Department of Life Sciences, Via Mattioli 4, I-53100 Siena, University of Siena, Italy.
Department of Life Sciences, Via Mattioli 4, I-53100 Siena, University of Siena, Italy.
Chemosphere. 2018 May;199:655-660. doi: 10.1016/j.chemosphere.2018.02.066. Epub 2018 Feb 20.
The competitive behavior of divalent heavy metals (Cd, Cr, Pb, Zn) during cation uptake was investigated in the foliose lichen Xanthoria parietina. Lichen thalli were incubated with solutions containing 10 and 100 μM of CdCl CuCl and ZnCl as well as 5 and 50 μM of Pb(NO), tested individually and in combination (Cd+Cu+Pb+Zn). The analysis of molar concentrations suggests that a competition between cations for binding sites in X. parietina does exist. The decrease in net uptake between single and mixed solutions ranged between 14 and 29% at the lowest concentration and between 38 and 68% at the highest concentration. Furthermore, the uptake was proportionally lower for richer solutions. Each metal may behave differently when uptook: some (toxic elements) are preferentially stored at extracellular level (Cd, Pb), while others (micro-nutrients) are also present at intracellular level (Cu and Zn). The proportion between extracellular and total content changed for those elements accumulated also at intracellular level (Cu and Zn), while for Cd and Pb almost all the uptake occurred by passive mechanisms mainly at extracellular binding sites. The competition between metals for binding sites in the lichen surface entails that bioaccumulation data might result in an underestimation of some element levels measured in biomonitoring studies.
我们研究了叶状地衣 Xanthoria parietina 中二价重金属(Cd、Cr、Pb、Zn)在阳离子吸收过程中的竞争行为。地衣组织在含有 10 和 100 μM CdCl、CuCl 和 ZnCl 的溶液以及 5 和 50 μM Pb(NO₃)₂的溶液中孵育,单独和组合(Cd+Cu+Pb+Zn)进行测试。摩尔浓度分析表明,X. parietina 中阳离子结合位点确实存在竞争。在最低浓度下,单一和混合溶液之间的净吸收减少了 14%至 29%,在最高浓度下,净吸收减少了 38%至 68%。此外,对于较富营养的溶液,吸收比例较低。每种金属在吸收时可能表现不同:一些(有毒元素)优先储存在细胞外水平(Cd、Pb),而其他(微量元素)也存在于细胞内水平(Cu 和 Zn)。那些也在细胞内积累的元素(Cu 和 Zn)的细胞外和总含量之间的比例发生了变化,而对于 Cd 和 Pb,几乎所有的吸收都是通过主要在细胞外结合位点的被动机制发生的。金属在地衣表面结合位点之间的竞争意味着生物累积数据可能会导致生物监测研究中测量的一些元素水平被低估。