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首页> 外文期刊>International Biodeterioration & Biodegradation >Bacterial diversity associated with archaeological waterlogged wood: ribosomal RNA clone libraries and denaturing gradient gel electrophoresis (DGGE).
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Bacterial diversity associated with archaeological waterlogged wood: ribosomal RNA clone libraries and denaturing gradient gel electrophoresis (DGGE).

机译:与考古涝渍木材相关的细菌多样性:核糖体RNA克隆文库和变性梯度凝胶电泳(DGGE)。

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摘要

The identity of bacteria in waterlogged archaeological wood responsible for degradation was investigated using novel isolation techniques and molecular DNA technology. Wood in cultural heritage and archaeological sites is vulnerable to bacterial attack, with bacterially driven wood-decay predominating when wood is buried in sediments. In the research presented, DNA was extracted directly from wood samples and the diversity of bacterial species was determined. Using cultures isolated by project partners from archaeological wood of the same origin at 19 different European sites, a comparison of the DNA of nine culturable isolates and DNA from species commonly appearing in 56 independent molecular fingerprints was made. Results show that sequences representing bacteria from the Cytophaga-Flavobacterium-Bacteroides (CFB) complex and the Pseudomonas group were commonly recovered, with relatives of the Cellvibrio and Brevundimonas groups also present. These observations are the first to provide a molecular link between environmental samples where degradation had occurred and cultured organisms, although the precise role and capability of the bacterial strains remains obscure.
机译:使用新颖的分离技术和分子DNA技术研究了淹水的考古木材中负责降解的细菌的身份。文化遗产和考古遗址中的木材容易受到细菌的攻击,当木材被埋在沉积物中时,细菌驱动的木材腐烂将占主导地位。在提出的研究中,直接从木材样品中提取DNA,并确定细菌种类的多样性。使用项目合作伙伴从欧洲19个不同地点的同一来源的考古木材中分离出的培养物,比较了9种可分离菌株的DNA和通常出现在56个独立分子指纹中的物种的DNA。结果表明,代表细胞噬菌体-黄杆菌-拟杆菌(CFB)复合体和假单胞菌组细菌的序列通常被回收,同时还存在Cellvibrio和Brevundimonas组的亲属。这些发现是第一个提供发生降解的环境样品与培养生物之间的分子联系的信息,尽管细菌菌株的确切作用和能力仍然不清楚。

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