Gabriel Jiří, Žižka Zdeněk, Švec Karel, Nasswettrová Andrea, Šmíra Pavel, Kofroňová Olga, Benada Oldřich
Laboratory of Environmental Microbiology, Institute of Microbiology AS CR, Vídeňská 1083, 142 20, Prague 4-Krč, Czech Republic.
Laboratory of Characterization of Molecular Structure, Institute of Microbiology AS CR, Vídeňská 1083, 142 20, Prague 4-Krč, Czech Republic.
Folia Microbiol (Praha). 2016 Mar;61(2):119-28. doi: 10.1007/s12223-015-0415-x. Epub 2015 Jul 22.
This work describes autofluorescence of the mycelium of the dry rot fungus Serpula lacrymans grown on spruce wood blocks impregnated with various metals. Live mycelium, as opposed to dead mycelium, exhibited yellow autofluorescence upon blue excitation, blue fluorescence with ultraviolet (UV) excitation, orange-red and light-blue fluorescence with violet excitation, and red fluorescence with green excitation. Distinctive autofluorescence was observed in the fungal cell wall and in granula localized in the cytoplasm. In dead mycelium, the intensity of autofluorescence decreased and the signal was diffused throughout the cytoplasm. Metal treatment affected both the color and intensity of autofluorescence and also the morphology of the mycelium. The strongest yellow signal was observed with blue excitation in Cd-treated samples, in conjunction with increased branching and the formation of mycelial loops and protrusions. For the first time, we describe pink autofluorescence that was observed in Mn-, Zn-, and Cu-treated samples with UV, violet or. blue excitation. The lowest signals were obtained in Cu- and Fe-treated samples. Chitin, an important part of the fungal cell wall exhibited intensive primary fluorescence with UV, violet, blue, and green excitation.
这项工作描述了在浸渍有各种金属的云杉木块上生长的干腐菌(Serpula lacrymans)菌丝体的自发荧光。与死菌丝体相反,活菌丝体在蓝光激发下呈现黄色自发荧光,在紫外线(UV)激发下呈现蓝色荧光,在紫光激发下呈现橙红色和浅蓝色荧光,在绿光激发下呈现红色荧光。在真菌细胞壁和细胞质中的颗粒中观察到独特的自发荧光。在死菌丝体中,自发荧光强度降低,信号在整个细胞质中扩散。金属处理影响自发荧光的颜色和强度以及菌丝体的形态。在经镉处理的样品中,蓝光激发下观察到最强的黄色信号,同时分支增加以及菌丝环和突起的形成。我们首次描述了在经锰、锌和铜处理的样品中,用紫外线、紫光或蓝光激发时观察到的粉红色自发荧光。在经铜和铁处理的样品中获得的信号最低。几丁质是真菌细胞壁的重要组成部分,在紫外线、紫光、蓝光和绿光激发下呈现强烈的初级荧光。