Giuga Marta, Ferrito Venera, Calogero Giada Santa, Traina Anna, Bonsignore Maria, Sprovieri Mario, Pappalardo Anna Maria
Department of Biological, Geological and Environmental Sciences, Section of Animal Biology "M. La Greca", University of Catania, Via Androne 81, 95124 Catania, Italy.
National Research Council of Italy, Institute of Anthropic Impacts and Sustainability in Marine Environment (CNR-IAS), Via De Marini 16, 16149 Genova, Italy.
Biology (Basel). 2024 Sep 3;13(9):691. doi: 10.3390/biology13090691.
Mercury (Hg) pro-oxidant role on biological systems and its biogeochemical cycle represent a serious threat due to its persistence in marine environment. As the mitochondrial genome is exposed to reactive oxygen species (ROS), the aim of the present study is the validation of the variation in the number of mitochondrial DNA copies (mtDNAcn) as biomarker of oxidative stress in aquatic environment. During summer 2021, three selected fish species (, and ) were collected in Augusta Bay, one of the most Mediterranean contaminated areas remarkable by past Hg inputs, and in a control area, both in the south-east of Sicily. The relative mtDNAcn was evaluated by qPCR on specimens of each species from both sites, characterized respectively by higher and lower Hg bioaccumulation. and collected in Augusta showed a dramatic mtDNAcn reduction compared to their control groups while showed an incredible mtDNAcn rising suggesting a higher resilience of this species. These results align with the mitochondrial dynamics of fission and fusion triggered by environmental toxicants. In conclusion, we suggest the implementation of the mtDNAcn variation as a valid tool for the early warning stress-related impacts in aquatic system.
汞(Hg)对生物系统的促氧化作用及其生物地球化学循环,因其在海洋环境中的持久性而构成严重威胁。由于线粒体基因组暴露于活性氧(ROS)中,本研究的目的是验证线粒体DNA拷贝数(mtDNAcn)的变化作为水生环境中氧化应激生物标志物的有效性。2021年夏季,在西西里岛东南部的奥古斯塔湾(地中海污染最严重的地区之一,过去汞输入量显著)和一个对照区域采集了三种选定的鱼类(、和)。通过qPCR对来自两个地点的每个物种的样本进行相对mtDNAcn评估,两个地点的特征分别是汞生物累积量较高和较低。与对照组相比,在奥古斯塔采集的和的mtDNAcn显著减少,而的mtDNAcn却惊人地增加,表明该物种具有更高的恢复力。这些结果与环境毒物引发的线粒体裂变和融合动态一致。总之,我们建议将mtDNAcn变化作为一种有效的工具,用于对水生系统中与应激相关的影响进行早期预警。