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首页> 外文期刊>Applied and Environmental Microbiology >Preferential degradation of phenolic lignin units by two white rot fungi.
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Preferential degradation of phenolic lignin units by two white rot fungi.

机译:两种白腐真菌优先降解酚类木质素单元。

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The differential biodegradation of phenolic and nonphenolic (C-4-etherified) lignin units in wheat straw treated with the white rot fungi Pleurotus eryngii and Phanerochaete chrysosporium was investigated under solid-state fermentation conditions. Two analytical techniques applied to permethylated straw were used for this purpose, i.e., alkaline CuO degradation and analytical pyrolysis (both followed by gas chromatography-mass spectrometry for product identification). Despite differences in the enzymatic machinery produced, both ligninolytic fungi caused a significant decrease in the relative amount of phenolic lignin units during the degradation process. Nevertheless, no differences in the biodegradation rates of phenolic and etherified cinnamic acids were observed. Changes in lignin composition and cinnamic acid content were also analyzed in the phenolic and nonphenolic lignin moieties. The results obtained are discussed in the context of the enzymatic mechanisms of lignin biodegradation.
机译:在固态发酵条件下,研究了白腐真菌杏鲍菇(Pleurotus eryngii)和黄腐霉(Phanerochaete chrysosporium)处理的麦秸中酚类和非酚类(C-4-醚化)木质素单元的生物降解差异。为此,使用了两种应用于全甲基化秸秆的分析技术,即碱性CuO降解和分析热解(两者均通过气相色谱-质谱法进行产品鉴定)。尽管产生的酶机制不同,但两种木质素分解真菌在降解过程中均引起酚类木质素单位相对含量的显着降低。然而,在酚酸和醚化肉桂酸的生物降解速率上没有观察到差异。还分析了酚和非酚木质素部分中木质素组成和肉桂酸含量的变化。在木质素生物降解的酶促机制的背景下讨论了获得的结果。

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