Global plant trait relationships extend to the climatic extremes of the tundra biome

It is unclear whether plant trait relationships found at the global scale extend to climatic extremes. Here the authors analyse six major aboveground traits to show that known plant trait relationships extend to the tundra biomes and exhibit the same two dimensions of variation detected at the globa...

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Autores principales: H. J. D. Thomas, A. D. Bjorkman, I. H. Myers-Smith, S. C. Elmendorf, J. Kattge, S. Diaz, M. Vellend, D. Blok, J. H. C. Cornelissen, B. C. Forbes, G. H. R. Henry, R. D. Hollister, S. Normand, J. S. Prevéy, C. Rixen, G. Schaepman-Strub, M. Wilmking, S. Wipf, W. K. Cornwell, P. S. A. Beck, D. Georges, S. J. Goetz, K. C. Guay, N. Rüger, N. A. Soudzilovskaia, M. J. Spasojevic, J. M. Alatalo, H. D. Alexander, A. Anadon-Rosell, S. Angers-Blondin, M. te Beest, L. T. Berner, R. G. Björk, A. Buchwal, A. Buras, M. Carbognani, K. S. Christie, L. S. Collier, E. J. Cooper, B. Elberling, A. Eskelinen, E. R. Frei, O. Grau, P. Grogan, M. Hallinger, M. M. P. D. Heijmans, L. Hermanutz, J. M. G. Hudson, J. F. Johnstone, K. Hülber, M. Iturrate-Garcia, C. M. Iversen, F. Jaroszynska, E. Kaarlejarvi, A. Kulonen, L. J. Lamarque, T. C. Lantz, E. Lévesque, C. J. Little, A. Michelsen, A. Milbau, J. Nabe-Nielsen, S. S. Nielsen, J. M. Ninot, S. F. Oberbauer, J. Olofsson, V. G. Onipchenko, A. Petraglia, S. B. Rumpf, R. Shetti, J. D. M. Speed, K. N. Suding, K. D. Tape, M. Tomaselli, A. J. Trant, U. A. Treier, M. Tremblay, S. E. Venn, T. Vowles, S. Weijers, P. A. Wookey, T. J. Zamin, M. Bahn, B. Blonder, P. M. van Bodegom, B. Bond-Lamberty, G. Campetella, B. E. L. Cerabolini, F. S. Chapin, J. M. Craine, M. Dainese, W. A. Green, S. Jansen, M. Kleyer, P. Manning, Ü. Niinemets, Y. Onoda, W. A. Ozinga, J. Peñuelas, P. Poschlod, P. B. Reich, B. Sandel, B. S. Schamp, S. N. Sheremetiev, F. T. de Vries
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spelling oai:doaj.org-article:97ee394ccb6e49a593aa5a6509715f842021-12-02T16:56:33ZGlobal plant trait relationships extend to the climatic extremes of the tundra biome10.1038/s41467-020-15014-42041-1723https://doaj.org/article/97ee394ccb6e49a593aa5a6509715f842020-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-15014-4https://doaj.org/toc/2041-1723It is unclear whether plant trait relationships found at the global scale extend to climatic extremes. Here the authors analyse six major aboveground traits to show that known plant trait relationships extend to the tundra biomes and exhibit the same two dimensions of variation detected at the global scale.H. J. D. ThomasA. D. BjorkmanI. H. Myers-SmithS. C. ElmendorfJ. KattgeS. DiazM. VellendD. BlokJ. H. C. CornelissenB. C. ForbesG. H. R. HenryR. D. HollisterS. NormandJ. S. PrevéyC. RixenG. Schaepman-StrubM. WilmkingS. WipfW. K. CornwellP. S. A. BeckD. GeorgesS. J. GoetzK. C. GuayN. RügerN. A. SoudzilovskaiaM. J. SpasojevicJ. M. AlataloH. D. AlexanderA. Anadon-RosellS. Angers-BlondinM. te BeestL. T. BernerR. G. BjörkA. BuchwalA. BurasM. CarbognaniK. S. ChristieL. S. CollierE. J. CooperB. ElberlingA. EskelinenE. R. FreiO. GrauP. GroganM. HallingerM. M. P. D. HeijmansL. HermanutzJ. M. G. HudsonJ. F. JohnstoneK. HülberM. Iturrate-GarciaC. M. IversenF. JaroszynskaE. KaarlejarviA. KulonenL. J. LamarqueT. C. LantzE. LévesqueC. J. LittleA. MichelsenA. MilbauJ. Nabe-NielsenS. S. NielsenJ. M. NinotS. F. OberbauerJ. OlofssonV. G. OnipchenkoA. PetragliaS. B. RumpfR. ShettiJ. D. M. SpeedK. N. SudingK. D. TapeM. TomaselliA. J. TrantU. A. TreierM. TremblayS. E. VennT. VowlesS. WeijersP. A. WookeyT. J. ZaminM. BahnB. BlonderP. M. van BodegomB. Bond-LambertyG. CampetellaB. E. L. CeraboliniF. S. ChapinJ. M. CraineM. DaineseW. A. GreenS. JansenM. KleyerP. ManningÜ. NiinemetsY. OnodaW. A. OzingaJ. PeñuelasP. PoschlodP. B. ReichB. SandelB. S. SchampS. N. SheremetievF. T. de VriesNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
H. J. D. Thomas
A. D. Bjorkman
I. H. Myers-Smith
S. C. Elmendorf
J. Kattge
S. Diaz
M. Vellend
D. Blok
J. H. C. Cornelissen
B. C. Forbes
G. H. R. Henry
R. D. Hollister
S. Normand
J. S. Prevéy
C. Rixen
G. Schaepman-Strub
M. Wilmking
S. Wipf
W. K. Cornwell
P. S. A. Beck
D. Georges
S. J. Goetz
K. C. Guay
N. Rüger
N. A. Soudzilovskaia
M. J. Spasojevic
J. M. Alatalo
H. D. Alexander
A. Anadon-Rosell
S. Angers-Blondin
M. te Beest
L. T. Berner
R. G. Björk
A. Buchwal
A. Buras
M. Carbognani
K. S. Christie
L. S. Collier
E. J. Cooper
B. Elberling
A. Eskelinen
E. R. Frei
O. Grau
P. Grogan
M. Hallinger
M. M. P. D. Heijmans
L. Hermanutz
J. M. G. Hudson
J. F. Johnstone
K. Hülber
M. Iturrate-Garcia
C. M. Iversen
F. Jaroszynska
E. Kaarlejarvi
A. Kulonen
L. J. Lamarque
T. C. Lantz
E. Lévesque
C. J. Little
A. Michelsen
A. Milbau
J. Nabe-Nielsen
S. S. Nielsen
J. M. Ninot
S. F. Oberbauer
J. Olofsson
V. G. Onipchenko
A. Petraglia
S. B. Rumpf
R. Shetti
J. D. M. Speed
K. N. Suding
K. D. Tape
M. Tomaselli
A. J. Trant
U. A. Treier
M. Tremblay
S. E. Venn
T. Vowles
S. Weijers
P. A. Wookey
T. J. Zamin
M. Bahn
B. Blonder
P. M. van Bodegom
B. Bond-Lamberty
G. Campetella
B. E. L. Cerabolini
F. S. Chapin
J. M. Craine
M. Dainese
W. A. Green
S. Jansen
M. Kleyer
P. Manning
Ü. Niinemets
Y. Onoda
W. A. Ozinga
J. Peñuelas
P. Poschlod
P. B. Reich
B. Sandel
B. S. Schamp
S. N. Sheremetiev
F. T. de Vries
Global plant trait relationships extend to the climatic extremes of the tundra biome
description It is unclear whether plant trait relationships found at the global scale extend to climatic extremes. Here the authors analyse six major aboveground traits to show that known plant trait relationships extend to the tundra biomes and exhibit the same two dimensions of variation detected at the global scale.
format article
author H. J. D. Thomas
A. D. Bjorkman
I. H. Myers-Smith
S. C. Elmendorf
J. Kattge
S. Diaz
M. Vellend
D. Blok
J. H. C. Cornelissen
B. C. Forbes
G. H. R. Henry
R. D. Hollister
S. Normand
J. S. Prevéy
C. Rixen
G. Schaepman-Strub
M. Wilmking
S. Wipf
W. K. Cornwell
P. S. A. Beck
D. Georges
S. J. Goetz
K. C. Guay
N. Rüger
N. A. Soudzilovskaia
M. J. Spasojevic
J. M. Alatalo
H. D. Alexander
A. Anadon-Rosell
S. Angers-Blondin
M. te Beest
L. T. Berner
R. G. Björk
A. Buchwal
A. Buras
M. Carbognani
K. S. Christie
L. S. Collier
E. J. Cooper
B. Elberling
A. Eskelinen
E. R. Frei
O. Grau
P. Grogan
M. Hallinger
M. M. P. D. Heijmans
L. Hermanutz
J. M. G. Hudson
J. F. Johnstone
K. Hülber
M. Iturrate-Garcia
C. M. Iversen
F. Jaroszynska
E. Kaarlejarvi
A. Kulonen
L. J. Lamarque
T. C. Lantz
E. Lévesque
C. J. Little
A. Michelsen
A. Milbau
J. Nabe-Nielsen
S. S. Nielsen
J. M. Ninot
S. F. Oberbauer
J. Olofsson
V. G. Onipchenko
A. Petraglia
S. B. Rumpf
R. Shetti
J. D. M. Speed
K. N. Suding
K. D. Tape
M. Tomaselli
A. J. Trant
U. A. Treier
M. Tremblay
S. E. Venn
T. Vowles
S. Weijers
P. A. Wookey
T. J. Zamin
M. Bahn
B. Blonder
P. M. van Bodegom
B. Bond-Lamberty
G. Campetella
B. E. L. Cerabolini
F. S. Chapin
J. M. Craine
M. Dainese
W. A. Green
S. Jansen
M. Kleyer
P. Manning
Ü. Niinemets
Y. Onoda
W. A. Ozinga
J. Peñuelas
P. Poschlod
P. B. Reich
B. Sandel
B. S. Schamp
S. N. Sheremetiev
F. T. de Vries
author_facet H. J. D. Thomas
A. D. Bjorkman
I. H. Myers-Smith
S. C. Elmendorf
J. Kattge
S. Diaz
M. Vellend
D. Blok
J. H. C. Cornelissen
B. C. Forbes
G. H. R. Henry
R. D. Hollister
S. Normand
J. S. Prevéy
C. Rixen
G. Schaepman-Strub
M. Wilmking
S. Wipf
W. K. Cornwell
P. S. A. Beck
D. Georges
S. J. Goetz
K. C. Guay
N. Rüger
N. A. Soudzilovskaia
M. J. Spasojevic
J. M. Alatalo
H. D. Alexander
A. Anadon-Rosell
S. Angers-Blondin
M. te Beest
L. T. Berner
R. G. Björk
A. Buchwal
A. Buras
M. Carbognani
K. S. Christie
L. S. Collier
E. J. Cooper
B. Elberling
A. Eskelinen
E. R. Frei
O. Grau
P. Grogan
M. Hallinger
M. M. P. D. Heijmans
L. Hermanutz
J. M. G. Hudson
J. F. Johnstone
K. Hülber
M. Iturrate-Garcia
C. M. Iversen
F. Jaroszynska
E. Kaarlejarvi
A. Kulonen
L. J. Lamarque
T. C. Lantz
E. Lévesque
C. J. Little
A. Michelsen
A. Milbau
J. Nabe-Nielsen
S. S. Nielsen
J. M. Ninot
S. F. Oberbauer
J. Olofsson
V. G. Onipchenko
A. Petraglia
S. B. Rumpf
R. Shetti
J. D. M. Speed
K. N. Suding
K. D. Tape
M. Tomaselli
A. J. Trant
U. A. Treier
M. Tremblay
S. E. Venn
T. Vowles
S. Weijers
P. A. Wookey
T. J. Zamin
M. Bahn
B. Blonder
P. M. van Bodegom
B. Bond-Lamberty
G. Campetella
B. E. L. Cerabolini
F. S. Chapin
J. M. Craine
M. Dainese
W. A. Green
S. Jansen
M. Kleyer
P. Manning
Ü. Niinemets
Y. Onoda
W. A. Ozinga
J. Peñuelas
P. Poschlod
P. B. Reich
B. Sandel
B. S. Schamp
S. N. Sheremetiev
F. T. de Vries
author_sort H. J. D. Thomas
title Global plant trait relationships extend to the climatic extremes of the tundra biome
title_short Global plant trait relationships extend to the climatic extremes of the tundra biome
title_full Global plant trait relationships extend to the climatic extremes of the tundra biome
title_fullStr Global plant trait relationships extend to the climatic extremes of the tundra biome
title_full_unstemmed Global plant trait relationships extend to the climatic extremes of the tundra biome
title_sort global plant trait relationships extend to the climatic extremes of the tundra biome
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/97ee394ccb6e49a593aa5a6509715f84
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