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安大略湖狗鱼体内多氯联苯浓度的性别差异。

Sex difference in polychlorinated biphenyl concentrations of burbot Lota lota from Lake Erie.

机构信息

United States Geological Survey, Great Lakes Science Center, 1451 Green Road, Ann Arbor, MI 48105, USA.

出版信息

Arch Environ Contam Toxicol. 2013 Aug;65(2):300-8. doi: 10.1007/s00244-013-9901-9. Epub 2013 Apr 17.

Abstract

Whole-fish polychlorinated biphenyl (PCB) concentrations were determined for 25 female and 25 male burbot Lota lota from Lake Erie. Bioenergetics modeling was used to investigate whether the sex difference in growth rate resulted in a difference in gross growth efficiency (GGE) between the sexes. For ages 6-13 years, male burbot averaged 28 % greater PCB concentrations than female burbot. The sex difference in PCB concentrations widened for ages 14-17 years, with male burbot having, on average, 71 % greater PCB concentrations than female burbot. Bioenergetics modeling results showed that the faster growth rate exhibited by female burbot did not lead to greater GGE in female individuals of the younger burbot and that the faster growth by female fish led to female GGE being only 2 % greater than male GGE in older burbot. Although our bioenergetics modeling could not explain the observed sex difference in PCB concentrations, we concluded that a sex difference in GGE was the most plausible explanation for the sex difference in PCB concentrations of burbot ages 6-13 years. Not only are male fish likely to be more active than female fish, but the resting metabolic rate of male fish may be greater than that of female fish. We also concluded that the widening of the sex difference in PCB concentrations for the older burbot may be due to many of the older male burbot spending a substantial amount of time in the vicinity of mouths of rivers contaminated with PCBs.

摘要

从伊利湖采集了 25 只雌性和 25 只雄性欧白鲑,对其体内的多氯联苯(PCB)浓度进行了检测。采用生物能量学模型研究了生长率的性别差异是否导致了两性间总生长效率(GGE)的差异。在 6-13 岁年龄组中,雄性欧白鲑的 PCB 浓度平均比雌性高 28%。在 14-17 岁年龄组中,两性之间的 PCB 浓度差异扩大,雄性的 PCB 浓度平均比雌性高 71%。生物能量学模型的结果表明,雌性欧白鲑较快的生长速度并没有导致年轻欧白鲑个体的 GGE 更高,而且雌性鱼类较快的生长速度仅导致老年欧白鲑的雌性 GGE 比雄性 GGE 高 2%。尽管我们的生物能量学模型无法解释观察到的 PCB 浓度性别差异,但我们得出结论,GGE 的性别差异是欧白鲑 6-13 岁年龄组 PCB 浓度性别差异的最合理解释。雄性鱼可能比雌性鱼更活跃,而且雄性鱼的静息代谢率可能高于雌性鱼。我们还得出结论,老年欧白鲑 PCB 浓度性别差异的扩大可能是由于许多老年雄性欧白鲑在受 PCB 污染的河流入海口附近停留了大量时间。

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