With an impressive ability to survive in harsh environments, black fungi are an ecological group of melanized fungi that are widely recognized as a major contributor to the biodeterioration of stone cultural heritage materials. As part of the ongoing efforts to study the fungal diversity thriving in a deteriorated limestone funerary art piece at the Lemos Pantheon, a national monument located in Ãgueda, Portugal, two isolates of an unknown microcolonial black fungus were retrieved. These isolates were thoroughly studied through a comprehensive analysis based on a multi-locus phylogeny of a combined dataset of ITS rDNA, LSU, and rpb2, along with morphological, physiological, and ecological characteristics. Based on the data obtained from this integrative analysis, we propose a new genus, Saxispiralis gen. nov., and a new species, Saxispiralis lemnorum sp. nov., in the recently described Aeminiaceae family (order Mycosphaerellales). Prior to this discovery, this family only had one known genus and species, Aeminium ludgeri, also isolated from deteriorated limestone. Additionally, considering the isolation source of the fungus and to better understand its potential contribution to the overall stone monument biodeterioration, its in vitro biodeteriorative potential was also evaluated. This work represents a significant contribution to the understanding of the fungal diversity involved in the biodeterioration of limestone heritage.
Expanding the Microcolonial Black Fungi Aeminiaceae Family: Saxispiralis lemnorum gen. et sp. nov. (Mycosphaerellales), Isolated from Deteriorated Limestone in the Lemos Pantheon, Portugal.
扩展微菌落黑真菌 Aeminiaceae 科:Saxispiralis lemnorum gen. et sp. nov. (Mycosphaerellales),从葡萄牙莱莫斯万神殿的劣化石灰岩中分离得到
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作者:Paiva Diana S, Trovão João, Fernandes LuÃs, Mesquita Nuno, Tiago Igor, Portugal António
| 期刊: | Journal of Fungi | 影响因子: | 4.000 |
| 时间: | 2023 | 起止号: | 2023 Sep 10; 9(9):916 |
| doi: | 10.3390/jof9090916 | 研究方向: | 微生物学 |
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