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Fungal diversity and distribution across distinct biodeterioration phenomena in limestone walls of the old cathedral of Coimbra, UNESCO World Heritage Site

机译:在哥伦布拉旧大教堂,联合国教科文组织世界遗产的老大教堂石灰岩墙壁中的真菌多样性和分布

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摘要

Fungi are powerful biodeteriogens and when colonizing stone monuments are often responsible for severe physical, chemical and aesthetical modifications. Recently the old cathedral of Coimbra (Portugal) was awarded the UNESCO World Heritage Site distinction as an integrant part of the "University of Coimbra- Alta and Sofia" area. The limestone walls in this cathedral show clear visual signs of biological colonization and biodeterioration. The aim of this work was to obtain an extensive fingerprint of the biodeteriorating fungal agents in this affected ancient limestone through the application of traditional cultivation and modern Next Generation Sequencing techniques. Due to high diversity of distinctive biodeterioration phenomena affecting this site, a rapport between the identified fungal populations and the different biodeterioration types found was also established and their importance for the monument preservation discussed. The results obtained through the application of this approach, not only allowed a robust characterization of the fungal communities colonizing this monument, but also elucidated that distinct fungal communities are dissimilar according to the type of biodeterioration analyzed. In addition, we verified that both cultivation and metagenomics methodologies should be employed synergistically in limestone biodeterioration studies in order to tackle inherent limitations regarding both techniques.
机译:真菌是强大的生物仪器,当殖民化石纪念碑通常负责严重的物理,化学和美学修改。最近,科英布拉(葡萄牙)的旧大教堂被授予教科文组织世界遗产地区的区别,作为“乔布拉大学和索菲亚”地区的一体的一部分。这座大教堂的石灰石墙壁显示出明显的生物定植和生物传播者的视觉迹象。这项工作的目的是通过应用传统的培养和现代下一代测序技术来获得这种受影响的古老石灰岩的生物参城因素真菌剂的广泛指纹。由于影响本网站的特殊生物传达现象的高多样性,所识别的真菌人群与发现的不同生物转盘类型的关系也建立,并对纪念保护的重要性讨论。通过应用这种方法获得的结果,不仅允许殖民殖民地纪念碑的真菌社区的稳健性,而且还阐明了不同的真菌社区根据分析的生物转盘类型而异。此外,我们核实培养和偏心神经方法也应在石灰石生物传达研究中协同作用,以解决关于这两种技术的固有局限性。

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