Effects of free Cu2+ and Zn2+ ions on growth and metal accumulation in freshwater algae
- 1 February 1997
- journal article
- research article
- Published by Oxford University Press (OUP) in Environmental Toxicology and Chemistry
- Vol. 16 (2) , 220-229
- https://doi.org/10.1002/etc.5620160218
Abstract
Five species of unicellular green algae were exposed to a broad range of Cu2+ and Zn2+ concentrations to examine the relationship between the free Cu2+ and Zn2+ ion concentrations and algal growth at metal concentrations relevant for freshwater phytoplankton. We estimated extra‐ and intracellular metal concentrations and characterized the adsorption of copper and zinc on algal surfaces. The optimal growth rate of Scenedesmus subspicatus occurred in a broad range of Cu2+ and Zn2+ concentrations (from 10−15 to 10−7 and from 10−12 to 10−55 M, respectively). Chlamydomonas reinhardtii reacted more sensitively toward copper, optimal growth was achieved only at a pCu (= ‐log[Cu2+]) around 11, whereas growth was optimal over a broad range of free Zn2+ concentrations (from 10−12 to 10−6 M). The optimal range for growth of Chlorella fusca occurred over about three orders of magnitude of the free Cu2+ concentration (from 10−13 to 10−10 M). Chlamydomonas cultures isolated from Lake Constance tolerated Cu2+ concentrations over seven orders of magnitude (pCu = 7 to 14). The growth of algae showed a high tolerance toward high intracellular copper and zinc concentrations. This suggests that the cells may immobilize the metals intracellularly. The affinity of copper for algal surfaces is higher than that of zinc in the experimental concentration range: adsorption constants log KCu (11.06) > log KZn (6.49) (pH = 7.9). These freshwater algae tolerate higher Cu2+ and Zn2+ concentrations than marine algal species. In comparison to our lake data, the results obtained from the culture algae indicate a possible role for copper as a limiting factor for certain algal species in eutrophic lakes.Keywords
This publication has 28 references indexed in Scilit:
- Cycles of Trace Elements (Copper and Zinc) in a Eutrophic LakePublished by American Chemical Society (ACS) ,1995
- Zinc speciation in lake waters and its determination by ligand exchange with EDTA and differential pulse anodic stripping voltammetryAnalytica Chimica Acta, 1994
- The role of planktonic algae in the cycling of Zn and Cu in a productive soft-water lakeLimnology and Oceanography, 1992
- Heavy Metal-Activated Synthesis of Peptides in Chlamydomonas reinhardtiiPlant Physiology, 1992
- Binding of Cu(II) to algae in a metal bufferWater Research, 1990
- Indirect aluminum toxicity to the green alga Scenedesmus through increased cupric ion activityEnvironmental Science & Technology, 1987
- ZINC ADSORPTION AND TRANSPORT BYCHLAMYDOMONAS VARUIABILISANDSCENEDESMUS SUBSPICATUS(CHLOROPHYCEAE) GROWN IN SEMICONTINUOUS CULTURE1Journal of Phycology, 1982
- Determination of complexing capacities of ligands in natural waters and conditional stability constants of the copper complexes by means of manganese dioxideAnalytica Chimica Acta, 1979
- COPPER TOXICITY TO SKELETONEMA COSTATUM (BACILLARIOPHYCEAE)1,2Journal of Phycology, 1978
- Intranuclear complexes in a copper-tolerant green alga.The Journal of cell biology, 1976