Programa de Doctorado en Ciencias de Recursos Naturales, Universidad de La Frontera, Avenida Francisco Salazar 01145, Temuco, Chile.
J Hazard Mater. 2011 Jan 15;185(1):212-9. doi: 10.1016/j.jhazmat.2010.09.020. Epub 2010 Sep 17.
The degradation of three- and four-ring polycyclic aromatic hydrocarbons (PAHs) in Kirk medium by Anthracophyllum discolor, a white-rot fungus isolated from the forest of southern Chile, was evaluated. In addition, the removal efficiency of three-, four- and five-ring PAHs in contaminated soil bioaugmented with A. discolor in the absence and presence of indigenous soil microorganisms was investigated. Production of lignin-degrading enzymes and PAH mineralization in the soil were also determined. A. discolor was able to degrade PAHs in Kirk medium with the highest removal occurring in a PAH mixture, suggesting synergistic effects between PAHs or possible cometabolism. A high removal capability for phenanthrene (62%), anthracene (73%), fluoranthene (54%), pyrene (60%) and benzo(a)pyrene (75%) was observed in autoclaved soil inoculated with A. discolor in the absence of indigenous microorganisms, associated with the production of manganese peroxidase (MnP). The metabolites found in the PAH degradation were anthraquinone, phthalic acid, 4-hydroxy-9-fluorenone, 9-fluorenone and 4,5-dihydropyrene. A. discolor was able to mineralize 9% of the phenanthrene. In non-autoclaved soil, the inoculation with A. discolor did not improve the removal efficiency of PAHs. Suitable conditions must be found to promote a successful fungal bioaugmentation in non-autoclaved soils.
评价了从智利南部森林中分离出的白腐真菌 Anthracophyllum discolor 对三苯和四苯多环芳烃(PAHs)在 Kirk 培养基中的降解作用。此外,还研究了在不存在和存在土著土壤微生物的情况下,用 A. discolor 生物强化污染土壤中三、四、五环 PAHs 的去除效率。还测定了土壤中木质素降解酶的产生和 PAH 的矿化。A. discolor 能够在 Kirk 培养基中降解 PAHs,在 PAH 混合物中的去除率最高,表明 PAHs 之间存在协同作用或可能存在共代谢。在不存在土著微生物的情况下,用 A. discolor 接种灭菌土壤,对菲(62%)、蒽(73%)、荧蒽(54%)、芘(60%)和苯并(a)芘(75%)的去除能力较高,这与锰过氧化物酶(MnP)的产生有关。在 PAH 降解中发现的代谢物为蒽醌、邻苯二甲酸、4-羟基-9-芴酮、9-芴酮和 4,5-二氢芘。A. discolor 能够矿化 9%的菲。在未灭菌土壤中,接种 A. discolor 并不能提高 PAHs 的去除效率。必须找到合适的条件来促进未灭菌土壤中真菌生物强化的成功。