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Does metamorphosis increase the susceptibility of frogs to highly hydrophobic contaminants?

机译:变态会增加青蛙对高度疏水性污染物的敏感性吗?

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The purpose of this study was to determine whether the process of metamorphosis in amphibians increases the chemical activity of hydrophobic contaminants such as polychlorinated biphenyls (PCBs). We conducted an experiment in which green frog tadpoles were orally dosed with a PCB mixture; then placed into clean water to eliminate the chemicals as metamorphosis occurred. On several sampling dates before and during metamorphosis, organisms were sacrificed and analyzed to determine lipid contents and concentrations of individual PCB congeners. The majority of the PCBs studied in this experiment showed increases in chemical activity (fugacity) as a result of the physical changes that occurred during amphibian metamorphosis. A positive relationship was observed between PCB hydrophobicity and the magnitude of the fugacity increase. We determined that the fugacity of a persistent PCB congener will increase during green frog metamorphosis if its log K-ow value is greater than 5.85. The fugacity of some of the more highly hydrophobic PCBs increased during metamorphosis by up to a factor of 4. Because of the rapid increases in chemical activity that were observed during metamorphosis, we conclude that toxicity tests involving hydrophobic organic contaminants should be conducted not only on tadpoles or adult frogs, but also on metamorphosing amphibians.
机译:这项研究的目的是确定两栖动物的变态过程是否会增加诸如多氯联苯(PCBs)等疏水性污染物的化学活性。我们进行了一项实验,在实验中给绿蛙green口服多氯联苯混合物。然后放入干净的水中以消除发生变质时的化学物质。在变态之前和期间的几个采样日期,处死生物并进行分析,以确定脂质含量和各个PCB同系物的浓度。在此实验中研究的大多数PCB均表明,由于两栖动物变态期间发生的物理变化,化学活性(烟度)增加。在PCB疏水性和逸度增加量之间观察到正相关。我们确定,如果持久青蛙的同系物log K-ow值大于5.85,则持久性PCB同类物的逸度将在蛙变态过程中增加。在变态过程中,一些疏水性更高的PCB的逸度增加了多达4倍。由于在变态过程中观察到化学活性的迅速增加,我们得出结论,涉及疏水性有机污染物的毒性试验不仅应在or或成年青蛙,也可以变态的两栖动物。

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