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Is It Justifiable to Pool Chironomus Species in Trace ElementContamination Studies?

机译:在痕量元素污染研究中是否有理由将Chironomus物种汇集起来?

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Larvae of the insect Chironomus (Chironomidae: Diptera) have great potential for estimating the bioavailability of sedimentary trace elements because they are common in fine sediments and tolerate high concentrations of these contaminants. Their use as biomonitors is limited by the fact that they are difficult to identify as to species, and the species can differ in their trace element concentrations. To determine whether pooling species would compromise their use as trace element biomonitors, we identified species of Chironomus larvae collected from 22 lakes and measured their concentrations of 9 trace elements. We found that the concentrations of arsenic, barium, cobalt, copper, manganese, and nickel did not generally differ between sympatric Chironomus species, which indicates that they could be pooled for analyses of these trace elements. In contrast, we found that cadmium (Cd), selenium (Se), and zinc (Zn) concentrations differed between species living at the same site according to their feeding behavior, that is, Chironomus species feeding on oxic sediments tended to have higher Cd and Zn concentrations, whereas those feeding on deeper anoxic sediments had higher Se concentrations. Because Se and Zn concentrations in sympatric Chironomus species usually differed by only a factor of 2, separating species based on their feeding behavior might not be as crucial as for Cd if larval Se and Zn concentrations vary greatly from site to site. Environ Toxicol Chem 2019;38:145-159. (c) 2018 SETAC
机译:昆虫Chironomus(Chironomidae:Diptera)的幼虫具有很大的潜力,可以估算沉积微量元素的生物利用度,因为它们在细小沉积物中很常见,并且可以耐受这些污染物的高浓度。由于它们难以确定物种,并且这些物种的痕量元素浓度可能不同,因此限制了它们用作生物监测器。为了确定合并物种是否会损害其作为痕量元素生物监测器的用途,我们鉴定了从22个湖泊中收集的Chironomus幼虫的物种,并测量了9种微量元素的浓度。我们发现同胞Chironomus物种之间砷,钡,钴,铜,锰和镍的浓度通常没有差异,这表明它们可以合并起来用于这些痕量元素的分析。相反,我们发现生活在同一地点的物种之间的镉(Cd),硒(Se)和锌(Zn)浓度根据它们的摄食行为而有所不同,即摄食含氧沉积物的Chironomus物种倾向于具有较高的Cd。和锌的浓度,而以更深的缺氧沉积物为食的那些则具有更高的硒浓度。因为同伴Chironomus物种中的Se和Zn浓度通常仅相差2倍,如果幼虫中Se和Zn的浓度随地点的不同而不同,根据其摄食行为分离物种可能不像Cd那样重要。 Environ Toxicol Chem 2019; 38:145-159。 (c)2018年SETAC

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