Institute of Microbiology of the Czech Academy of Sciences, Vídeňská 1083, 14220, Praha 4, Czech Republic.
Laboratory of Systematic Botany and Mycology, University of Tuscia, Largo dell'Università snc, Viterbo, 01100, Italy.
Sci Data. 2020 Jul 13;7(1):228. doi: 10.1038/s41597-020-0567-7.
Fungi are key players in vital ecosystem services, spanning carbon cycling, decomposition, symbiotic associations with cultivated and wild plants and pathogenicity. The high importance of fungi in ecosystem processes contrasts with the incompleteness of our understanding of the patterns of fungal biogeography and the environmental factors that drive those patterns. To reduce this gap of knowledge, we collected and validated data published on the composition of soil fungal communities in terrestrial environments including soil and plant-associated habitats and made them publicly accessible through a user interface at https://globalfungi.com . The GlobalFungi database contains over 600 million observations of fungal sequences across > 17 000 samples with geographical locations and additional metadata contained in 178 original studies with millions of unique nucleotide sequences (sequence variants) of the fungal internal transcribed spacers (ITS) 1 and 2 representing fungal species and genera. The study represents the most comprehensive atlas of global fungal distribution, and it is framed in such a way that third-party data addition is possible.
真菌在重要的生态系统服务中扮演着关键角色,涵盖了碳循环、分解作用、与栽培和野生植物的共生关系以及致病性。真菌在生态系统过程中的重要性与我们对真菌生物地理学模式以及驱动这些模式的环境因素的理解不完整形成鲜明对比。为了缩小这一知识差距,我们收集并验证了已发表的有关陆地环境(包括土壤和植物相关生境)中土壤真菌群落组成的数据,并通过 https://globalfungi.com 上的用户界面使其公开可用。GlobalFungi 数据库包含超过 6 亿个真菌序列观测值,这些序列来自超过 17000 个样本,地理位置以及其他元数据包含在 178 项原始研究中,这些研究包含了数以百万计的真菌内部转录间隔区(ITS)1 和 2 的真菌特有核苷酸序列(序列变体),代表了真菌物种和属。该研究代表了全球真菌分布的最全面图谱,并且以允许第三方数据添加的方式构建。