Department of Biological and Environmental Science, University of Jyväskylä, P.O. Box 35, FI-40014, Jyväskylä, Finland.
Organismal and Evolutionary Biology Research Programme, Faculty of Biological and Environmental Sciences, University of Helsinki, P. O. Box 65, 00014, Helsinki, Finland.
Sci Data. 2024 May 30;11(1):561. doi: 10.1038/s41597-024-03410-0.
Novel methods for sampling and characterizing biodiversity hold great promise for re-evaluating patterns of life across the planet. The sampling of airborne spores with a cyclone sampler, and the sequencing of their DNA, have been suggested as an efficient and well-calibrated tool for surveying fungal diversity across various environments. Here we present data originating from the Global Spore Sampling Project, comprising 2,768 samples collected during two years at 47 outdoor locations across the world. Each sample represents fungal DNA extracted from 24 m of air. We applied a conservative bioinformatics pipeline that filtered out sequences that did not show strong evidence of representing a fungal species. The pipeline yielded 27,954 species-level operational taxonomic units (OTUs). Each OTU is accompanied by a probabilistic taxonomic classification, validated through comparison with expert evaluations. To examine the potential of the data for ecological analyses, we partitioned the variation in species distributions into spatial and seasonal components, showing a strong effect of the annual mean temperature on community composition.
新型的生物多样性采样和特征描述方法为重新评估全球生命模式带来了巨大的希望。利用气旋采样器采集空气传播孢子,并对其 DNA 进行测序,已被提议作为一种高效且经过良好校准的工具,用于调查各种环境中的真菌多样性。在这里,我们展示了源自全球孢子采样项目的数据,该项目包括在两年内于全球 47 个户外地点采集的 2768 个样本。每个样本代表从 24 米空气中提取的真菌 DNA。我们应用了一个保守的生物信息学管道,该管道过滤掉了没有强烈证据表明代表真菌物种的序列。该管道产生了 27954 个种级别的操作分类单元 (OTU)。每个 OTU 都附有概率分类学分类,通过与专家评估的比较进行验证。为了检验数据在生态分析中的潜力,我们将物种分布的变化划分为空间和季节成分,结果表明年平均温度对群落组成有很强的影响。