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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Complex physiological traits as biomarkers of the sub-lethal toxicological effects of pollutant exposure in fishes
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Complex physiological traits as biomarkers of the sub-lethal toxicological effects of pollutant exposure in fishes

机译:复杂的生理特性作为鱼类污染物暴露的亚致死毒理学效应的生物标记

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Complex physiological traits, such as routine aerobic metabolic rate or exercise performance, are indicators of the functional integrity of fish that can reveal sub-lethal toxicological effects of aquatic pollutants. These traits have proved valuable in laboratory investigations of the sub-lethal effects of heavy metals, ammonia and various xenobiotics. It is not known, however, whether they can also function as biomarkers of the complex potential range of effects upon overall functional integrity caused by exposure to mixtures of chemicals in polluted natural environments. The current study used portable swimming respirometers to compare exercise performance and respiratory metabolism of fish exposed in cages for three weeks to either clean or polluted sites on three urban European river systems: the river Lambro, Milan, Italy; the rivers Blythe, Cole and Tame, Birmingham, UK; and the river Amstel, Amsterdam, The Netherlands. The UK and Italian rivers were variously polluted with high levels of both bioavailable heavymetals and organics, and the Amstel by mixtures of bioavailable organics at high concentrations. In both the UK and Italy, indigenous chub (Leuciscus cephalus) exposed to clean or polluted sites swam equally well in an initial performance test, but the chub from polluted sites could not repeat this performance after a brief recovery interval. These animals were unable to raise the metabolic rate and allocate oxygen towards exercise in the second trial, an effect confirmed in successive campaigns in Italy. Swimming performance was therefore a biomarker indicator of pollutant exposure in chub exposed at these sites. Exposure to polluted sites on the river Amstel did not affect the repeat swimming performance of cultured cloned carp ( Cyprinus carpio), indicating either a species-specific tolerance or relative absence of heavy metals. However, measurements of oxygen uptake during swimming revealed increased rates of routine aerobic metabolism in both chub and carp at polluted sites in all of the rivers studied, indicating a sub-lethal metabolic loading effect. Therefore, the physiological traits of exercise performance and metabolic rate have potential as biomarkers of the overall sub-lethal toxic effects of exposure to complex mixtures of pollutants in rivers, and may also provide insight into why fish do not colonize some polluted environments.
机译:复杂的生理特征,例如常规有氧代谢率或运动表现,是鱼类功能完整性的指标,可以揭示水污染物的亚致死毒理学影响。这些特征在重金属,氨和各种异生物素的亚致死作用的实验室研究中被证明是有价值的。但是,还不清楚它们是否还可以作为生物标志物,说明在受污染的自然环境中暴露于化学品混合物对整体功能完整性造成的潜在复杂影响范围。当前的研究使用便携式游泳呼吸器来比较在三个欧洲城市河流系统中干净或污染的网箱中暴露在笼子中三周之内的鱼的运动表现和呼吸代谢。英国伯明翰的布莱斯,科尔和塔姆河;以及荷兰阿姆斯特丹的阿姆斯特尔河。英国和意大利的河流被高浓度的可生物利用的重金属和有机物污染,而阿姆斯特尔河则被高浓度的可生物利用的有机物污染。在英国和意大利,在最初的性能测试中,暴露于干净或受污染场所的本地块茎(Leuciscus cephalus)游动效果均相同,但经过短暂恢复间隔后,来自受污染场所的块茎无法再恢复这种性能。在第二次试验中,这些动物无法提高新陈代谢的速度并无法分配氧气进行运动,这种效果在意大利的连续运动中得到了证实。因此,游泳表现是这些地点暴露于中的污染物暴露的生物标志物指标。暴露于阿姆斯特尔河上受污染的地点并没有影响养殖的鲤鱼的重复游泳性能,这表明对物种的特异性耐受或相对缺乏重金属。然而,在游泳过程中对氧气吸收的测量结果显示,在所有研究的河流中,和鲤鱼在受污染的地方,日常有氧代谢速率均有所增加,这表明亚致命的代谢负荷效应。因此,运动表现和新陈代谢率的生理特征可能成为暴露于河流中复杂污染物混合物中的整体亚致死毒性作用的生物标志物,并且还可能为鱼类为何无法在某些污染环境中定殖提供见解。

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