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Global maps of soil temperature.

Authors :
Lembrechts JJ
van den Hoogen J
Aalto J
Ashcroft MB
De Frenne P
Kemppinen J
Kopecký M
Luoto M
Maclean IMD
Crowther TW
Bailey JJ
Haesen S
Klinges DH
Niittynen P
Scheffers BR
Van Meerbeek K
Aartsma P
Abdalaze O
Abedi M
Aerts R
Ahmadian N
Ahrends A
Alatalo JM
Alexander JM
Allonsius CN
Altman J
Ammann C
Andres C
Andrews C
Ardö J
Arriga N
Arzac A
Aschero V
Assis RL
Assmann JJ
Bader MY
Bahalkeh K
Barančok P
Barrio IC
Barros A
Barthel M
Basham EW
Bauters M
Bazzichetto M
Marchesini LB
Bell MC
Benavides JC
Benito Alonso JL
Berauer BJ
Bjerke JW
Björk RG
Björkman MP
Björnsdóttir K
Blonder B
Boeckx P
Boike J
Bokhorst S
Brum BNS
Brůna J
Buchmann N
Buysse P
Camargo JL
Campoe OC
Candan O
Canessa R
Cannone N
Carbognani M
Carnicer J
Casanova-Katny A
Cesarz S
Chojnicki B
Choler P
Chown SL
Cifuentes EF
Čiliak M
Contador T
Convey P
Cooper EJ
Cremonese E
Curasi SR
Curtis R
Cutini M
Dahlberg CJ
Daskalova GN
de Pablo MA
Della Chiesa S
Dengler J
Deronde B
Descombes P
Di Cecco V
Di Musciano M
Dick J
Dimarco RD
Dolezal J
Dorrepaal E
Dušek J
Eisenhauer N
Eklundh L
Erickson TE
Erschbamer B
Eugster W
Ewers RM
Exton DA
Fanin N
Fazlioglu F
Feigenwinter I
Fenu G
Ferlian O
Fernández Calzado MR
Fernández-Pascual E
Finckh M
Higgens RF
Forte TGW
Freeman EC
Frei ER
Fuentes-Lillo E
García RA
García MB
Géron C
Gharun M
Ghosn D
Gigauri K
Gobin A
Goded I
Goeckede M
Gottschall F
Goulding K
Govaert S
Graae BJ
Greenwood S
Greiser C
Grelle A
Guénard B
Guglielmin M
Guillemot J
Haase P
Haider S
Halbritter AH
Hamid M
Hammerle A
Hampe A
Haugum SV
Hederová L
Heinesch B
Helfter C
Hepenstrick D
Herberich M
Herbst M
Hermanutz L
Hik DS
Hoffrén R
Homeier J
Hörtnagl L
Høye TT
Hrbacek F
Hylander K
Iwata H
Jackowicz-Korczynski MA
Jactel H
Järveoja J
Jastrzębowski S
Jentsch A
Jiménez JJ
Jónsdóttir IS
Jucker T
Jump AS
Juszczak R
Kanka R
Kašpar V
Kazakis G
Kelly J
Khuroo AA
Klemedtsson L
Klisz M
Kljun N
Knohl A
Kobler J
Kollár J
Kotowska MM
Kovács B
Kreyling J
Lamprecht A
Lang SI
Larson C
Larson K
Laska K
le Maire G
Leihy RI
Lens L
Liljebladh B
Lohila A
Lorite J
Loubet B
Lynn J
Macek M
Mackenzie R
Magliulo E
Maier R
Malfasi F
Máliš F
Man M
Manca G
Manco A
Manise T
Manolaki P
Marciniak F
Matula R
Mazzolari AC
Medinets S
Medinets V
Meeussen C
Merinero S
Mesquita RCG
Meusburger K
Meysman FJR
Michaletz ST
Milbau A
Moiseev D
Moiseev P
Mondoni A
Monfries R
Montagnani L
Moriana-Armendariz M
Morra di Cella U
Mörsdorf M
Mosedale JR
Muffler L
Muñoz-Rojas M
Myers JA
Myers-Smith IH
Nagy L
Nardino M
Naujokaitis-Lewis I
Newling E
Nicklas L
Niedrist G
Niessner A
Nilsson MB
Normand S
Nosetto MD
Nouvellon Y
Nuñez MA
Ogaya R
Ogée J
Okello J
Olejnik J
Olesen JE
Opedal ØH
Orsenigo S
Palaj A
Pampuch T
Panov AV
Pärtel M
Pastor A
Pauchard A
Pauli H
Pavelka M
Pearse WD
Peichl M
Pellissier L
Penczykowski RM
Penuelas J
Petit Bon M
Petraglia A
Phartyal SS
Phoenix GK
Pio C
Pitacco A
Pitteloud C
Plichta R
Porro F
Portillo-Estrada M
Poulenard J
Poyatos R
Prokushkin AS
Puchalka R
Pușcaș M
Radujković D
Randall K
Ratier Backes A
Remmele S
Remmers W
Renault D
Risch AC
Rixen C
Robinson SA
Robroek BJM
Rocha AV
Rossi C
Rossi G
Roupsard O
Rubtsov AV
Saccone P
Sagot C
Sallo Bravo J
Santos CC
Sarneel JM
Scharnweber T
Schmeddes J
Schmidt M
Scholten T
Schuchardt M
Schwartz N
Scott T
Seeber J
Segalin de Andrade AC
Seipel T
Semenchuk P
Senior RA
Serra-Diaz JM
Sewerniak P
Shekhar A
Sidenko NV
Siebicke L
Siegwart Collier L
Simpson E
Siqueira DP
Sitková Z
Six J
Smiljanic M
Smith SW
Smith-Tripp S
Somers B
Sørensen MV
Souza JJLL
Souza BI
Souza Dias A
Spasojevic MJ
Speed JDM
Spicher F
Stanisci A
Steinbauer K
Steinbrecher R
Steinwandter M
Stemkovski M
Stephan JG
Stiegler C
Stoll S
Svátek M
Svoboda M
Tagesson T
Tanentzap AJ
Tanneberger F
Theurillat JP
Thomas HJD
Thomas AD
Tielbörger K
Tomaselli M
Treier UA
Trouillier M
Turtureanu PD
Tutton R
Tyystjärvi VA
Ueyama M
Ujházy K
Ujházyová M
Uogintas D
Urban AV
Urban J
Urbaniak M
Ursu TM
Vaccari FP
Van de Vondel S
van den Brink L
Van Geel M
Vandvik V
Vangansbeke P
Varlagin A
Veen GF
Veenendaal E
Venn SE
Verbeeck H
Verbrugggen E
Verheijen FGA
Villar L
Vitale L
Vittoz P
Vives-Ingla M
von Oppen J
Walz J
Wang R
Wang Y
Way RG
Wedegärtner REM
Weigel R
Wild J
Wilkinson M
Wilmking M
Wingate L
Winkler M
Wipf S
Wohlfahrt G
Xenakis G
Yang Y
Yu Z
Yu K
Zellweger F
Zhang J
Zhang Z
Zhao P
Ziemblińska K
Zimmermann R
Zong S
Zyryanov VI
Nijs I
Lenoir J
Source :
Global change biology [Glob Chang Biol] 2022 May; Vol. 28 (9), pp. 3110-3144. Date of Electronic Publication: 2022 Feb 11.
Publication Year :
2022

Abstract

Research in global change ecology relies heavily on global climatic grids derived from estimates of air temperature in open areas at around 2 m above the ground. These climatic grids do not reflect conditions below vegetation canopies and near the ground surface, where critical ecosystem functions occur and most terrestrial species reside. Here, we provide global maps of soil temperature and bioclimatic variables at a 1-km <superscript>2</superscript> resolution for 0-5 and 5-15 cm soil depth. These maps were created by calculating the difference (i.e. offset) between in situ soil temperature measurements, based on time series from over 1200 1-km <superscript>2</superscript> pixels (summarized from 8519 unique temperature sensors) across all the world's major terrestrial biomes, and coarse-grained air temperature estimates from ERA5-Land (an atmospheric reanalysis by the European Centre for Medium-Range Weather Forecasts). We show that mean annual soil temperature differs markedly from the corresponding gridded air temperature, by up to 10°C (mean = 3.0 ± 2.1°C), with substantial variation across biomes and seasons. Over the year, soils in cold and/or dry biomes are substantially warmer (+3.6 ± 2.3°C) than gridded air temperature, whereas soils in warm and humid environments are on average slightly cooler (-0.7 ± 2.3°C). The observed substantial and biome-specific offsets emphasize that the projected impacts of climate and climate change on near-surface biodiversity and ecosystem functioning are inaccurately assessed when air rather than soil temperature is used, especially in cold environments. The global soil-related bioclimatic variables provided here are an important step forward for any application in ecology and related disciplines. Nevertheless, we highlight the need to fill remaining geographic gaps by collecting more in situ measurements of microclimate conditions to further enhance the spatiotemporal resolution of global soil temperature products for ecological applications.<br /> (© 2022 The Authors. Global Change Biology published by John Wiley & Sons Ltd.)

Details

Language :
English
ISSN :
1365-2486
Volume :
28
Issue :
9
Database :
MEDLINE
Journal :
Global change biology
Publication Type :
Academic Journal
Accession number :
34967074
Full Text :
https://doi.org/10.1111/gcb.16060