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铜暴露后贻贝 Mytilus coruscus 铜摄取和外排减少:对生物监测的启示。

Reduced copper uptake and efflux by the mussel Mytilus coruscus after Cu exposure: Implication for biomonitoring.

机构信息

Research Centre for the Oceans and Human Health, City University of Hong Kong Shenzhen Research Institute, Shenzhen 518057, China; School of Energy and Environment and State Key Laboratory of Marine Pollution, City University of Hong Kong, Kowloon, Hong Kong, China.

Research Centre for the Oceans and Human Health, City University of Hong Kong Shenzhen Research Institute, Shenzhen 518057, China; School of Energy and Environment and State Key Laboratory of Marine Pollution, City University of Hong Kong, Kowloon, Hong Kong, China.

出版信息

Environ Pollut. 2024 Dec 1;362:124956. doi: 10.1016/j.envpol.2024.124956. Epub 2024 Sep 13.

Abstract

The hard-shell mussels Mytilus coruscus have been extensively employed in pollution biomonitoring. Earlier studies indicated that metal concentrations in Mytilus coruscus may not accurately reflect the true metal contamination levels in the sampling areas, possibly due to their modified metal uptake and efflux. Given the likelihood of mussels in the field being exposed to intermittent metal contaminants, this study investigated whether different Cu pre-exposures significantly affected its uptake and efflux upon Cu exposure. We found significant reduction in Cu uptake rate constant (k) and efflux rate constant (k) in the mussels with varying Cu pre-exposure regimes. Specifically, the k decreased from 1.55 ± 0.37 L g d in the control group to 0.65 ± 0.19 after 5 days and 0.53 ± 0.28 after 15 days of exposure to 20 μg L Cu, respectively, and then was further reduced to as low as 0.096 ± 0.046 L g d following a 5-day exposure at 50 μg L Cu. Similarly, the k decreased from 0.18 ± 0.020 to 0.15 ± 0.015 d following 5-15 days of exposure to 20 μg L Cu, and further decreased to 0.081 ± 0.023 d after a 5-day exposure at 50 μg L Cu. Our subcellular distribution analysis underscored the critical role of the metallothionein-like protein (MTLP) fraction in modifying both Cu k and k during the rapid-depuration phase (k), whereas the metal-rich granule (MRG) fraction influenced the k during the second depuration phase (k). This study demonstrated that environmental assessments utilizing biomonitoring species should consider the exposure of these organisms to ensure accurate interpretations of metal contamination in marine ecosystems and enhance the effectiveness of these species in environmental monitoring. This crucial factor is often overlooked, potentially skewing data and leading to misinterpretations of environmental health and pollution levels.

摘要

利用厚壳贻贝(Mytilus coruscus)进行污染生物监测已得到广泛应用。早期研究表明,贻贝体内的金属浓度可能无法准确反映采样区域的真实金属污染水平,这可能是由于其对金属的摄取和排出发生了改变。鉴于现场贻贝可能会间歇性地暴露于金属污染物中,本研究调查了不同的 Cu 预暴露是否会显著影响其在 Cu 暴露时的摄取和排出。我们发现,在不同的 Cu 预暴露条件下,贻贝的 Cu 摄取率常数(k)和排出率常数(k)显著降低。具体而言,在对照组中,k 值从 1.55±0.37 L gd 降低到暴露于 20μg L Cu 5 天后的 0.65±0.19 和 15 天后的 0.53±0.28,然后在暴露于 50μg L Cu 5 天后进一步降低至低至 0.096±0.046 L gd。同样,k 值从暴露于 20μg L Cu 5-15 天后的 0.18±0.020 降低到 0.15±0.015 d,然后在暴露于 50μg L Cu 5 天后进一步降低至 0.081±0.023 d。我们的亚细胞分布分析强调了金属硫蛋白样蛋白(MTLP)部分在快速净化阶段(k)改变 Cu k 和 k 的关键作用,而富含金属的颗粒(MRG)部分在第二净化阶段(k)影响 k。本研究表明,利用生物监测物种进行环境评估时应考虑这些生物体的暴露情况,以确保对海洋生态系统中金属污染的准确解释,并提高这些物种在环境监测中的有效性。这个关键因素经常被忽视,可能会扭曲数据,导致对环境健康和污染水平的误解。

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