Adeleke Babatunde, Robertson-Andersson Deborah, Moodley Gan
Marine Biology, School of Life Sciences, University of KwaZulu-Natal, Westville, Durban, KZN, South Africa.
Heliyon. 2020 Sep 14;6(9):e04744. doi: 10.1016/j.heliyon.2020.e04744. eCollection 2020 Sep.
Changes in seawater chemistry due to anthropogenic uptake of CO by seawater results in a phenomenon termed ocean acidification. Ocean acidification has been predicted to substantially affect the exposure, behaviour, mobility and fate of toxicants with significant impacts on marine organisms. This study assessed the interactive effects of acidification and metal concentrations of Cd and Pb in the exoskeleton of the crab . Crabs were acutely exposed to varying concentrations of Cd (0.5, 0.75 and 1.00 mg/l), Pb (6.50, 8.50, and 10.50 mg/l) and Cd/Pb (4.50, 5.75 and 7.00 mg/l) and near-future pH of 7.2, 7.4 and 7.6 for 96 h and concentrations in the exoskeleton were analyzed using ICP-OES. Cadmium concentrations in the exoskeleton due to pH effects were in the order of 7.4 > 7.6 > 7.2, while concentrations in the exoskeleton exposed to pH 7.4 were significantly higher (ANOVA HSD: df 6; p < 0.01) compared to those of pH 7.2 and 7.6. Crabs exposed to varying Pb concentrations showed no common trend in Pb concentrations with varying pH. Concentrations of Cd and Pb in the exoskeleton of crabs exposed to combined Cd and Pb were significantly higher (ANOVA HSD: df 6; p < 0.01) at pH of 7.2 and 4.50 and 7.00 mg/l exposures. Crabs exposed to mixed metal concentrations showed elevated levels of Cd and Pb compared to those exposed to single metal due to their regulatory capacity when exposed to mixed metals.
海水对人为排放二氧化碳的吸收导致海水化学性质发生变化,从而产生了一种被称为海洋酸化的现象。据预测,海洋酸化将对有毒物质的暴露、行为、迁移性和归宿产生重大影响,进而对海洋生物造成显著影响。本研究评估了酸化与螃蟹外骨骼中镉(Cd)和铅(Pb)金属浓度之间的交互作用。将螃蟹急性暴露于不同浓度的镉(0.5、0.75和1.00毫克/升)、铅(6.50、8.50和10.50毫克/升)以及镉/铅组合(4.50、5.75和7.00毫克/升)环境中,并设置接近未来的pH值7.2、7.4和7.6,暴露96小时,然后使用电感耦合等离子体发射光谱仪(ICP - OES)分析外骨骼中的金属浓度。由于pH值的影响,外骨骼中镉的浓度顺序为7.4>7.6>7.2,与pH值为7.2和7.6时相比,暴露于pH值7.4的外骨骼中镉浓度显著更高(方差分析多重比较:自由度6;p<0.01)。暴露于不同铅浓度下的螃蟹,其外骨骼中的铅浓度并未随pH值变化呈现出共同趋势。在pH值为7.2以及镉/铅组合浓度为4.50和7.00毫克/升的暴露条件下,暴露于镉和铅组合环境中的螃蟹外骨骼中镉和铅的浓度显著更高(方差分析多重比较:自由度6;p<0.01)。与暴露于单一金属的螃蟹相比,暴露于混合金属浓度环境中的螃蟹,由于其在暴露于混合金属时的调节能力,外骨骼中的镉和铅水平有所升高。