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首页> 外文期刊>Microbial Ecology: An International Journal >Application of Molecular Techniques to the Elucidation of the Microbial Community Structure of Antique Paintings
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Application of Molecular Techniques to the Elucidation of the Microbial Community Structure of Antique Paintings

机译:分子技术在阐明古画微生物群落结构中的应用

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This paper uses molecular techniques to describe the microstructure and microbiological communities of sixteenth century artwork and their relationships. The microbiological populations, analysed by denaturing gradient gel electrophoresis (DGGE), were highly influenced by the chemical composition of the pictorial layers detected by energy-dispersive X-ray analysis. DGGE revealed that the diversity of microbial communities was lower in pictorial layers composed of pigments with metals, such as Pb, Cu and Hg, than in those found in pictorial layers without such compounds. The number of cultivable microorganisms, mainly fungi and bacteria, was very low in comparison to those found by DGGE, revealing the presence of both cultivable and as-yet-uncultivated (or not viable) species in the samples analysed. Both fungi and bacteria were present in a non-random spatial distribution. Environmental scanning electron microscopy and fluorescent in situ hybridisation analyses revealed that bacterial populations were usually found in close contact with the surface of the pictorial layers, and fungal populations were located on the bacterial biofilm. This work shows, for the first time, the correlation between the diversity of the microbial populations and the chemical composition of the pictorial layers of an artwork.
机译:本文使用分子技术描述了16世纪艺术品的微观结构和微生物群落及其关系。通过变性梯度凝胶电泳(DGGE)分析的微生物种群受到能量色散X射线分析检测到的绘画层化学成分的极大影响。 DGGE揭示,在由具有金属元素(例如Pb,Cu和Hg)的颜料组成的图像层中,微生物群落的多样性要低于在不含此类化合物的图像层中所发现的微生物群落的多样性。与由DGGE发现的微生物相比,可培养的微生物(主要是真菌和细菌)的数量非常低,这表明分析的样品中同时存在可培养的和尚未培养的(或不可行的)物种。真菌和细菌均以非随机的空间分布存在。环境扫描电子显微镜和荧光原位杂交分析表明,通常发现细菌种群与绘画层表面紧密接触,而真菌种群位于细菌生物膜上。这项工作首次显示了微生物种群多样性与艺术品绘画层化学成分之间的相关性。

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