首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Physicochemical and biochemical characterization of non-biodegradable cellulose in Miocene gymnosperm wood from the Entre-Sambre-et-Meuse, Southern Belgium
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Physicochemical and biochemical characterization of non-biodegradable cellulose in Miocene gymnosperm wood from the Entre-Sambre-et-Meuse, Southern Belgium

机译:比利时南部Entre-Sambre-et-Meuse的中新世裸子植物木材中不可生物降解纤维素的物理化学和生化特性

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摘要

Specimens of Miocene fossil wood from the Entre-Sambre-et-Meuse karsts (southern Belgium) were examined using physicochemical and biochemical techniques in order to understand the reasons for the exceptional preservation of these fossilized remains after 15 million years. Structural and chemical changes were assessed by comparing the structural features of the fossil samples with those of their modern counterpart, Metaseguoia. Solid state C-13 nuclear magnetic resonance (NMR) and microscopic analysis showed good preservation of the cellulose structure in the fossil wood from the Florennes peat deposit. Despite the substantial cellulose fraction available in the fossil tissue, an enzymatic degradation test and a biochemical methane potential assay showed that the fossil cellulose could not be degraded by cellulases and anaerobic microorganisms usually involved in the biodegradation of organic matter. Moreover, the cellulose structure (crystallinity and surface area) seemed to have no effect on cellulose biodegradability in these Miocene fossil wood samples. On the basis of our observations, we suggest that the presence of a modified lignin structure could greatly influence cellulose preservation/biodegradability. (c) 2006 Elsevier Ltd. All rights reserved.
机译:为了研究1500万年后这些化石残骸得到特殊保存的原因,使用物理化学和生化技术对来自Entre-Sambre-et-Meuse喀斯特的中新世化石标本进行了检查。通过将化石样品的结构特征与其现代同类物美塞哥尼亚的结构特征进行比较,评估了结构和化学变化。固态C-13核磁共振(NMR)和显微镜分析表明,弗洛雷纳斯泥炭沉积物中化石木材中纤维素结构的良好保存。尽管化石组织中有大量可用的纤维素,但是酶促降解测试和生化甲烷潜力测定表明,化石纤维素无法被通常参与有机物生物降解的纤维素酶和厌氧微生物降解。此外,在这些中新世化石木材样品中,纤维素结构(结晶度和表面积)似乎对纤维素的生物降解性没有影响。根据我们的观察,我们建议修饰的木质素结构的存在会极大地影响纤维素的保存/生物降解性。 (c)2006 Elsevier Ltd.保留所有权利。

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