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Measuring Metal Uptake and Loss in Individual Organisms: A Novel Double Stable Isotope Method and its Application in Explaining Body Size Effects on Cadmium Concentration in Mussels

机译:测量金属摄取和单个生物中的损失:一种新型双稳态同位素方法及其在贻贝中镉浓度的血型效应

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摘要

Interindividual variabilities in metal bioaccumula- tion confound our interpretation of the biomonitoring data. Measuring metal toxicokinetics in organism "individuals" may provide insights into the processes underlying the variabilities. Therefore, we developed a double stable isotope method that can simultaneously measure uptake and elimination of metals in individual organisms and thus the distribution of the toxicokinetic parameters. Specifically, we exposed organisms to both isotopes (~(113)Cd and ~(114)Cd; Cd = cadmium) during the first stage and to only one isotope (~(114)Cd) during the second stage. Metal uptake and elimination rate constants (i.e., k_u and k_e) were simultaneously estimated from the content of the two isotopes measured in each organism at the end of the second stage. We applied the method to investigate the interindividual variability in Cd concentrations caused by body size in two marine mussel species. Cd concentrations are higher in larger Xenostrobus atratus but lower in smaller Perna viridis. Size-dependent Cd uptake is found to be responsible for size effects on Cd concentrations in the mussels and the interspecies differences in the relationship between Cd concentration and body size. Specifically, Cd k_u increases with size in X. atratus (0.057-0.297 L g~(-1) d~(-1)) but decreases with size in P. viridis (0.155- 0.351 L g~(-1) d~(-1))- In contrast, Cd k_e is not influenced by body size (X atratus: 0.002-0.060 d~(-1); P. viridis: 0.008-0.060 d~(-1)). Overall, we extended the applicability of the stable isotope methods to measure metal toxicokinetics in "individual" organisms, providing a readily available tool for investigating problems related to metal bioaccumulation.
机译:金属生物造影中的Interidividivialual aciapitiability会使我们对生物监测数据的解释。测量有机体“个人”中的金属毒性学可能会对变量的过程提供洞察。因此,我们开发了一种双稳态同位素方法,可以同时测量个体生物中的金属的摄取和消除金属,从而分布诱导毒性参数。具体地,在第一阶段期间,我们将生物暴露于同位素(〜(113)Cd和〜(114)Cd; Cd =镉),并且在第二阶段仅为一个同位素(〜(114)Cd)。同时从第二阶段结束时测量的两种同位素的含量同时估计金属吸收和消除速率常数(即K_U和K_E)。我们应用了探讨了两种海洋贻贝物种中体型引起的CD浓度的细胞分类的方法。较大的Xenostrobus Atratus浓度较高,但较小的Perna Viridis较低。发现依赖性CD摄取是对贻贝中CD浓度的尺寸效应以及CD浓度与体型之间关系的差异。具体地,CD K_U随X. Atratus的尺寸增加(0.057-0.297 L g〜(-1)d〜(-1)),但在viridis中的尺寸减小(0.155- 0.351 l g〜(-1)d〜 (-1)) - 相比之下,CD K_E不受体尺寸的影响(X Atratus:0.002-0.060d〜(-1); P.Viridis:0.008-0.060d〜(-1))。总体而言,我们扩展了稳定同位素方法的适用性,以测量“个体”生物中的金属毒性动力学,提供一种用于调查与金属生物累积有关的问题的可用工具。

著录项

  • 来源
    《Environmental Science & Technology》 |2021年第14期|9979-9988|共10页
  • 作者单位

    Fujian Provincial Key Laboratory for Coastal Ecology and Environmental Studies College of the Environment and Ecology Xiamen University Xiamen Fujian 361102 China;

    Fujian Provincial Key Laboratory for Coastal Ecology and Environmental Studies College of the Environment and Ecology Xiamen University Xiamen Fujian 361102 China;

    Fujian Provincial Key Laboratory for Coastal Ecology and Environmental Studies College of the Environment and Ecology Xiamen University Xiamen Fujian 361102 China Center for Marine Environmental Chemistry and Toxicology Xiamen University Xiamen Fujian 361102 China;

    Fujian Provincial Key Laboratory for Coastal Ecology and Environmental Studies College of the Environment and Ecology Xiamen University Xiamen Fujian 361102 China Center for Marine Environmental Chemistry and Toxicology Xiamen University Xiamen Fujian 361102 China;

    Fujian Provincial Key Laboratory for Coastal Ecology and Environmental Studies College of the Environment and Ecology Xiamen University Xiamen Fujian 361102 China Center for Marine Environmental Chemistry and Toxicology Xiamen University Xiamen Fujian 361102 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    stable isotope; allometry; body size; toxicokinetics; cadmium; bivalve; biomonitoring;

    机译:稳定同位素;allometry;身体尺寸;毒性学;镉;双气相;生物监测;

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