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模型海洋微藻中汞的积累途径:吸附、摄取和分配动力学

Mercury Accumulation Pathways in a Model Marine Microalgae: Sorption, Uptake, and Partition Kinetics.

作者信息

Garcia-Arevalo Isabel, Bérard Jean-Baptiste, Bieser Johannes, Le Faucheur Séverine, Hubert Clarisse, Lacour Thomas, Thomas Bastien, Cossa Daniel, Knoery Joël

机构信息

IFREMER, CCEM Contamination Chimique des Écosystèmes Marins, F-44300 Nantes, France.

IFREMER, PHYTOX Physiology and Toxins of Microalgae, F-44300 Nantes, France.

出版信息

ACS ES T Water. 2024 Jun 10;4(7):2826-2835. doi: 10.1021/acsestwater.3c00795. eCollection 2024 Jul 12.

Abstract

The accumulation of dissolved mercury (Hg) by phytoplankton is the largest concentration step along aquatic food chains. However, the cell uptake mechanisms remain unclear. In this study, the marine haptophyte, a model phytoplankton species, was examined for its interactions with picomolar levels of dissolved inorganic divalent Hg (iHg) and monomethyl Hg (MMHg). For both these Hg species, the study observed their successive sorption and internalization over time, yielding Hg partition coefficients as well as sorption, uptake, and release rates. These results were integrated into a time-dependent, three-compartment model for marine cellular Hg accumulation that included exposure medium, phycosphere, and internalized mercury. Assuming equilibria and pseudo-first-order kinetics between compartments, this study obtained transfer rates of Hg between compartments. The results provide insight into the phycosphere as an intermediate compartment for Hg species accumulation and quantify its role in the internalization of Hg. Ultimately, the new model and its parametrization were successfully applied to literature data showing Hg cellular accumulation in different groups of marine phytoplankton, lending confidence in its robustness and potential contributions to help model the uptake of Hg in the aquatic food web.

摘要

浮游植物对溶解态汞(Hg)的积累是水生食物链中最大的浓缩步骤。然而,细胞摄取机制仍不清楚。在本研究中,对海洋定鞭藻这种典型的浮游植物物种与皮摩尔水平的溶解态无机二价汞(iHg)和一甲基汞(MMHg)的相互作用进行了研究。对于这两种汞物种,该研究观察到它们随时间的连续吸附和内化,得出了汞分配系数以及吸附、摄取和释放速率。这些结果被整合到一个随时间变化的三室模型中,用于描述海洋细胞汞积累,该模型包括暴露介质、藻际和内化汞。假设各室之间达到平衡且符合准一级动力学,本研究得出了汞在各室之间的转移速率。研究结果深入了解了藻际作为汞物种积累的中间室,并量化了其在汞内化中的作用。最终,新模型及其参数化成功应用于文献数据,这些数据显示了不同海洋浮游植物群中汞的细胞积累情况,这增强了对其稳健性的信心以及其对帮助模拟水生食物网中汞摄取的潜在贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5437/11251459/ed1ae57a54b0/ew3c00795_0001.jpg

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