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The Microflora Danica atlas of Danish environmental microbiomes

C. M. Singleton, T. B. N. Jensen, F. Delogu, K. S. Knudsen, E. A. Sørensen, V. R. Jørgensen, S. M. Karst, Y. Yang, M. Sereika, F. Petriglieri, S. Knutsson, S. M. Dall, R. H. Kirkegaard, J. M. Kristensen, C. K. Overgaard, B. J. Woodcroft, D. R. Speth, S. T. N. Aroney, Henning C. Thomsen (Member of author collaboration), Bent T. Christensen (Member of author collaboration)Lis W. de Jonge (Member of author collaboration), Anne-Cathrine S. Danielsen (Member of author collaboration), Cecilie Hermansen (Member of author collaboration), Mogens H. Greve (Member of author collaboration), Rasmus Ejrnæs (Member of author collaboration), Thomas A. Davidson (Member of author collaboration), Signe Normand (Member of author collaboration), Urs A. Treier (Member of author collaboration), Bjarke Madsen (Member of author collaboration), Andreas Schramm (Member of author collaboration), Ian P. G. Marshall (Member of author collaboration), Ann-Sofie Dam (Member of author collaboration), Kasper U. Kjeldsen (Member of author collaboration), Kai Finster (Member of author collaboration), Philip F. Thomsen (Member of author collaboration), Eva E. Sigsgaard (Member of author collaboration), Martin J. Klepke (Member of author collaboration), Marie Vestergård (Member of author collaboration), Erik Aude (Member of author collaboration), Lene Thomsen (Member of author collaboration), Camilla Lemming (Member of author collaboration), Rita Hørfarter (Member of author collaboration), Marlene M. Jensen (Member of author collaboration), Tobias G. Frøslev (Member of author collaboration), Lone Gram (Member of author collaboration), Peter B. Svendsen (Member of author collaboration), Morten Dencker Schostag (Member of author collaboration), Sanne Kjellerup (Member of author collaboration), Torben L. Skovhus (Member of author collaboration), Ditte A. Søborg (Member of author collaboration), Kasper Reitzel (Member of author collaboration), Jørgen F. Pedersen (Member of author collaboration), Andrew Giguere (Member of author collaboration), Inge S. Pedersen (Member of author collaboration), Mads Sønderkær (Member of author collaboration), Jes Vollertsen (Member of author collaboration), Fan Liu (Member of author collaboration), Peter Roslev (Member of author collaboration), Niels Iversen (Member of author collaboration), Kåre L. Nielsen (Member of author collaboration), Nadieh de Jonge (Member of author collaboration), Dan Bruhn (Member of author collaboration), Jeppe L. Nielsen (Member of author collaboration), Torsten N. Kristensen (Member of author collaboration), Chenjing Jiang (Member of author collaboration), Marta A. Nierychlo (Member of author collaboration), Giulia Dottorin (Member of author collaboration), M. Wagner, M. K. D. Dueholm, P. H. Nielsen*, M. Albertsen*, The Microflora Danica Consortium

*Corresponding author for this work

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Abstract

Over the past 20 years, there have been considerable advances in revealing the microbiomes that underpin processes in natural and human-associated environments. Recent large-scale metagenome surveys have recorded the variety of microbial life in the oceans1, in the human gut2 and on Earth3, with compilations encompassing thousands of public datasets4,5. However, despite their broad scope, these studies often lack functional information, and their sample locations are frequently sparsely distributed, limited in resolution or lacking metadata. Here we present Microflora Danica—an atlas of Danish environmental microbiomes encompassing 10,683 shotgun metagenomes and 450 nearly full-length 16S and 18S rRNA datasets, linked to a five-level habitat classification scheme. We show that although human-disturbed habitats have high alpha diversity, species reoccur, revealing hidden homogeneity. This underlines the role of natural systems in maintaining total species (gamma) diversity and emphasizes the need for national baselines for tracking microbial responses to land-use and climate change. Consequently, we focused our dataset exploration on nitrifiers, a functional group closely linked to climate change and of major importance for Denmark’s primary land use: agriculture. We identify several lineages encoding nitrifier key genes and reveal the effects of land disturbance on the abundance of well-studied, as well as uncharacterized, nitrifier groups, with potential implications for N2O emissions. Microflora Danica offers an unparalleled resource for addressing fundamental questions in microbial ecology about what drives microbial diversity, distribution and function.

Original languageEnglish
JournalNature
Volume649
Pages (from-to)971-981
ISSN0028-0836
DOIs
Publication statusPublished - 2026

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© The Author(s) 2025.

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