Počet záznamů: 1  

Lead isotopic signatures of saprotrophic macrofungi of various origins: Tracing for lead sources and possible applications in geomycology

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    0428219 - ÚJF 2015 RIV GB eng J - Článek v odborném periodiku
    Borovička, Jan - Mihaljevič, M. - Gryndler, Milan - Kubrová, Jaroslava - Žigová, Anna - Hršelová, Hana - Řanda, Zdeněk
    Lead isotopic signatures of saprotrophic macrofungi of various origins: Tracing for lead sources and possible applications in geomycology.
    Applied Geochemistry. Roč. 43, APR (2014), s. 114-120. ISSN 0883-2927. E-ISSN 1872-9134
    Grant CEP: GA ČR(CZ) GAP504/11/0484
    Institucionální podpora: RVO:61388971 ; RVO:67985831 ; RVO:61389005
    Klíčová slova: macrofungi * Pb isotopic ratio * soils
    Kód oboru RIV: CH - Jaderná a kvantová chemie, fotochemie; DD - Geochemie (GLU-S); EE - Mikrobiologie, virologie (MBU-M)
    Impakt faktor: 2.268, rok: 2014

    Four saprotrophic species of macrofungi (Leucoagaricus leucothites, Agaricus bernardii, Agaricus campestris and Agaricus xanthodermus) were collected from 4 sites in the Czech Republic and analyzed for Pb content and Pb isotopic composition. Lead concentrations were relatively high in L. leucothites (up to 130 mg kg (1)) collected in site heavily polluted by a lead smelter, but much lower (0.2-6.5 mg kg (1)) in samples of the Agaricus species collected from urban, rural and pristine areas, respectively. The Pb-206/Pb-207 isotopic ratio in fruit bodies had a wide range of variation, and except for the smelter-polluted site in Pribram, did not reflect that in the organomineral topsoil horizons at particular sites. In the urban area of Prague, a detailed study of Pb uptake was conducted. The Pb-206/Pb-207 isotopic ratio in 19 samples of A. bernardii varied in a surprisingly wide range, from 1.124 to 1.175. In 5 specimens, the majority of ``accumulated'' Pb was undoubtedly transported from the topsoil layers (0-5 cm) characterized by low Pb-206/Pb-207 isotopic ratios, corresponding with gasoline-derived Pb from traffic emissions. In most samples, however, lead must have been transported from lower depths. Since the mycelium of A. bernardii was not restricted to the topsoil but could be detected both visually and using specific PCR even in a depth of 30 cm, such uptake appears to be possible. At suitable sites, Pb isotopes might represent an interesting tool for tracing the fungal uptake and transport of Pb in soils.
    Trvalý link: http://hdl.handle.net/11104/0233613

     
     
Počet záznamů: 1  

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