首页> 外文期刊>Acta biochimica Polonica >Light-regulated synthesis of extra- and intracellular enzymes related to wood degradation by the white rot fungus Cerrena unicolor during solid-state fermentation on ash sawdust-based medium
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Light-regulated synthesis of extra- and intracellular enzymes related to wood degradation by the white rot fungus Cerrena unicolor during solid-state fermentation on ash sawdust-based medium

机译:在灰木屑基培养基上固态发酵期间,白腐真菌Cerrena unicolor对木材降解相关的细胞外和细胞内酶的光调节合成

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The light-dependent metabolism of the white rot basidiomycete Cerrena unicolor FCL139 has already been demonstrated using transcriptomic and Biolog-based approaches. To further analyze the influence of light on C. unicolor wood degradation, we measured the activity of an array of CAZymes (carbohydrate-active enzymes) and enzymes involved in the redox system of fungal cells associated with lignolysis. Extra- and intracellular enzymatic extracts were obtained from solid-state ash sawdust C. unicolor cultures cultivated for 14 days under red, blue, green, or white light conditions, or in the dark. Light greatly influenced the synthesis of MnP, total cellulases, endo-1,4-β-glucanase, endo-1,4-β-xylanase, catalase, and superoxide dismutase. The production of MnP and catalase was evidently stimulated by white light. It is also worth noticing that blue light caused a gradual increase in the activity of total cellulases throughout the entire period of C. unicolor growth. Moreover, endo-1,4-β-glucanase showed the highest activity on day 13 of fungus cultivation and the production of laccase and β-glucosidase appeared to be the least influenced by light. However, the strongest activity of the endo-1,4-β-xylanase was observed in the dark. It seemed that light not only influenced the regulation of the synthesis of the wood-degrading enzymes at different levels, but also acted indirectly by affecting production of enzymes managing harmful lignin by-products causing oxidative stress. The ability of the fungus to decompose woody plant material is clearly influenced by environmental factors.
机译:已经使用转录组和基于Biolog的方法证明了白腐烂担子菌Cerrena unicolor FCL139的光依赖性代谢。为了进一步分析光对C.单色木材降解的影响,我们测量了一系列CAZymes(碳水化合物活性酶)和参与木质素分解的真菌细胞氧化还原系统的酶的活性。胞外和胞内酶提取物得自固态灰木屑锯屑C.单色培养物,在红色,蓝色,绿色或白色的光照条件下或在黑暗中培养14天。光极大地影响了MnP,总纤维素酶,1,4-β-内​​切葡聚糖酶,1,4-β-木聚糖内切酶,过氧化氢酶和超氧化物歧化酶的合成。白光明显刺激了MnP和过氧化氢酶的产生。还值得注意的是,蓝光在整个单色藻生长的整个过程中导致了总纤维素酶活性的逐渐增加。此外,内切1,4-β-葡聚糖酶在真菌培养的第13天表现出最高的活性,漆酶和β-葡萄糖苷酶的产生受光的影响最小。但是,在黑暗中观察到了内切1,4-β-木聚糖酶的最强活性。似乎光不仅在不同程度上影响了木材降解酶的合成调控,而且还通过影响产生有害氧化作用的有害木质素副产物的酶的产生而间接起作用。真菌分解木本植物材料的能力明显受环境因素影响。

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