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Mixtures of aromatic compounds induce ligninolytic gene expression in the wood-rotting fungus Dichomitus squalens

机译:芳香族化合物的混合物诱导木材腐烂的真菌狄弥祖队中的木质素溶解基因表达

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摘要

Heterologous production of fungal ligninolytic cocktails is challenging due to the low yields of catalytically active lignin modifying peroxidases. Production using a natural system, such as a wood-rotting fungus, is a promising alternative if specific or preferential induction of the ligninolytic activities could be achieved. Using transcriptomics, gene expression of the white-rot Dichomitus squalens during growth on mixtures of aromatic compounds, with ring structures representing the two major lignin sub-units, was compared to a wood substrate. Most of the genes encoding lignin modifying enzymes (laccases and peroxidases) categorised as highly or moderately expressed on wood were expressed similarly on aromatic compounds. Higher expression levels of a subset of manganese and versatile peroxidases was observed on di- compared to mono-methoxylated aromatics. The expression of polysaccharide degrading enzymes was lower on aromatic compounds compared to wood, demonstrating that the induction of lignin modifying enzymes became more specific. This study suggests potential for aromatic waste streams, e.g. from lignocellulose pretreatment, to produce a lignin-specific enzyme cocktail from D. squalens or other white-rot fungi.
机译:由于催化活性木质素改性过氧化物酶的低产量,真菌木质素鸡尾酒的异源生产是挑战。如果可以实现木质素溶解活性的特异性或优先诱导,使用自然系统(例如木材腐烂的真菌)的生产是一种有前途的替代方案。使用转录组织,在芳族化合物混合物的生长期间,使用代表两个主要木质素子单元的环形结构的白腐肽酶标志素的基因表达进行了比较。在芳族化合物上类似地表达编码木质素改性酶(漆酶和过氧化物酶)的大多是在木材上进行高度或中等表达的基因。与单甲氧基化的芳烃相比,观察到锰和通酯过氧化物酶的较高表达水平。与木材相比,芳族化合物对多糖降解酶的表达较低,表明木质素改性酶的诱导变得更加特异。这项研究表明芳香废物流的潜力,例如芳香废物流。从木质纤维素预处理中,从D. squalens或其他白腐真菌产生木质素特异性酶鸡尾酒。

著录项

  • 来源
    《Journal of Biotechnology》 |2020年第2020期|共5页
  • 作者单位

    Univ Utrecht Westerdijk Fungal Biodivers Inst Fungal Physiol Uppsalalaan 8 NL-3584 CT Utrecht Netherlands;

    Univ Utrecht Westerdijk Fungal Biodivers Inst Fungal Physiol Uppsalalaan 8 NL-3584 CT Utrecht Netherlands;

    Univ Utrecht Westerdijk Fungal Biodivers Inst Fungal Physiol Uppsalalaan 8 NL-3584 CT Utrecht Netherlands;

    US Dept Energy Joint Genome Inst 2800 Mitchell Dr Walnut Creek CA 94598 USA;

    US Dept Energy Joint Genome Inst 2800 Mitchell Dr Walnut Creek CA 94598 USA;

    US Dept Energy Joint Genome Inst 2800 Mitchell Dr Walnut Creek CA 94598 USA;

    US Dept Energy Joint Genome Inst 2800 Mitchell Dr Walnut Creek CA 94598 USA;

    US Dept Energy Joint Genome Inst 2800 Mitchell Dr Walnut Creek CA 94598 USA;

    Univ Utrecht Westerdijk Fungal Biodivers Inst Fungal Physiol Uppsalalaan 8 NL-3584 CT Utrecht Netherlands;

    Univ Helsinki Dept Microbiol 56 Viikinkaari 9 Bioctr 1 FL-00014 Helsinki Finland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物工程学(生物技术);
  • 关键词

    Basidiomycete; Aromatics; Lignin; Gene expression; White-rot;

    机译:斯基思霉素;芳烃;木质素;基因表达;白腐;
  • 入库时间 2022-08-20 08:47:44

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