The Key Laboratory of Mariculture, Ministry of Education, Ocean University of China, Qingdao, 266003, PR China.
The Key Laboratory of Mariculture, Ministry of Education, Ocean University of China, Qingdao, 266003, PR China.
Chemosphere. 2023 Aug;331:138787. doi: 10.1016/j.chemosphere.2023.138787. Epub 2023 Apr 27.
Benzo[a]pyrene (B[a]P) commonly bioaccumulates in lipid-rich tissues due to its lipophilicity and further affects lipid metabolism. The present study systematically investigated the lipid metabolism disturbance in digestive glands of scallops (Chlamys farreri) exposure to B[a]P, based on lipidomics, transcriptomics, molecular and biochemical analysis. We exposed the scallops to environmentally relevant concentrations of B[a]P for 21 days. The bioaccumulation of B[a]P, lipid content and lipid peroxidation in digestive glands were measured. Integrated lipidomics and transcriptomics analysis, the differential lipid species were identified and key genes based on the pathways in which genes and lipid species involved together were selected in scallop exposure to 10 μg/L B[a]P. The changes of lipid profile showed that triglycerides (TGs) were accumulated after 21 days exposure, while the phospholipids (PLs) decreased demonstrated membrane structures were disrupted by B[a]P. In combination with the change of gene expression, we speculated that B[a]P could induce lipids accumulation by up-regulating lipid synthesis-related genes expression, down-regulating lipolysis-related genes expression and interfering with lipid transport. Overall, this study provides new insights into the mechanisms of lipid metabolism disturbance in bivalves exposed to PAHs, and establishes a foundation for understanding the bioaccumulation mechanism of B[a]P in aquatic organisms, which is of great importance for further ecotoxicological study.
苯并[a]芘(B[a]P)由于其亲脂性而通常在富含脂质的组织中生物积累,并进一步影响脂质代谢。本研究基于脂质组学、转录组学、分子和生化分析,系统研究了 B[a]P 暴露对扇贝(Chlamys farreri)消化腺脂质代谢的干扰。我们将扇贝暴露于环境相关浓度的 B[a]P 中 21 天。测量了消化腺中 B[a]P 的生物积累、脂质含量和脂质过氧化。通过整合脂质组学和转录组学分析,在 10μg/L B[a]P 暴露的扇贝中,鉴定了差异脂质种类,并基于涉及基因和脂质种类的途径选择了关键基因。脂质图谱的变化表明,21 天后甘油三酯(TGs)积累,而磷脂(PLs)减少表明细胞膜结构被 B[a]P 破坏。结合基因表达的变化,我们推测 B[a]P 可以通过上调脂质合成相关基因的表达、下调脂肪分解相关基因的表达以及干扰脂质转运来诱导脂质积累。总之,本研究为了解多环芳烃暴露对双壳类动物脂质代谢干扰的机制提供了新的见解,并为理解 B[a]P 在水生生物中的生物积累机制奠定了基础,这对于进一步的生态毒理学研究具有重要意义。