Martins Celso, Jesus Fátima T, Nogueira António J A
Department of Biology & CESAM, University of Aveiro, Campus Universitário de Santiago, Aveiro, 3810-193, Portugal.
Ecotoxicology. 2017 Nov;26(9):1157-1169. doi: 10.1007/s10646-017-1841-0. Epub 2017 Aug 21.
Metal contamination is still a major environmental issue due to their continuous deposition and persistence. In this work we intended to assess the impact that Copper (Cu) and Zinc (Zn) exert in life-history parameters of Daphnia longispina, a common cladoceran in freshwater environments. Thus, we studied the effects of Cu (20-300 µg/L) and Zn (500-4000 µg/L) on the survival, growth, reproduction, feeding rate and population growth rate of D. longispina. Though survival was only reduced for the highest concentration of each metal, other endpoints were strongly affected by lower concentrations. Growth was affected by both metals, especially in the period 0-7 d, being significant for Cu ≥ 40 µg/L and Zn ≥ 500 µg/L. Indeed, growth endpoints at day 7 (body length and growth rate) were equally or more sensitive than the corresponding endpoints at day 21. The size at first reproduction decreased (significant for Cu ≥ 40 µg/L and Zn ≥ 500 µg/L). Reproduction decreased, which was partially explained by the reduced growth, but additional effects were supported by a direct effect of metals on reproduction (based on the relationship body length-brood size). Reduced growth and reproduction are likely a food mediated effect due to feeding inhibition caused by the metals. Globally, the studied endpoints were affected by Cu and Zn differently, supporting a chemical-specificity of the effects, with Zn causing more pronounced effects than Cu. This work presents an innovative approach to the effects of Cu and Zn to D. longispina, giving a general and comprehensive overview of those effects.
由于金属的持续沉积和持久性,金属污染仍然是一个主要的环境问题。在这项工作中,我们旨在评估铜(Cu)和锌(Zn)对长刺溞(Daphnia longispina)生活史参数的影响,长刺溞是淡水环境中常见的枝角类动物。因此,我们研究了Cu(20 - 300μg/L)和Zn(500 - 4000μg/L)对长刺溞的存活、生长、繁殖、摄食率和种群增长率的影响。虽然每种金属的最高浓度仅降低了存活率,但其他终点指标受到较低浓度的强烈影响。两种金属都影响生长,特别是在0 - 7天期间,对于Cu≥40μg/L和Zn≥500μg/L时影响显著。事实上,第7天的生长终点指标(体长和生长率)比第21天的相应终点指标同样敏感或更敏感。首次繁殖时的体型减小(对于Cu≥40μg/L和Zn≥500μg/L显著)。繁殖减少,这部分是由于生长减少所致,但金属对繁殖的直接影响(基于体长 - 怀卵量关系)也支持了其他影响。生长和繁殖减少可能是由于金属引起的摄食抑制导致的食物介导效应。总体而言,所研究的终点指标受Cu和Zn的影响不同,支持了效应的化学特异性,Zn的影响比Cu更明显。这项工作提出了一种研究Cu和Zn对长刺溞影响的创新方法,对这些影响进行了全面综合的概述。