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Airborne DNA reveals predictable spatial and seasonal dynamics of fungi

Author

Listed:
  • Nerea Abrego

    (University of Jyväskylä
    University of Helsinki)

  • Brendan Furneaux

    (University of Jyväskylä)

  • Bess Hardwick

    (University of Helsinki)

  • Panu Somervuo

    (University of Helsinki)

  • Isabella Palorinne

    (University of Helsinki)

  • Carlos A. Aguilar-Trigueros

    (University of Jyväskylä)

  • Nigel R. Andrew

    (University of New England
    Southern Cross University)

  • Ulyana V. Babiy

    (Wrangel Island State Nature Reserve)

  • Tan Bao

    (MacEwan University)

  • Gisela Bazzano

    (Universidad Nacional de Córdoba)

  • Svetlana N. Bondarchuk

    (Sikhote-Alin State Nature Biosphere Reserve named after K. G. Abramov)

  • Timothy C. Bonebrake

    (The University of Hong Kong)

  • Georgina L. Brennan

    (Consejo Superior de Investigaciones Científicas (CSIC))

  • Syndonia Bret-Harte

    (University of Alaska)

  • Claus Bässler

    (Goethe-University Frankfurt
    Bavarian Forest National Park
    University of Bayreuth)

  • Luciano Cagnolo

    (Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET))

  • Erin K. Cameron

    (Saint Mary’s University)

  • Elodie Chapurlat

    (Swedish University of Agricultural Sciences (SLU))

  • Simon Creer

    (Bangor University)

  • Luigi P. D’Acqui

    (Research Institute on Terrestrial Ecosystems - IRET, National Research Council - CNR and National Biodiversity Future Center)

  • Natasha Vere

    (University of Copenhagen)

  • Marie-Laure Desprez-Loustau

    (University of Bordeaux)

  • Michel A. K. Dongmo

    (The University of Hong Kong
    International Institute of Tropical Agriculture (IITA))

  • Ida B. Dyrholm Jacobsen

    (Greenland Institute of Natural Resources)

  • Brian L. Fisher

    (California Academy of Sciences
    Parc Botanique et Zoologique de Tsimbazaza)

  • Miguel Flores de Jesus

    (Legado das Águas, Reserva Votorantin)

  • Gregory S. Gilbert

    (University of California Santa Cruz)

  • Gareth W. Griffith

    (Aberystwyth University)

  • Anna A. Gritsuk

    (Sikhote-Alin State Nature Biosphere Reserve named after K. G. Abramov)

  • Andrin Gross

    (Swiss Federal Research Institute WSL)

  • Håkan Grudd

    (Abisko Scientific Research Station)

  • Panu Halme

    (University of Jyväskylä)

  • Rachid Hanna

    (University of California Los Angeles)

  • Jannik Hansen

    (Aarhus University)

  • Lars Holst Hansen

    (Aarhus University)

  • Apollon D. M. T. Hegbe

    (University of Parakou)

  • Sarah Hill

    (University of New England)

  • Ian D. Hogg

    (Polar Knowledge Canada
    University of Guelph
    University of Waikato)

  • Jenni Hultman

    (University of Helsinki
    Natural Resources Institute Finland (Luke))

  • Kevin D. Hyde

    (Mae Fah Luang University)

  • Nicole A. Hynson

    (University of Hawaii at Manoa)

  • Natalia Ivanova

    (University of Guelph
    Nature Metrics North America Ltd.)

  • Petteri Karisto

    (ETH Zurich
    Natural Resources Institute Finland (Luke))

  • Deirdre Kerdraon

    (Swedish University of Agricultural Sciences (SLU))

  • Anastasia Knorre

    (National Park Krasnoyarsk Stolby
    Siberian Federal University)

  • Irmgard Krisai-Greilhuber

    (University of Vienna)

  • Juri Kurhinen

    (University of Helsinki)

  • Masha Kuzmina

    (University of Guelph)

  • Nicolas Lecomte

    (Université de Moncton)

  • Erin Lecomte

    (Université de Moncton)

  • Viviana Loaiza

    (University of Zürich)

  • Erik Lundin

    (Abisko Scientific Research Station)

  • Alexander Meire

    (Abisko Scientific Research Station)

  • Armin Mešić

    (Rudjer Boskovic Institute)

  • Otto Miettinen

    (University of Helsinki)

  • Norman Monkhouse

    (University of Guelph)

  • Peter Mortimer

    (Chinese Academy of Sciences)

  • Jörg Müller

    (Bavarian Forest National Park
    Julius Maximilians University Würzburg)

  • R. Henrik Nilsson

    (University of Gothenburg)

  • Puani Yannick C. Nonti

    (University of Parakou)

  • Jenni Nordén

    (Norwegian Institute for Nature Research (NINA))

  • Björn Nordén

    (Norwegian Institute for Nature Research (NINA))

  • Veera Norros

    (Finnish Environment Institute (Syke))

  • Claudia Paz

    (São Paulo State University
    University of São Paulo)

  • Petri Pellikka

    (University of Helsinki
    Wuhan University
    University of Nairobi)

  • Danilo Pereira

    (ETH Zurich
    Wageningen University)

  • Geoff Petch

    (University of Worcester)

  • Juha-Matti Pitkänen

    (Natural Resources Institute Finland (Luke))

  • Flavius Popa

    (Black Forest National Park)

  • Caitlin Potter

    (Aberystwyth University)

  • Jenna Purhonen

    (University of Jyväskylä
    University of Jyväskylä)

  • Sanna Pätsi

    (University of Turku)

  • Abdullah Rafiq

    (Bangor University)

  • Dimby Raharinjanahary

    (Parc Botanique et Zoologique de Tsimbazaza)

  • Niklas Rakos

    (Abisko Scientific Research Station)

  • Achala R. Rathnayaka

    (Mae Fah Luang University
    Mae Fah Luang University)

  • Katrine Raundrup

    (Greenland Institute of Natural Resources)

  • Yury A. Rebriev

    (Southern Scientific Center of the Russian Academy of Sciences)

  • Jouko Rikkinen

    (University of Helsinki
    University of Helsinki)

  • Hanna M. K. Rogers

    (Swedish University of Agricultural Sciences (SLU))

  • Andrey Rogovsky

    (National Park Krasnoyarsk Stolby)

  • Yuri Rozhkov

    (State Nature Reserve Olekminsky)

  • Kadri Runnel

    (University of Tartu
    University of Tartu)

  • Annika Saarto

    (University of Turku)

  • Anton Savchenko

    (University of Tartu)

  • Markus Schlegel

    (Swiss Federal Research Institute WSL)

  • Niels Martin Schmidt

    (Aarhus University
    Aarhus University)

  • Sebastian Seibold

    (TUD Dresden University of Technology
    Technical University of Munich)

  • Carsten Skjøth

    (University of Worcester
    Aarhus University)

  • Elisa Stengel

    (Julius Maximilians University Würzburg)

  • Svetlana V. Sutyrina

    (Sikhote-Alin State Nature Biosphere Reserve named after K. G. Abramov)

  • Ilkka Syvänperä

    (University of Turku)

  • Leho Tedersoo

    (University of Tartu
    King Saud University)

  • Jebidiah Timm

    (University of Alaska)

  • Laura Tipton

    (Chaminade University of Honolulu)

  • Hirokazu Toju

    (Kyoto University
    Kyoto University)

  • Maria Uscka-Perzanowska

    (Swedish University of Agricultural Sciences (SLU))

  • Michelle Bank

    (University of Johannesburg)

  • F. Herman Bank

    (University of Johannesburg)

  • Bryan Vandenbrink

    (Polar Knowledge Canada)

  • Stefano Ventura

    (Research Institute on Terrestrial Ecosystems - IRET, National Research Council - CNR and National Biodiversity Future Center)

  • Solvi R. Vignisson

    (Sudurnes Science and Learning Center)

  • Xiaoyang Wang

    (Chinese Academy of Sciences)

  • Wolfgang W. Weisser

    (Technical University of Munich)

  • Subodini N. Wijesinghe

    (Mae Fah Luang University
    Mae Fah Luang University)

  • S. Joseph Wright

    (Smithsonian Tropical Research Institute)

  • Chunyan Yang

    (Chinese Academy of Sciences)

  • Nourou S. Yorou

    (University of Parakou)

  • Amanda Young

    (University of Alaska)

  • Douglas W. Yu

    (Chinese Academy of Sciences
    University of East Anglia
    Chinese Academy of Sciences)

  • Evgeny V. Zakharov

    (University of Guelph
    University of Guelph)

  • Paul D. N. Hebert

    (University of Guelph
    University of Guelph)

  • Tomas Roslin

    (University of Helsinki
    Swedish University of Agricultural Sciences (SLU))

  • Otso Ovaskainen

    (University of Jyväskylä
    University of Helsinki
    Norwegian University of Science and Technology)

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 distributions1,2. To provide an integrated view of the spatial and seasonal dynamics of fungi, we implemented a globally distributed standardized aerial sampling of fungal spores3. 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 macroorganisms4,5.

Suggested Citation

  • Nerea Abrego & Brendan Furneaux & Bess Hardwick & Panu Somervuo & Isabella Palorinne & Carlos A. Aguilar-Trigueros & Nigel R. Andrew & Ulyana V. Babiy & Tan Bao & Gisela Bazzano & Svetlana N. Bondarch, 2024. "Airborne DNA reveals predictable spatial and seasonal dynamics of fungi," Nature, Nature, vol. 631(8022), pages 835-842, July.
  • Handle: RePEc:nat:nature:v:631:y:2024:i:8022:d:10.1038_s41586-024-07658-9
    DOI: 10.1038/s41586-024-07658-9
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