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空气传播 DNA 揭示真菌可预测的空间和季节性动态。

Airborne DNA reveals predictable spatial and seasonal dynamics of fungi.

机构信息

Department of Biological and Environmental Science, University of Jyväskylä, Jyväskylä, Finland.

Department of Agricultural Sciences, University of Helsinki, Helsinki, Finland.

出版信息

Nature. 2024 Jul;631(8022):835-842. doi: 10.1038/s41586-024-07658-9. Epub 2024 Jul 10.

Abstract

Fungi are among the most diverse and ecologically important kingdoms in life. However, the distributional ranges of fungi remain largely unknown as do the ecological mechanisms that shape their distributions. To provide an integrated view of the spatial and seasonal dynamics of fungi, we implemented a globally distributed standardized aerial sampling of fungal spores. The vast majority of operational taxonomic units were detected within only one climatic zone, and the spatiotemporal patterns of species richness and community composition were mostly explained by annual mean air temperature. Tropical regions hosted the highest fungal diversity except for lichenized, ericoid mycorrhizal and ectomycorrhizal fungi, which reached their peak diversity in temperate regions. The sensitivity in climatic responses was associated with phylogenetic relatedness, suggesting that large-scale distributions of some fungal groups are partially constrained by their ancestral niche. There was a strong phylogenetic signal in seasonal sensitivity, suggesting that some groups of fungi have retained their ancestral trait of sporulating for only a short period. Overall, our results show that the hyperdiverse kingdom of fungi follows globally highly predictable spatial and temporal dynamics, with seasonality in both species richness and community composition increasing with latitude. Our study reports patterns resembling those described for other major groups of organisms, thus making a major contribution to the long-standing debate on whether organisms with a microbial lifestyle follow the global biodiversity paradigms known for macroorganisms.

摘要

真菌是生命中最多样化和最重要的生态王国之一。然而,真菌的分布范围在很大程度上仍然未知,塑造它们分布的生态机制也是如此。为了提供对真菌的空间和季节性动态的综合观察,我们对真菌孢子进行了全球分布的标准化航空采样。绝大多数的操作分类单元仅在一个气候带内被检测到,物种丰富度和群落组成的时空模式主要由年平均气温来解释。除了地衣、石楠类菌根真菌和外生菌根真菌外,热带地区拥有最高的真菌多样性,而这些真菌的多样性在温带地区达到了顶峰。对气候响应的敏感性与系统发育关系有关,这表明一些真菌类群的大尺度分布部分受到其祖先生态位的限制。季节性敏感性中存在强烈的系统发育信号,这表明一些真菌类群保留了其祖先仅在短时间内产生孢子的特性。总的来说,我们的研究结果表明,真菌这一高度多样的王国遵循着全球高度可预测的空间和时间动态,物种丰富度和群落组成的季节性随着纬度的增加而增加。我们的研究报告的模式与其他主要生物类群描述的模式相似,因此为长期以来关于具有微生物生活方式的生物是否遵循已知的宏观生物全球生物多样性模式的争论做出了重大贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/721c/11269176/daea49e6341a/41586_2024_7658_Fig1_HTML.jpg

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