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常见的可测量特征能否解释蚯蚓物种金属积累和毒性的差异?

Can commonly measurable traits explain differences in metal accumulation and toxicity in earthworm species?

机构信息

Institute of Environmental Sciences, Leiden University, Leiden, The Netherlands,

出版信息

Ecotoxicology. 2014 Jan;23(1):21-32. doi: 10.1007/s10646-013-1147-9. Epub 2013 Nov 6.

Abstract

There is no clear consensus in the literature on the metal accumulation pattern and sensitivity of different earthworm species. In the present study, accumulation and toxicity of Cu, Cd, Ni, and Zn in the earthworms Lumbricus rubellus (epigeic), Aporrectodea longa (anecic), and Eisenia fetida (ultra-epigeic) were determined after 28 days exposure in two soils. Metal accumulation and sensitivity were interpreted using the specific traits of different earthworm species. Results showed that for all four metals tested L. rubellus was the most sensitive species, followed by A. longa and E. fetida. At the same exposure concentration, internal concentrations followed the order: L. rubellus > E. fetida > A. longa for Cu and Ni, L. rubellus ≈ E. fetida ≈ A. longa for Cd, and L. rubellus > A. longa > E. fetida for Zn. Langmuir isotherms were used to model metal accumulation at both nontoxic and toxic exposure concentrations. The Cu, Cd, and Zn concentrations in E. fetida generally leveled off at high exposure concentrations but not for the other two species. A. longa showed a high capability of regulating internal Ni concentrations. The traits-based approaches suggested that most likely a group of earthworm traits together determined (differences in) metal accumulation and sensitivity. More research is needed in this respect to build up solid relationships between species-specific responses and traits, enabling cross-species extrapolation of accumulation and toxicity data.

摘要

目前的研究中,在两种土壤中暴露 28 天后,确定了蚯蚓 Lumbricus rubellus(表栖)、Aporrectodea longa(内栖)和 Eisenia fetida(超表栖)对 Cu、Cd、Ni 和 Zn 的积累和毒性。利用不同蚯蚓物种的特定特征来解释金属积累和敏感性。结果表明,在所测试的所有四种金属中,L. rubellus 是最敏感的物种,其次是 A. longa 和 E. fetida。在相同的暴露浓度下,内部浓度的顺序为:Cu 和 Ni 为 L. rubellus > E. fetida > A. longa,Cd 为 L. rubellus ≈ E. fetida ≈ A. longa,Zn 为 L. rubellus > A. longa > E. fetida。Langmuir 等 温线用于模拟非毒性和毒性暴露浓度下的金属积累。在高暴露浓度下,E. fetida 中的 Cu、Cd 和 Zn 浓度通常趋于稳定,但其他两种物种则不然。A. longa 显示出对内部 Ni 浓度的高度调节能力。基于特征的方法表明,很可能是一组蚯蚓特征共同决定了(差异)金属积累和敏感性。在这方面需要进一步研究,以建立物种特异性反应与特征之间的牢固关系,从而实现积累和毒性数据的跨物种外推。

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