Experimental warming differentially affects vegetative and reproductive phenology of tundra plants

It is unclear whether climate driven phenological shifts of tundra plants are consistent across the plant growing season. Here the authors analyse data from a network of field warming experiments in Arctic and alpine tundra, finding that warming differentially affects the timing and duration of repr...

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Autores principales: Courtney G. Collins, Sarah C. Elmendorf, Robert D. Hollister, Greg H. R. Henry, Karin Clark, Anne D. Bjorkman, Isla H. Myers-Smith, Janet S. Prevéy, Isabel W. Ashton, Jakob J. Assmann, Juha M. Alatalo, Michele Carbognani, Chelsea Chisholm, Elisabeth J. Cooper, Chiara Forrester, Ingibjörg Svala Jónsdóttir, Kari Klanderud, Christopher W. Kopp, Carolyn Livensperger, Marguerite Mauritz, Jeremy L. May, Ulf Molau, Steven F. Oberbauer, Emily Ogburn, Zoe A. Panchen, Alessandro Petraglia, Eric Post, Christian Rixen, Heidi Rodenhizer, Edward A. G. Schuur, Philipp Semenchuk, Jane G. Smith, Heidi Steltzer, Ørjan Totland, Marilyn D. Walker, Jeffrey M. Welker, Katharine N. Suding
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/cbc733aabf2d4dc7bac39446c2a95ec8
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spelling oai:doaj.org-article:cbc733aabf2d4dc7bac39446c2a95ec82021-12-02T17:52:19ZExperimental warming differentially affects vegetative and reproductive phenology of tundra plants10.1038/s41467-021-23841-22041-1723https://doaj.org/article/cbc733aabf2d4dc7bac39446c2a95ec82021-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-23841-2https://doaj.org/toc/2041-1723It is unclear whether climate driven phenological shifts of tundra plants are consistent across the plant growing season. Here the authors analyse data from a network of field warming experiments in Arctic and alpine tundra, finding that warming differentially affects the timing and duration of reproductive and vegetative phenology.Courtney G. CollinsSarah C. ElmendorfRobert D. HollisterGreg H. R. HenryKarin ClarkAnne D. BjorkmanIsla H. Myers-SmithJanet S. PrevéyIsabel W. AshtonJakob J. AssmannJuha M. AlataloMichele CarbognaniChelsea ChisholmElisabeth J. CooperChiara ForresterIngibjörg Svala JónsdóttirKari KlanderudChristopher W. KoppCarolyn LivenspergerMarguerite MauritzJeremy L. MayUlf MolauSteven F. OberbauerEmily OgburnZoe A. PanchenAlessandro PetragliaEric PostChristian RixenHeidi RodenhizerEdward A. G. SchuurPhilipp SemenchukJane G. SmithHeidi SteltzerØrjan TotlandMarilyn D. WalkerJeffrey M. WelkerKatharine N. SudingNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-12 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Courtney G. Collins
Sarah C. Elmendorf
Robert D. Hollister
Greg H. R. Henry
Karin Clark
Anne D. Bjorkman
Isla H. Myers-Smith
Janet S. Prevéy
Isabel W. Ashton
Jakob J. Assmann
Juha M. Alatalo
Michele Carbognani
Chelsea Chisholm
Elisabeth J. Cooper
Chiara Forrester
Ingibjörg Svala Jónsdóttir
Kari Klanderud
Christopher W. Kopp
Carolyn Livensperger
Marguerite Mauritz
Jeremy L. May
Ulf Molau
Steven F. Oberbauer
Emily Ogburn
Zoe A. Panchen
Alessandro Petraglia
Eric Post
Christian Rixen
Heidi Rodenhizer
Edward A. G. Schuur
Philipp Semenchuk
Jane G. Smith
Heidi Steltzer
Ørjan Totland
Marilyn D. Walker
Jeffrey M. Welker
Katharine N. Suding
Experimental warming differentially affects vegetative and reproductive phenology of tundra plants
description It is unclear whether climate driven phenological shifts of tundra plants are consistent across the plant growing season. Here the authors analyse data from a network of field warming experiments in Arctic and alpine tundra, finding that warming differentially affects the timing and duration of reproductive and vegetative phenology.
format article
author Courtney G. Collins
Sarah C. Elmendorf
Robert D. Hollister
Greg H. R. Henry
Karin Clark
Anne D. Bjorkman
Isla H. Myers-Smith
Janet S. Prevéy
Isabel W. Ashton
Jakob J. Assmann
Juha M. Alatalo
Michele Carbognani
Chelsea Chisholm
Elisabeth J. Cooper
Chiara Forrester
Ingibjörg Svala Jónsdóttir
Kari Klanderud
Christopher W. Kopp
Carolyn Livensperger
Marguerite Mauritz
Jeremy L. May
Ulf Molau
Steven F. Oberbauer
Emily Ogburn
Zoe A. Panchen
Alessandro Petraglia
Eric Post
Christian Rixen
Heidi Rodenhizer
Edward A. G. Schuur
Philipp Semenchuk
Jane G. Smith
Heidi Steltzer
Ørjan Totland
Marilyn D. Walker
Jeffrey M. Welker
Katharine N. Suding
author_facet Courtney G. Collins
Sarah C. Elmendorf
Robert D. Hollister
Greg H. R. Henry
Karin Clark
Anne D. Bjorkman
Isla H. Myers-Smith
Janet S. Prevéy
Isabel W. Ashton
Jakob J. Assmann
Juha M. Alatalo
Michele Carbognani
Chelsea Chisholm
Elisabeth J. Cooper
Chiara Forrester
Ingibjörg Svala Jónsdóttir
Kari Klanderud
Christopher W. Kopp
Carolyn Livensperger
Marguerite Mauritz
Jeremy L. May
Ulf Molau
Steven F. Oberbauer
Emily Ogburn
Zoe A. Panchen
Alessandro Petraglia
Eric Post
Christian Rixen
Heidi Rodenhizer
Edward A. G. Schuur
Philipp Semenchuk
Jane G. Smith
Heidi Steltzer
Ørjan Totland
Marilyn D. Walker
Jeffrey M. Welker
Katharine N. Suding
author_sort Courtney G. Collins
title Experimental warming differentially affects vegetative and reproductive phenology of tundra plants
title_short Experimental warming differentially affects vegetative and reproductive phenology of tundra plants
title_full Experimental warming differentially affects vegetative and reproductive phenology of tundra plants
title_fullStr Experimental warming differentially affects vegetative and reproductive phenology of tundra plants
title_full_unstemmed Experimental warming differentially affects vegetative and reproductive phenology of tundra plants
title_sort experimental warming differentially affects vegetative and reproductive phenology of tundra plants
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/cbc733aabf2d4dc7bac39446c2a95ec8
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