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贻贝 Septifer virgatus 中的多种微量元素积累:盐度对吸收和消除的拮抗作用。

Multiple trace element accumulation in the mussel Septifer virgatus: Counteracting effects of salinity on uptake and elimination.

机构信息

Marine Environmental Laboratory, HKUST Shenzhen Research Institute, Shenzhen, 518057, China; Department of Ocean Science, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, China.

Marine Environmental Laboratory, HKUST Shenzhen Research Institute, Shenzhen, 518057, China; Department of Ocean Science, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, China.

出版信息

Environ Pollut. 2018 Nov;242(Pt A):375-382. doi: 10.1016/j.envpol.2018.06.101. Epub 2018 Jul 3.

Abstract

Salinity effects on the bioaccumulation and biokinetic processes of eight trace elements (Cu, Cr, Pb, Ni, Zn, Cd, Se, and As) in the black mussel Septifer virgatus were explored in the present study. A 6-week laboratory waterborne exposure first showed that salinity (15, 20, 25, and 30) had relatively weak or even no significant influence on trace element accumulation in the black mussels. Biokinetics including uptake and efflux was then quantified in the mussels at different salinities. Uptake rates of Ni and Zn were negatively correlated with the salinity, while the uptake of Cd was not significantly influenced by salinity. The efflux rates of Ni and Zn also exhibited an inverse relationship with salinity, whereas the case of Cd was on the contrary. Biokinetic modeling showed that the salinity effects on uptake and elimination of Ni and Zn counteracted with each other, thus weakening the combined effects on accumulation. Overall, the response of uptake to salinity could weakened, removed, or even overturned by elimination, depending on the relative magnitude of the change of the two processes. The combined effects of uptake and elimination further led to negative, no, or positive relationship between trace element accumulation and salinity.

摘要

本研究探讨了盐度对贻贝Septifer virgatus 中八种痕量元素(Cu、Cr、Pb、Ni、Zn、Cd、Se 和 As)的生物蓄积和生物动力学过程的影响。6 周的实验室水基暴露首先表明,盐度(15、20、25 和 30)对贻贝中痕量元素的积累影响相对较弱,甚至没有显著影响。然后在不同盐度下定量测定了贻贝中的生物动力学,包括吸收和排出。Ni 和 Zn 的吸收速率与盐度呈负相关,而 Cd 的吸收不受盐度的显著影响。Ni 和 Zn 的排出速率也与盐度呈反比,而 Cd 的情况则相反。生物动力学模型表明,盐度对 Ni 和 Zn 的吸收和消除的影响相互抵消,从而削弱了它们对蓄积的综合影响。总的来说,吸收对盐度的反应可能会被消除减弱、消除或甚至逆转,这取决于这两个过程变化的相对大小。吸收和消除的综合影响进一步导致痕量元素积累与盐度之间呈负相关、无相关或正相关关系。

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