Differences in PAH tolerance between Capitella species:: Underlying biochemical mechanisms

被引:48
作者
Bach, L [1 ]
Palmqvist, A [1 ]
Rasmussen, LJ [1 ]
Forbes, VE [1 ]
机构
[1] Roskilde Univ Ctr, Dept Chem & Life Sci, DK-4000 Roskilde, Denmark
关键词
benthos; biomarker; polycyclic aromatic hydrocarbons; biotransformation; subcellular distribution; comet assay;
D O I
10.1016/j.aquatox.2005.06.002
中图分类号
Q17 [水生生物学];
学科分类号
071004 ;
摘要
The polychaete Capitella capitata consists of a species complex within which differences in tolerance to toxicants have been observed. For example, it has been shown that Capitella sp. S is more sensitive (e.g., in terms of survival, growth and reproduction) to PAH and other stressors than the more opportunistic Capitella sp. I, which is able to take up and biotransform the PAH fluoranthene (Flu). In the present study, an investigation was performed to examine whether differences in tolerance between Capitella species sp. I and sp. S are due to differences in biotransformation, measured as the amount of Flu-metabolites produced by worms. We exposed both sibling species to sediment contaminated with 21 and 26 mu g Flu/g dry weight sed for 10-15 days. We found that Capitella sp. I took up more Flu from the sediment than sp. S (346 mu g Flu eq./g dry weight worm versus 219 mu g Flu eq./g dry weight worm, respectively), but as sp. I was much more effective at biotransforming this PAH (62% versus 11%, respectively of total Flu), the net amounts of parent Flu accumulated by the two species were similar. We found significant differences in the subcellular distribution of Flu and its metabolites between sibling species, with sp. I accumulating mostly in the cytosol and sp. S accumulating mostly in the membrane fraction. A previous study by our group showed Flu to be genotoxic to sp. I upon biotransformation. In the present study, we found no detectable genotoxicity in sp. S following Flu exposure. Our results demonstrate that DNA damage is tightly coupled to biotransformation ability and that other aspects of PAH toxicity (e.g., membrane disruption) are more relevant than DNA damage for predicting tolerance differences between these species. (c) 2005 Elsevier B.V. All rights reserved.
引用
收藏
页码:307 / 319
页数:13
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