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Combined effects of copper and food on the midge Chironomus riparius in whole-sediment bioassays

机译:铜和食物在全沉积生物测定中对河蟹Chironomus riparius的综合影响

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Effects observed in whole-sediment bioassays must be seen as the joint effect of all sediment characteristics. In whole-sediment bioassays, however, adverse effects on test organisms are usually attributed to the presence of contaminants and effects of food are often ignored. The aim of this study was to analyze the response of the midge Chironomus riparius to sediment spiked with different combinations of food and copper. The responses of C. riparius to these spiked sediments were assessed in 10-day whole-sediment bioassays. Decreases in survival, dry weight, and length of C. riparius were observed with increasing copper concentrations. However, an increase in the amount of food resulted in an increase of larval dry weight and length until copper concentrations reached a critical threshold of 200 mg/kg. In addition, an increase in the amount of food resulted in a decrease of accumulated copper in the larvae. The present study demonstrated that the combination of copper and food in the sediment determines the performance of C. riparius in whole-sediment bioassays. The dependency of C. riparius on high feeding levels, which mask toxic effects, questions its suitability as a test organism for whole-sediment bioassays. Because benthic communities in polluted ecosystems are often exposed to varying levels of both food and toxicants it is concluded that the trophic state of the ecosystem may alter the ecological risk of sediment-bound toxicants to opportunistic benthic invertebrates such as C. riparius.
机译:在整个沉积物生物测定法中观察到的影响必须视为所有沉积物特征的共同影响。然而,在全沉积生物测定中,对测试生物的不利影响通常归因于污染物的存在,而食品的影响通常被忽略。这项研究的目的是分析the蚊Chironomus riparius对食物和铜的不同组合加标的沉积物的响应。在10天的全沉积生物测定法中评估了河滨梭菌对这些加标沉积物的响应。随着铜浓度的增加,观察到存活,干重和河豚草的长度减少。然而,食物量的增加导致幼虫干重和长度的增加,直到铜浓度达到200 mg / kg的临界阈值为止。另外,食物量的增加导致幼虫中积累的铜减少。本研究表明,沉积物中的铜和食物的结合决定了河岸梭菌在整个沉积物生物测定中的性能。 riparius C. riparius对高饲料水平的依赖性掩盖了毒性作用,这质疑其作为全沉积生物测定法的测试生物的适用性。由于受污染的生态系统中的底栖动物群落经常暴露于不同水平的食物和毒物,因此可以得出结论,生态系统的营养状态可能会改变与沉积物结合的毒物对机会性底栖无脊椎动物(如河豚曲霉)的生态风险。

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