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Airborne DNA reveals predictable spatial and seasonal dynamics of fungi.

Nerea AbregoBrendan FurneauxBess HardwickPanu SomervuoIsabella PalorinneCarlos A Aguilar-TriguerosNigel R AndrewUlyana V BabiyTan BaoGisela BazzanoSvetlana N BondarchukTimothy C BonebrakeGeorgina L BrennanMarion Syndonia Bret-HarteClaus BässlerLuciano CagnoloErin K CameronElodie ChapurlatSimon CreerLuigi Paolo D'AcquiNatasha de VereMarie-Laure Desprez-LoustauMichel A K DongmoIda B Dyrholm JacobsenBrian L FisherMiguel Flores de JesusGregory S GilbertGareth W GriffithAnna A GritsukAndrin GrossHåkan GruddPanu HalmeRachid HannaJannik HansenLars Holst HansenApollon D M T HegbeSarah HillIan D HoggJenni HultmanKevin D HydeNicole A HynsonNatalia IvanovaPetteri KaristoDeirdre KerdraonAnastasia KnorreIrmgard Krisai-GreilhuberJuri KurhinenMasha KuzminaNicolas LecomteErin LecomteViviana LoaizaErik LundinAlexander MeireArmin MešićOtto MiettinenNorman MonkhousePeter MortimerJörg C MüllerHenrik R NilssonPuani Yannick C NontiJenni NordenBjörn NordénVeera NorrosClaudia PazPetri PellikkaDanilo PereiraGeoff PetchJuha-Matti PitkänenFlavius PopaCaitlin PotterJenna PurhonenSanna PätsiAbdullah RafiqDimby RaharinjanaharyNiklas RakosAchala R RathnayakaKatrine RaundrupYury A RebrievJouko RikkinenHanna M K RogersAndrey RogovskyYuri RozhkovKadri RunnelAnnika SaartoAnton SavchenkoMarkus SchlegelNiels Martin SchmidtSebastian SeiboldCarsten A SkjøthElisa StengelSvetlana V SutyrinaIlkka SyvänperäLeho TedersooJebidiah TimmLaura TiptonHirokazu TojuMaria Uscka-PerzanowskaMichelle van der BankF Herman van der BankBryan VandenbrinkStefano VenturaSolvi R VignissonXiaoyang WangWolfgang W WeisserSubodini Nuwanthika WijesingheS Joseph WrightChunyan YangNourou S YorouAmanda YoungDouglas W YuEvgeny V ZakharovPaul D N HebertTomas V RoslinOtso Ovaskainen
Published in: Nature (2024)
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 1,2 . To provide an integrated view of the spatial and seasonal dynamics of fungi, we implemented a globally distributed standardized aerial sampling of fungal spores 3 . 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 4,5 .
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