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Dynamics of maternally transferred trace elements in oyster larvae and latent growth effects

机译:牡蛎幼体中母体转移的微量元素的动态及其潜在的生长效应

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摘要

Understanding the maternal transfer of contaminants and their potential effects has great implications for a valid ecological assessment of environmental pollution. However, relevant studies on marine bivalves are very limited. Here, we examined the maternal transfer of trace metals in populations of oyster Crassostrea hongkongensis with contrasting metal exposure histories. Elevated accumulation of trace metals was observed in eggs and larvae from contaminated sites, suggesting maternal transfer of multi-metals in natural oyster populations. The dynamics of maternally transferred metals was for the first time documented in this study. We demonstrated that excessively transferred metals in contaminated larvae were rapidly eliminated during the early developmental stage, and the efflux rate of metals in larvae was greatly dependent on environmental contamination level. These results provided the first field evidence of modified metal biokinetics in offsprings due to exposure history of adults in marine bivalves. Moreover, egg production was negatively correlated with the contamination level of metals in eggs. There was a further lagged growth in the contaminated larvae, indicating the potential adverse and latent effects of maternally transferred metals on the viability of oyster offspring. Our findings highlighted the importance of transgenerational studies on long-term metal exposure in marine bivalves.
机译:了解母体污染物的转移及其潜在影响,对有效的环境污染生态评估具有重要意义。但是,有关海洋双壳类动物的相关研究非常有限。在这里,我们研究了母体中微量金属在母体牡蛎Crassostrea hongkongensis种群中的迁移情况,并记录了相反的金属暴露历史。在受污染的地点的卵和幼虫中观察到痕量金属的积累增加,表明母体在天然牡蛎种群中转移了多种金属。这项研究首次记录了母体转移金属的动力学。我们证明,在发育初期,被污染的幼虫中过度转移的金属被迅速消除,并且幼虫中金属的外排率很大程度上取决于环境污染水平。这些结果提供了第一个现场证据,表明由于海洋双壳类动物的成年接触史,其后代的金属生物动力学得到了改善。此外,产蛋量与鸡蛋中金属的污染水平呈负相关。受污染的幼虫进一步滞后生长,表明母体转移的金属对牡蛎后代生存能力的潜在不利和潜在影响。我们的研究结果突显了跨代研究对海洋双壳类动物长期接触金属的重要性。

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