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Cellulolytic potential of thermophilic species from four fungal orders

机译:来自四个真菌阶的嗜热菌种的纤维素分解潜能

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摘要

Elucidation of fungal biomass degradation is important for understanding the turnover of biological materials in nature and has important implications for industrial biomass conversion. In recent years there has been an increasing interest in elucidating the biological role of thermophilic fungi and in characterization of their industrially useful enzymes. In the present study we investigated the cellulolytic potential of 16 thermophilic fungi from the three ascomycete orders Sordariales, Eurotiales and Onygenales and from the zygomycete order Mucorales thus covering all fungal orders that include thermophiles. Thermophilic fungi are the only described eukaryotes that can grow at temperatures above 45°C. All 16 fungi were able to grow on crystalline cellulose but their secreted enzymes showed widely different cellulolytic activities, pH optima and thermostabilities. Interestingly, in contrast to previous reports, we found that some fungi such as Melanocarpus albomyces readily grew on crystalline cellulose and produced cellulases. These results indicate that there are large differences in the cellulolytic potential of different isolates of the same species. Furthermore, all the selected species were able to degrade cellulose but the differences in cellulolytic potential and thermostability of the secretome did not correlate to the taxonomic position. PCR amplification and sequencing of 22 cellulase genes from the fungi showed that the level of thermostability of the cellulose-degrading activity could not be inferred from the phylogenetic relationship of the cellulases.
机译:阐明真菌生物质的降解对于理解自然界中生物材料的周转非常重要,并且对工业生物质转化具有重要意义。近年来,人们越来越关注阐明嗜热真菌的生物学作用及其在工业上有用的酶的表征。在本研究中,我们调查了来自三个伴生菌顺序的Sordariales,Eurotiales和Onygenales以及合子菌顺序Mucorales的16种嗜热真菌的纤维素分解潜能,从而涵盖了包括嗜热菌在内的所有真菌。嗜热真菌是唯一可以在45°C以上的温度下生长的真核生物。所有16种真菌都能够在结晶纤维素上生长,但是它们分泌的酶显示出截然不同的纤维素分解活性,最适pH和热稳定性。有趣的是,与以前的报道相反,我们发现某些真菌(如Melanocarpus albomyces)易于在结晶纤维素上生长并产生纤维素酶。这些结果表明,同一物种的不同分离物的纤维素分解潜能存在很大差异。此外,所有选定的物种都能够降解纤维素,但是分泌蛋白组的纤维素分解潜能和热稳定性的差异与分类位置无关。真菌中22种纤维素酶基因的PCR扩增和测序表明,无法从纤维素酶的系统发育关系推断出纤维素降解活性的热稳定性水平。

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