Shi Wei, Han Yu, Guan Xiaofan, Rong Jiahuan, Du Xueying, Zha Shanjie, Tang Yu, Liu Guangxu
College of Animal Science, Zhejiang University, Hangzhou, China.
Front Physiol. 2019 Apr 3;10:377. doi: 10.3389/fphys.2019.00377. eCollection 2019.
Widespread applications of cadmium (Cd) in various products have caused Cd contamination in marine ecosystems. Meanwhile, human activities in the ocean have also generated an increasing amount of noise in recent decades. Although anthropogenic noise and Cd contaminants could be present simultaneously in marine environments, the physiological responses of marine bivalve mollusks upon coexposure to anthropogenic noise and toxic metal contaminants, including Cd remain unclear. Therefore, the combined effects of anthropogenic noise and Cd on the physiological characteristics of the blood clam were investigated in this study. The results showed that 10 days of coexposure to anthropogenic noise and Cd can enhance adverse impacts on metabolic processes, as indicated by the clearance rate, respiration rate, ammonium excretion rate, and O:N ratio of . In addition, both the ATP content, ATP synthase activity and genes encoding important enzymes in ATP synthesis significantly declined after coexposures to anthropogenic noise and Cd, which have resulted from reduced feeding activity and respiration. Furthermore, the expressions of neurotransmitter-related genes (MAO, AChE, and mAChR3) were all significantly down-regulated after coexposure to anthropogenic noise and Cd, which suggests an enhanced neurotoxicity under coexposure. In conclusion, our study demonstrated that anthropogenic noise and Cd would have synergetic effects on the feeding activity, metabolism, and ATP synthesis of , which may be due to the add-on of stress responses and neurotransmitter disturbances.
镉(Cd)在各种产品中的广泛应用已导致海洋生态系统受到镉污染。与此同时,近几十年来人类在海洋中的活动也产生了越来越多的噪音。尽管人为噪声和镉污染物可能同时存在于海洋环境中,但海洋双壳贝类在同时暴露于人为噪声和包括镉在内的有毒金属污染物时的生理反应仍不清楚。因此,本研究调查了人为噪声和镉对血蛤生理特征的综合影响。结果表明,同时暴露于人为噪声和镉10天会增强对代谢过程的不利影响,清除率、呼吸率、铵排泄率和O:N比均表明了这一点。此外,同时暴露于人为噪声和镉后,ATP含量、ATP合酶活性以及ATP合成中重要酶的编码基因均显著下降,这是由摄食活动和呼吸减少导致的。此外,同时暴露于人为噪声和镉后,神经递质相关基因(MAO、AChE和mAChR3)的表达均显著下调,这表明同时暴露时神经毒性增强。总之,我们的研究表明,人为噪声和镉会对血蛤的摄食活动、代谢和ATP合成产生协同作用,这可能是由于应激反应和神经递质干扰的叠加。