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多极值耐受黑酵母在全球生物群落土壤中高紫外线和气候季节性条件下普遍存在。

The poly-extreme tolerant black yeasts are prevalent under high ultraviolet light and climatic seasonality across soils of global biomes.

机构信息

Department of Ecological and Biological Sciences, University of Tuscia, Viterbo, Italy.

Italian Antarctic National Museum (MNA), Mycological Section, Genoa, Italy.

出版信息

Environ Microbiol. 2022 Apr;24(4):1988-1999. doi: 10.1111/1462-2920.15969. Epub 2022 Mar 24.

Abstract

Black yeasts are among the most stress-tolerant organisms of the planet, thriving under all types of terrestrial habitats and extreme environments. Yet, their global patterns and ecology remain far less studied, limiting our capacity to identify the main environmental drivers of these important organisms across biomes. To fill this knowledge gap, we analysed topsoils from 235 terrestrial ecosystems across and within globally distributed climate groups (i.e. dry, temperate and continental). We found that soils are important repositories of black yeasts, and that ultraviolet light, fine soil texture, and precipitation seasonality are the most consistent environmental factors associated with their diversity across biomes. Finally, we identified Exophiala and Cladophialophora as the most dominant black yeasts genera in soils across the globe. These findings provide novel evidence of global distribution of black yeasts and their key environmental predictors, giving new insights for speculating the evolution and spreading of these extreme-tolerant organisms throughout both natural and human associated extreme environments.

摘要

黑酵母是地球上最能耐受压力的生物之一,在各种陆地栖息地和极端环境中都能茁壮成长。然而,它们的全球模式和生态学仍研究得很少,限制了我们识别这些重要生物在生物群落中主要环境驱动因素的能力。为了填补这一知识空白,我们分析了全球分布的气候组(即干旱、温带和大陆性)内和之间的 235 个陆地生态系统的表土。我们发现土壤是黑酵母的重要储存库,紫外线、细土壤质地和降水季节性是与它们在生物群落中多样性最相关的环境因素。最后,我们确定了外瓶霉属和枝孢霉属是全球土壤中最主要的黑酵母属。这些发现为黑酵母的全球分布及其关键环境预测因子提供了新的证据,为推测这些极端耐受生物在自然和人类相关的极端环境中的进化和传播提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d2d/9311647/d5eeccf7e270/EMI-24-1988-g001.jpg

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