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  5. Plant traits and vegetation data from climate warming experiments along an 1100 m elevation gradient in Gongga Mountains, China

Plant traits and vegetation data from climate warming experiments along an 1100 m elevation gradient in Gongga Mountains, China

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Resource type
Journal article
Creator (person)
Vandvik, Vigdis
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Halbritter, Aud H.
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Yang, Yan
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He, Hai
Zhang, Li
Brummer, Alexander B.
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Klanderud, Kari
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Maitner, Brian S.
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Michaletz, Sean T.
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Sun, Xiangyang
Telford, Richard J.
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Wang, Genxu
Althuizen, Inge H. J.
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Henn, Jonathan J.
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Garcia, William Fernando Erazo
Gya, Ragnhild
Jaroszynska, Francesca
Joyce, Blake L.
Lehman, Rebecca
Moerland, Michelangelo Sergio
Nesheim-Hauge, Elisabeth
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Nordås, Linda Hovde
Peng, Ahui
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Ponsac, Claire
Seltzer, Lorah
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Steyn, Christien
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Sullivan, Megan K.
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Tjendra, Jesslyn
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Xiao, Yao
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Zhao, Xiaoxiang
Enquist, Brian J.
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Date published
June 19, 2020
Abstract
Functional trait data enhance climate change research by linking climate change, biodiversity response, and ecosystem functioning, and by enabling comparison between systems sharing few taxa. Across four sites along a 3000–4130 m a.s.l. gradient spanning 5.3 °C in growing season temperature in Mt. Gongga, Sichuan, China, we collected plant functional trait and vegetation data from control plots, open top chambers (OTCs), and reciprocally transplanted vegetation turfs. Over five years, we recorded vascular plant composition in 140 experimental treatment and control plots. We collected trait data associated with plant resource use, growth, and life history strategies (leaf area, leaf thickness, specific leaf area, leaf dry matter content, leaf C, N and P content and C and N isotopes) from local populations and from experimental treatments. The database consists of 6,671 plant records and 36,743 trait measurements (increasing the trait data coverage of the regional flora by 500%) covering 11 traits and 193 plant taxa (ca. 50% of which have no previous published trait data) across 37 families.
Journal title
Scientific Data
Volume
7
Issue
1
Publisher
Springer Science and Business Media LLC
eISSN
2052-4463
Official URL
https://www.nature.com/articles/s41597-020-0529-0#article-info
Rights statement
In Copyright
Licence
https://creativecommons.org/licenses/by/4.0/
DOI
10.1038/s41597-020-0529-0
Keywords
Community ecology
Climate-change ecology
Natural variation in plants
Managed by the British Library and supported by the AHRC

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