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Uranium biosorption by the lichen trapelia involuta at a uranium mine

Purvis, O. William; Bailey, Elizabeth H.; McLean, Judith; Kasama, Takeshi; Williamson, Ben J.

Authors

O. William Purvis

Judith McLean

Takeshi Kasama

Ben J. Williamson



Abstract

Metal localisation was investigated in the lichenised ascomycete Trapelia involuta growing on a range of uraniferous minerals including metazeunerite [Cu(UO2)2(AsO42·8H2O], metatorbernite [Cu(UO22(PO4)2·8H2O], autunite [Ca(UO2)2(PO42·10H2O] and uranium-enriched iron oxide and hydroxide minerals at the abandoned South Terras mine site, Cornwall, UK. Apothecia from samples collected from waste dumps at the mine have an unusually dark colour that decolorized with NaOCI, an observation which together with Fourier Transform Infrared Spectroscopy of apothecial extracts, suggested the presence of melanin-like pigments. X-ray element mapping and probe traverses across the lichen-rock interface identify the highest U, Fe, and Cu concentrations in the outer parts of melanised apothecia. Accumulation of mineral particulates and complexing with lichen acids are not considered responsible for this since element ratios in the traverses do not correspond with those of likely mineral phases and lichen metabolites are localised in different tissues. Metal biosorption by melanin-like pigments are likely to be responsible for the observed metal fixation. No detectable U or Cu was observed in control samples although Fe showed a similar localisation in some specimens. The high concentrations of mucopolysaccharides and P recorded inside apothecia (within asci containing reproductive spores and hypothecium) suggests that the formation of melanised tissues may help protect vital reproductive tissues from the toxic effects of U and other metals, since the uranyl ion complexes strongly with phosphate species. © Taylor and Francis Inc.

Citation

Purvis, O. W., Bailey, E. H., McLean, J., Kasama, T., & Williamson, B. J. (2004). Uranium biosorption by the lichen trapelia involuta at a uranium mine. Geomicrobiology Journal, 21(3), 159-167. https://doi.org/10.1080/01490450490275398

Journal Article Type Article
Acceptance Date Oct 1, 2003
Online Publication Date Aug 17, 2010
Publication Date Apr 1, 2004
Deposit Date Apr 25, 2021
Journal Geomicrobiology Journal
Print ISSN 0149-0451
Electronic ISSN 1521-0529
Publisher Taylor and Francis
Peer Reviewed Peer Reviewed
Volume 21
Issue 3
Pages 159-167
DOI https://doi.org/10.1080/01490450490275398
Public URL https://nottingham-repository.worktribe.com/output/5160855
Publisher URL https://www.tandfonline.com/doi/abs/10.1080/01490450490275398