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Contribution of the Microbial Communities Detected on an Oil Painting on Canvas to Its Biodeterioration

机译:在画布上的一幅油画上检测到的微生物群落对其生物降解的贡献

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摘要

In this study, we investigated the microbial community (bacteria and fungi) colonising an oil painting on canvas, which showed visible signs of biodeterioration. A combined strategy, comprising culture-dependent and -independent techniques, was selected. The results derived from the two techniques were disparate. Most of the isolated bacterial strains belonged to related species of the phylum Firmicutes, as Bacillus sp. and Paenisporosarcina sp., whereas the majority of the non-cultivable members of the bacterial community were shown to be related to species of the phylum Proteobacteria, as Stenotrophomonas sp. Fungal communities also showed discrepancies: the isolated fungal strains belonged to different genera of the order Eurotiales, as Penicillium and Eurotium, and the non-cultivable belonged to species of the order Pleosporales and Saccharomycetales. The cultivable microorganisms, which exhibited enzymatic activities related to the deterioration processes, were selected to evaluate their biodeteriorative potential on canvas paintings; namely Arthrobacter sp. as the representative bacterium and Penicillium sp. as the representative fungus. With this aim, a sample taken from the painting studied in this work was examined to determine the stratigraphic sequence of its cross-section. From this information, “mock paintings,” simulating the structure of the original painting, were prepared, inoculated with the selected bacterial and fungal strains, and subsequently examined by micro-Fourier Transform Infrared spectroscopy, in order to determine their potential susceptibility to microbial degradation. The FTIR-spectra revealed that neither Arthrobacter sp. nor Penicillium sp. alone, were able to induce chemical changes on the various materials used to prepare “mock paintings.” Only when inoculated together, could a synergistic effect on the FTIR-spectra be observed, in the form of a variation in band position on the spectrum.
机译:在这项研究中,我们调查了布满油画的画布上的微生物群落(细菌和真菌),这些油画显示出明显的生物恶化迹象。选择了包括文化依赖性技术和非依赖性技术的组合策略。从这两种技术得出的结果是完全不同的。大多数分离的细菌菌株属于芽孢杆菌属的相关种,如芽孢杆菌属。和Paenisporosarcina sp。,而细菌群落的大多数不可培养成员与Stenotrophomonas sp。一样,都与门氏菌属物种有关。真菌群落也显示出差异:分离的真菌菌株属于欧氏菌属的不同属,如青霉属和Euro,不可栽培的菌株属于伞形目和酿酒酵母属的种。选择表现出与降解过程有关的酶活性的可培养微生物,以评估其在画布上的生物降解潜力。即节杆菌属。作为代表细菌和青霉菌。作为代表性木耳。出于这个目的,检查了从这项工作中研究的绘画中提取的样本,以确定其横截面的地层序列。根据这些信息,准备了模拟原始绘画结构的“模拟绘画”,并用选定的细菌和真菌菌株进行了接种,随后通过微傅里叶变换红外光谱进行了检查,以确定它们对微生物降解的潜在敏感性。 。 FTIR光谱显示,节杆菌都没有。也不是青霉菌。仅此一项,就能够诱导用于制备“模拟绘画”的各种材料的化学变化。仅当一起接种时,才可以观察到FTIR光谱的协同效应,其形式是谱带位置的变化。

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