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Is external contamination with organic pollutants important for concentrations measured in bird feathers?

机译:有机污染物的外部污染对测量鸟羽中的浓度是否重要?

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Although there is increasing evidence that bird feathers can be used as a non-destructive biomonitoring tool for organic pollutants [such as polychlorinated biphenyls (PCBs), polybrominated diphenyl ethers (PBDEs) and p,p'-dichlorodiphenyl-trichloroethane and metabolites (DDTs)], the importance of external contamination of these organic pollutants onto the feathers has not been considered. Here we examine to which extent external contamination of organic pollutants occurs onto the feathers of a predatory bird. We have analysed primary wing feathers of 16 common buzzards (Buteo buteo) collected in Belgium. In order to study differences in external contamination within and among wing feathers, the vane and the shaft of each feather were separated and were analysed in parallel, pooled for the three inner and the three outer primary wing feathers. Most organic pollutants could be measured in these pooled samples of both the vane and the shaft. Concentrations of hexachlorobenzene (HCB), DDTs, PCBs and PBDEs were significantly higher in the vane compared to the shaft. The profiles of PCBs and PBDEs in the shaft closely resembled the profiles in liver and muscle tissue, in contrast with the profile of the vane. The PBDE congeners 47, 99 and 153 had a similar contribution in shafts of primary feathers of common buzzards. Although these results suggest that external contamination could be important on the vane, no differences in the profile of PBDEs or PCBs were found between the inner and outer (more exposed) primary feathers. Furthermore, correlation coefficients with internal tissues were not univocally distinct between the shaft and the vane. Therefore our results indicate that the higher concentrations found in the vane in comparison to the shaft do not originate from external contamination via the air, but that other factors such as structure and chemical properties of the feathers may be of importance. The lack of significant external contamination onto the feather surface is an additional asset for the use of feathers as a non-destructive biomonitor for organic pollutants.
机译:尽管越来越多的证据表明鸟羽毛可以用作有机污染物(例如多氯联苯(PCBs),多溴二苯醚(PBDEs)和对,p'-二氯二苯基-三氯乙烷和代谢物(DDT))的非破坏性生物监测工具。 ],尚未考虑这些有机污染物在羽毛上的外部污染的重要性。在这里,我们研究了掠夺性鸟类的羽毛在多大程度上发生了有机污染物的外部污染。我们分析了比利时收集的16种常见秃鹰的主要翼羽(Buteo buteo)。为了研究翼羽内部和之间的外部污染差异,将每个羽毛的叶片和杆身分开并进行平行分析,以汇总三个内部和三个外部主翼羽毛。在叶片和竖井的这些合并样本中,可以测量大多数有机污染物。与竖井相比,叶片中的六氯苯(HCB),滴滴涕,多氯联苯和多溴二苯醚的浓度明显更高。与叶片的轮廓形成对比,杆身中的PCBs和PBDEs的轮廓与肝脏和肌肉组织中的轮廓非常相似。多溴二苯醚同源物47、99和153在普通秃鹰初级羽毛的杆身中具有相似的作用。尽管这些结果表明外部污染对叶片很重要,但内部和外部(暴露度更高)的初级羽毛之间的多溴二苯醚或多氯联苯的分布没有发现差异。此外,在轴和叶片之间,与内部组织的相关系数并不是唯一不同的。因此,我们的结果表明,与杆身相比,叶片中发现的较高浓度并非源于通过空气的外部污染,而是其他因素(例如羽毛的结构和化学性质)可能很重要。羽毛表面缺乏明显的外部污染是将羽毛用作有机污染物的非破坏性生物监测器的另一项资产。

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