Jarosz-Wilkołazka Anna, Graz Marcin, Braha Bianca, Menge Sieglinde, Schlosser Dietmar, Krauss Gerd-Joachim
Department of Biochemistry, Maria Curie-Skłodowska University, Skłodowska Place 3, 20-031 Lublin, Poland.
Biometals. 2006 Feb;19(1):39-49. doi: 10.1007/s10534-005-4599-4.
The effect of cadmium (Cd) on fungal growth, Cd bioaccumulation and biosorption, and on the formation of potential heavy metal response indicators such as thiols, oxalate, and laccase was investigated in the white rot fungi Cerrena unicolor andAbortiporus biennis. Only the highest Cd concentration employed (200 microM) inhibited growth of C. unicolor, whereas already lower Cd concentrations caused decreasing mycelia dry weights in A. biennis. Cd biosorption onto the mycelial surface was the predominant Cd sequestration mechanism in C. unicolor. Surface-bound and bioaccumulated Cd concentrations were essentially in the same range in A. biennis, leading to considerably higher intracellular Cd concentrations in A. biennis than in C. unicolor. Oxalate and laccase were produced by both of the fungal strains and their extracellular levels were elevated upon Cd exposure. Oxalate concentrations and laccase titres were considerably higher in C. unicolor than in A. biennis. Both fungi responded to increasing Cd concentrations by increasing intracellular amounts of thiol compounds (cysteine, gamma-glutamylcysteine, glutathione in both its reduced and oxidized form) but Cd application increased the amounts of thiols to a higher extend in A. biennis. Taken together, these species-specific responses towards Cd suggest that C. unicolor possesses a more efficient system than A. biennis to keep intracellular Cd concentrations low.
研究了镉(Cd)对双色蜡蘑(Cerrena unicolor)和双孢离褶伞(Abortiporus biennis)这两种白腐真菌的生长、Cd生物积累和生物吸附,以及对潜在重金属响应指标如硫醇、草酸盐和漆酶形成的影响。仅所采用的最高Cd浓度(200微摩尔)抑制了双色蜡蘑的生长,而较低的Cd浓度就已导致双孢离褶伞的菌丝体干重下降。在双色蜡蘑中,Cd在菌丝体表面的生物吸附是主要的Cd螯合机制。在双孢离褶伞中,表面结合和生物积累的Cd浓度基本处于相同范围,导致双孢离褶伞细胞内的Cd浓度显著高于双色蜡蘑。两种真菌菌株都产生草酸盐和漆酶,且在Cd暴露后其细胞外水平升高。双色蜡蘑中的草酸盐浓度和漆酶活性显著高于双孢离褶伞。两种真菌都通过增加细胞内硫醇化合物(半胱氨酸、γ-谷氨酰半胱氨酸、还原型和氧化型谷胱甘肽)的量来响应Cd浓度的增加,但施用Cd后,双孢离褶伞中硫醇的增加量更高。综上所述,这些对Cd的物种特异性反应表明,双色蜡蘑拥有比双孢离褶伞更有效的系统来保持细胞内低Cd浓度。