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Developmental patterns of copper bioaccumulation in a marine fish model Oryzias melastigma.

机译:海洋鱼类模型Oryzias melastigma中铜生物富集的发育模式。

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摘要

Allometry is known to be an important factor influencing metal bioaccumulation in animals. However, it is not clear whether effects are due to body size per se or changes in physiological traits during the animals' development. We therefore investigated the biokinetics of copper (Cu) and predicted Cu bioaccumulation during the development of a fish model, the marine medaka. The results revealed that the waterborne Cu uptake rate constant decreased and dietary Cu assimilation efficiency increased during development from larvae to adults. Thus, the allometric dependency of the biokinetic parameters in juveniles and adults can not be simply extrapolated to the whole life cycle. The body Cu concentration in the fish was predicted by the biokinetic model, which showed a rapid increase in the larval stage, followed by a slight increase from juveniles to adults, and then a relatively stable plateau in the post-adult stage. Dietary Cu uptake became more important as fish developed from larvae to juveniles, but became less important from juveniles to adults. These findings suggested that the developmental patterns of metal bioaccumulation are driven by an integrated biological/physiological shift through animals' ontogeny rather than a simple allometric dependent change. The developmental changes of metal uptake should be considered in ecological bioassessment and biomonitoring programs.
机译:众所周知,异速生长是影响动物体内金属生物积累的重要因素。但是,尚不清楚影响是由于本身的体型还是由于动物发育过程中生理特征的变化而引起的。因此,我们研究了鱼类(海洋med)的发育过程中铜(Cu)的生物动力学,并预测了铜的生物富集。结果表明,从幼体到成虫的发育过程中,水基铜的吸收速率常数降低,饮食中的铜同化效率提高。因此,不能简单地将青少年和成年人中生物动力学参数的异速依赖性依赖于整个生命周期。鱼的体内铜浓度是通过生物动力学模型预测的,该模型显示在幼体阶段迅速增加,然后从幼鱼到成年略有增加,然后在成年后阶段达到相对稳定的平台。随着鱼从幼虫发展到幼鱼,膳食中铜的吸收变得越来越重要,而从幼鱼到成年鱼则不再那么重要。这些发现表明,金属生物蓄积的发展模式是由动物个体发育过程中的综合生物学/生理变化驱动的,而不是简单的依赖于变体变化的变化驱动的。在生态生物评估和生物监测计划中应考虑金属吸收的发展变化。

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