首页> 外文期刊>Microbial Ecology: An International Journal >Detection and elimination of cyanobacteria from frescoes: the case of the St. Brizio Chapel (Orvieto Cathedral, Italy)
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Detection and elimination of cyanobacteria from frescoes: the case of the St. Brizio Chapel (Orvieto Cathedral, Italy)

机译:检测和消除壁画中的蓝细菌:以圣布里齐奥教堂(意大利奥维多大教堂)为例

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A rosy discoloration partly masking the Luca Signorelli frescoes in St. Brizio Chapel (Orvieto Cathedral, Italy) for many years proved to be a biological alteration, so the present research focused on investigating biodeteriogens and selecting an appropriate biocide to treat them. Optical epifluorescence and electronic microscopic observations of the rosy powder revealed a prevalent autofluorescent coccoid form with a diameter bigger than 5 microm. Chlorophylls a and b were extracted, suggesting the presence of cyanobacteria, a thesis subsequently confirmed by flow cytometry. Cultural media were inoculated with the rosy powder, and microorganisms grew as a green patina in phototrophic conditions and as a rosy patina when organic compounds were added to the mineral medium. The rosy discoloration was most likely caused by the presence of phycoerythrin. The sequencing of the cyanobacteria-specific polymerase chain reaction (PCR)-DGGE bands matched, with a similarity percentage >94, uncultured cyanobacteria, and the sequences were deposited in the GenBank under EU874241, EU874242, EU874243, EU874244, EU874245, EU874246, and EU874247. Finally, the efficiency of the two biocides Neo Desogen and Metatin 5810-101, both based on benzalkonium chloride, was evaluated using adenosine triphosphate measurements and PCR-based detection of cyanobacteria. Metatin, used in situ at 2% of the trade product, proved to be the better biocide, no cyanobacteria being detected after the Metatin treatment.
机译:多年以来,玫瑰色变色部分地掩盖了圣布里齐奥教堂(意大利奥维多大教堂)的卢卡·西诺雷利壁画,这是一种生物改变,因此,本研究着重于研究生物致死菌并选择合适的杀生物剂进行处理。玫瑰色粉末的光学表面荧光和电子显微镜观察显示,直径大于5微米的普遍的自发荧光球状形式。提取叶绿素a和b,表明存在蓝细菌,随后通过流式细胞术证实了这一论点。用玫瑰色粉末接种培养基,在光养条件下,微生物以绿色的铜绿生长,当向矿物培养基中添加有机化合物时,则以玫瑰红的铜绿生长。玫瑰红变色最可能是由于藻红蛋白的存在引起的。蓝藻特异性聚合酶链反应(PCR)-DGGE条带的序列相匹配,相似百分比> 94,未培养蓝藻,序列分别存放在GenBank中的EU874241,EU874242,EU874243,EU874244,EU874245,EU874246和EU874247。最后,使用三磷酸腺苷测量和基于PCR的蓝细菌检测评估了两种均基于苯扎氯铵的杀菌剂Neo Desogen和Metatin 5810-101。原位使用占商品2%的Metatin被证明是更好的杀菌剂,经过Metatin处理后未发现任何蓝细菌。

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