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在黄孢原毛平革菌降解杨木的过程中,胞外葡聚糖鞘的参与。

Involvement of an Extracellular Glucan Sheath during Degradation of Populus Wood by Phanerochaete chrysosporium.

机构信息

Centre de Recherches sur les Macromolécules Végétales, Centre Nationale de la Recherche Scientifique, Université Joseph Fourier, B.P. 53 X, 38041 Grenoble Cedex, France.

出版信息

Appl Environ Microbiol. 1991 Feb;57(2):374-84. doi: 10.1128/aem.57.2.374-384.1991.

Abstract

Observations by transmission electron microscopy of wood samples of Populus tremula inoculated with the white rot fungus Phanerochaete chrysosporium showed that, at certain stages of their growth cycle, hyphae were encapsulated by a sheath which seems to play an active role in the wood cell wall degradation. Chemical and immunochemical techniques and C nuclear magnetic resonance spectroscopy were applied to demonstrate the beta-1,3-1,6-d-glucan nature of the sheath. Double-staining methods revealed the interaction between the extracellular peroxidases involved in lignin degradation and the glucan mucilage. The glucan was also shown to establish a material junction between the fungus and the wood cell wall. It was concluded that, by means of these interactions, the sheath provides a transient junction between the hyphae and the wood, thus establishing a point of attachment to the site of the degradation. The association of peroxidases to the glucan matrix is in favor of the role of the sheath as a supporting structure. Furthermore, that the sheath was hydrolyzed during the attack demonstrated its active role both in providing the H(2)O(2) necessary to the action of peroxidases and in providing a mode of transport of the fungal enzymes to their substrates at the surface of the wood cell wall.

摘要

通过对接种白腐真菌糙皮侧耳的欧洲山杨木材样本的透射电子显微镜观察发现,在其生长周期的某些阶段,菌丝被一层鞘所包裹,这层鞘似乎在木质细胞壁的降解中发挥了积极作用。化学和免疫化学技术以及 C 核磁共振波谱学被应用于证明鞘的β-1,3-1,6-葡聚糖性质。双重染色方法揭示了参与木质素降解的细胞外过氧化物酶与葡聚糖黏胶之间的相互作用。还表明葡聚糖在真菌和木质细胞壁之间建立了物质连接。由此得出结论,通过这些相互作用,鞘在菌丝和木材之间提供了一个短暂的连接,从而建立了一个附着在降解部位的附着点。过氧化物酶与葡聚糖基质的结合有利于鞘作为支撑结构的作用。此外,在攻击过程中鞘被水解,这证明了它在提供过氧化物酶所需的 H2O2 以及为真菌酶向木质细胞壁表面的底物提供运输方式方面发挥了积极作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a7f/182720/faec2a787d5e/aem00055-0054-a.jpg

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