs and sediment characteristics was relatively low but significant. The results showed that taxonomic and functional variability of benthic assemblages were driven by natural and anthropogenic variables and BTA was an important auxiliary tool for distinguishing these responses. The amount of variability explained by the model was higher for nematode assemblages than to macrofaunal assemblages, showing a potential higher sensitivity of this group to the predictor variables.
机译:使用生物特征分析(BTA)研究了多环芳烃(PAHs)干扰对线虫和大底栖动物的潜在影响。我们在炼油厂附近和参考河口附近的滩涂处取样。选择底栖动物的形态和生态特征并进行分析,以评估PAHs浓度的贡献,与炼油厂的距离,沉积物特征以及这些预测变量对底栖动物的相互作用。多变量分析(DISTLM和db-RDA)表明,底栖组合的功能和分类学变化很大部分是由位置和沉积物特征之间的相互作用所解释的。 ∑PAHs与沉积物特征之间的相互作用相对较低,但意义重大。结果表明,底栖动物的分类学和功能变异受自然和人为因素驱动,而BTA是区分这些反应的重要辅助工具。该模型说明的线虫组合的变异性要比大型动物组合的变异性高,这表明该组对预测变量的潜在敏感性更高。

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