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首页> 外文期刊>Applied and Environmental Microbiology >Intra- and Extracellular Localization of Lignin Peroxidase during the Degradation of Solid Wood and Wood Fragments by Phanerochaete chrysosporium by Using Transmission Electron Microscopy and Immuno-Gold Labeling
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Intra- and Extracellular Localization of Lignin Peroxidase during the Degradation of Solid Wood and Wood Fragments by Phanerochaete chrysosporium by Using Transmission Electron Microscopy and Immuno-Gold Labeling

机译:木质素过氧化物酶在Phanerochaete chrysosporium降解实木和木材碎片过程中的细胞内和细胞外定位,采用透射电子显微镜和免疫金标记

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摘要

The distribution of lignin peroxidase during degradation of both wood and woody fragments by the white rot fungus Phanerochaete chrysosporium was investigated by using anti-lignin peroxidase in conjunction with postembedding transmission electron microscopy and immuno-gold labeling techniques. The enzyme was localized in the peripheral regions of the fungal cell cytoplasm in association with the cell membrane, fungal cell wall, and extracellular slime materials. In solid wood, lignin peroxidase was detected in low concentrations associated with both superficial and degradation zones within secondary cell walls undergoing fungal attack. A similar but much greater level of extracellular peroxidase activity was associated with wood fragments degraded by the fungus grown under liquid culture conditions optimal for production of the enzyme. Efforts to infiltrate degraded wood pieces with high levels of lignin peroxidase showed the enzyme to be restricted to superficial regions of wood decay and to penetrate wood cell walls only where the wall structure had been modified. In this respect the enzyme was able to penetrate characteristic zones of degradation within the secondary walls of fibers to sites of lignin attack. This suggests a possibility for a close substrate-enzyme association during wood cell wall degradation.
机译:通过使用抗木质素过氧化物酶结合包埋后透射电子显微镜和免疫金标记技术,研究了白腐真菌Phanerochaete chrysosporium在木质和木质碎片降解过程中木质素过氧化物酶的分布。该酶位于与细胞膜,真菌细胞壁和细胞外粘液物质相关的真菌细胞质的外围区域。在实木中,木质素过氧化物酶被检测到与真菌侵袭的次生细胞壁内表层和降解区相关的低浓度。与之相似但更高水平的细胞外过氧化物酶活性与木材碎片被在最适合生产该酶的液体培养条件下生长的真菌降解后有关。用高水平的木质素过氧化物酶渗入降解的木片的努力表明,该酶被限制在木材腐烂的表层区域,并且仅在壁结构已被改性的情况下穿透木细胞壁。在这方面,该酶能够穿透纤维的次生壁内降解的特征区域,从而破坏木质素。这表明在木质细胞壁降解期间紧密的底物-酶缔合的可能性。

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