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基于生物能量学对纽约哈德逊河上游两个受污染地点的树燕雏鸟体内多氯联苯同系物进行的建模。

Bioenergetics-based modeling of individual PCB congeners in nestling tree swallows from two contaminated sites on the upper Hudson River, New York.

作者信息

Nichols John W, Echols Kathy R, Tillitt Donald E, Secord Anne L, McCarty John P

机构信息

US Environmental Protection Agency, National Health and Environmental Effects Research Laboratory, Mid-Continent Ecology Division, Duluth, Minnesota 55804, USA.

出版信息

Environ Sci Technol. 2004 Dec 1;38(23):6234-9. doi: 10.1021/es0497734.

Abstract

A bioenergetics-based model was used to simulate the accumulation of total PCBs and 20 PCB congeners by nestling tree swallows at two contaminated sites on the Upper Hudson River, New York. PCB concentrations in birds were calculated as the sum of inherited residues and those acquired through consumption of contaminated insects. Close agreement between simulations and measured residues in 5-, 10-, and 15-day-old nestlings was obtained when PCB concentrations in the diet were set equal to those in food boli taken from adult birds. These simulations were further optimized by fitting the value of a dietary assimilation efficiency constant. Fitted constants for both sites were similar and averaged about 0.7. An evaluation of model performance for individual congeners provided no evidence of metabolic biotransformation. The results of this study are consistent with a companion effort in which principal components analysis was used to compare PCB congener patterns in insects and in tree swallow eggs, nestlings, and adults. Together, these studies establish a quantitative linkage between nestling tree swallows and the insects that they consume and provide strong support for the use of nestling swallows as a biomonitoring species for exposure assessment.

摘要

基于生物能量学的模型被用于模拟纽约州哈得逊河上游两个受污染地点的树燕雏鸟体内多氯联苯总量及20种多氯联苯同系物的积累情况。鸟类体内多氯联苯的浓度计算为遗传残留量与通过食用受污染昆虫所获取的残留量之和。当将雏鸟饮食中的多氯联苯浓度设定为与从成年鸟类采集的食团中的浓度相等时,在5日龄、10日龄和15日龄雏鸟的模拟值与实测残留量之间获得了高度一致。通过拟合饮食同化效率常数的值,对这些模拟进行了进一步优化。两个地点的拟合常数相似,平均约为0.7。对单个同系物的模型性能评估未发现代谢生物转化的证据。本研究结果与一项配套研究一致,在该配套研究中,主成分分析被用于比较昆虫以及树燕蛋、雏鸟和成年鸟体内的多氯联苯同系物模式。这些研究共同建立了树燕雏鸟与其所食用昆虫之间的定量联系,并为将树燕雏鸟用作暴露评估的生物监测物种提供了有力支持。

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