Won Eun-Ji, Dahms Hans-U, Kumar K Suresh, Shin Kyung-Hoon, Lee Jae-Seong
Department of Biological Science, College of Science, Sungkyunkwan University, Suwon, 440-746, South Korea.
Department of Biomedical Science and Environmental Biology, Kaohsiung Medical University, Kaohsiung, 80424, Taiwan, Republic of China.
Environ Sci Pollut Res Int. 2015 Nov;22(22):17443-52. doi: 10.1007/s11356-014-3797-4. Epub 2014 Nov 11.
Accidental release of nuclides into the ocean is causing health risks to marine organisms and humans. All life forms are susceptible to gamma radiation with a high variation, depending on various physical factors such as dose, mode, and time of exposure and various biological factors such as species, vitality, age, and gender. Differences in sensitivity of gamma radiation are also associated with different efficiencies of mechanisms related to protection and repair systems. Gamma radiation may also affect various other integration levels: from gene, protein, cells and organs, population, and communities, disturbing the energy flow of food webs that will ultimately affect the structure and functioning of ecosystems. Depending on exposure levels, gamma radiation induces damages on growth and reproduction in various organisms such as zooplankton, benthos, and fish in aquatic ecosystems. In this paper, harmful effects of gamma-irradiated aquatic organisms are described and the potential of marine copepods in assessing the risk of gamma radiation is discussed with respect to physiological adverse effects that even affect the ecosystem level.
核素意外释放到海洋中正在对海洋生物和人类造成健康风险。所有生命形式都易受伽马辐射影响,其敏感性差异很大,这取决于各种物理因素,如剂量、照射方式和时间,以及各种生物因素,如物种、活力、年龄和性别。伽马辐射敏感性的差异还与保护和修复系统相关机制的不同效率有关。伽马辐射还可能影响其他各种整合层面:从基因、蛋白质、细胞和器官、种群到群落,扰乱食物网的能量流动,最终影响生态系统的结构和功能。根据暴露水平,伽马辐射会对水生生态系统中的各种生物,如浮游动物、底栖生物和鱼类的生长和繁殖造成损害。本文描述了伽马辐照水生生物的有害影响,并就甚至影响生态系统层面的生理不良反应,讨论了海洋桡足类动物在评估伽马辐射风险方面的潜力。