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◆ Marine pollution bulletin2026-09-24

Salinity-dependent cadmium bioaccumulation, oxidative stress, and genotoxicity in the bivalve Mactra veneriformis.

Jiayun Ren, Bingshen Liu, Zaiwang Zhang, Jiangbao Xia, Jiqiang Zhang, Changqing Shan, Shuai Shang

原始摘要(英文原文)· Original abstract
Marine bivalves face combined stress from cadmium (Cd) pollution and salinity fluctuations. This study assessed salinity-dependent Cd bioaccumulation and toxicity in Mactra veneriformis exposed to five salinities (18-34) and three Cd concentrations (0.05-0.25 mg L-1) over 7 days. We quantified Cd accumulation, bioconcentration factors (BCFs), reactive oxygen species (ROS), glutathione peroxidase (GPx), glutathione S-transferase (GST), and genotoxicity (DNA-integrity F-value) in gills and digestive gland. Cd accumulation was time- and dose-dependent, with the highest levels observed in gills. BCFs were negatively correlated with salinity in most treatments; however, at salinity 18 with 0.25 mg L-1 Cd, gill BCF was lower than at salinity 22, suggesting potential physiological disturbance under extreme combined stress. Salinity deviation from the optimum amplified ROS production, shifted antioxidant-enzyme peak timing, and triggered late-stage GPx and GST depletion. Gills exhibited rapid but transient enzymatic responses, whereas the digestive gland showed delayed, sustained activation. The most severe genotoxicity (lowest F-value) arose in gills at salinity 18, coinciding with antioxidant defense system collapse. Overall, salinity deviation (especially low salinity) exacerbated Cd-induced oxidative and genotoxic damage, potentially via elevated Cd bioaccumulation, suggesting strong synergistic toxic interactions. These biomarker-based observations require further mechanistic validation and inform Bohai Sea ecological risk assessment and aquaculture management.
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Salinity-dependent cadmium bioaccumulation, oxidative stress, and genotoxicity in the bivalve Mactra veneriformis. — 科研速览 Science Skim