INRA (Institut National de la Recherche Agronomique), UMR985 Ecologie et Sante des Ecosystemes, Equipe Ecotoxicologie et Qualite des Milieux Aquatiques, Agrocampus Ouest, 65 rue de Saint Brieuc, F-35042, Rennes, France.
Environ Sci Technol. 2010 May 1;44(9):3566-71. doi: 10.1021/es903860w.
Effects of zinc were studied in the freshwater worm Branchiura sowerbyi using partial and full life-cycle tests. Only newborn and juveniles were sensitive to zinc, displaying effects on survival, growth, and age at first brood at environmentally relevant concentrations. Threshold effect models were proposed to assess toxic effects on individuals. They were fitted to life-cycle test data using Bayesian inference and adequately described life-history trait data in exposed organisms. The daily asymptotic growth rate of theoretical populations was then simulated with a matrix population model, based upon individual-level outputs. Population-level outputs were in accordance with existing literature for controls. Working in a Bayesian framework allowed incorporating parameter uncertainty in the simulation of the population-level response to zinc exposure, thus increasing the relevance of test results in the context of ecological risk assessment.
采用部分和全生活史试验研究了锌对淡水寡毛类环节蠕虫 Branchiura sowerbyi 的影响。只有新生幼虫和幼体对锌敏感,在与环境相关的浓度下,锌对其生存、生长和首次产卵年龄有影响。提出了阈效应模型来评估对个体的毒性效应。利用贝叶斯推断对这些模型进行了拟合,并充分描述了暴露于锌的生物体的生活史特征数据。然后,根据个体水平的输出,利用矩阵种群模型模拟了理论种群的日渐近增长率。种群水平的输出与对照的现有文献一致。在贝叶斯框架内工作可以在模拟锌暴露对种群水平的反应时纳入参数不确定性,从而提高了测试结果在生态风险评估背景下的相关性。