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Plant elemental diversity increases ecosystem productivity and temporal stability
Yan, Pu (Chinese Academy of Sciences. Institute of Geographic Sciences and Natural Resources Research)
He, Nianpeng (Chinese Academy of Sciences. Earth Critical Zone and Flux Research Station of Xing’an Mountains)
Yu, Kailiang (Chinese Academy of Sciences. Institute of Geographic Sciences and Natural Resources Research)
Sack, Lawren (University of California Los Angeles. Department of Ecology and Evolutionary Biology)
Jiang, Lin (Georgia Institute of Technology)
Fernández-Martínez, Marcos (Centre de Recerca Ecològica i d'Aplicacions Forestals)

Date: 2026
Abstract: The elemental composition of organisms (i. e. , the elementome) directly constrains metabolic machinery and aligns with functional traits, linking organismal performance to nutrient cycling and energy flow at the ecosystem level. In theory, elemental diversity captures the community functional heterogeneity by quantifying variation in the multidimensional elementomes of co-occurring species within a community. However, empirical evidence connecting organismal elemental diversity to ecosystem functioning and identifying its environmental controls remains scarce. We compiled an unprecedented dataset on plant elemental concentrations, encompassing more than 2500 species and 14 analyzed elements (including macronutrients, micronutrients, and trace elements) sampled from leaves, stems, trunks, and fine roots across 8 biomes and 72 sites, covering multiple ecosystem types including forests and grasslands. Using these data, we investigated the spatial patterns and drivers of plant elemental diversity and evaluated its relationship with ecosystem productivity and stability. Our results indicate that plant elemental diversity decreased with latitude, with interannual variability in temperature and mean annual precipitation as the primary controls on its spatial distribution. Moreover, ecosystems with higher plant elemental diversity exhibit greater efficiency in the use of carbon, water, and light, thereby translating into higher productivity and greater temporal stability across and within forests and grasslands, and these effects persisted even after accounting for climate and soil factors. Taken together, our results support the influence of plant elemental diversity as a distinct dimension of biodiversity with functional implications. Complementing trait- and taxonomy-based measures, plant elemental diversity improves predictions of ecosystem productivity and temporal stability under ongoing climatic variability, and can substantially advance research on biodiversity and ecosystem functioning.
Grants: "la Caixa" Foundation 100010434
Agencia Estatal de Investigación RYC2021-031511-I
European Commission 101076740
Rights: Aquest material està protegit per drets d'autor i/o drets afins. Podeu utilitzar aquest material en funció del que permet la legislació de drets d'autor i drets afins d'aplicació al vostre cas. Per a d'altres usos heu d'obtenir permís del(s) titular(s) de drets.
Language: Anglès
Document: Article ; recerca ; Versió acceptada per publicar
Subject: Ecosystem functioning ; Elemental concentration ; Functional diversity ; Functional trait ; Productivity ; Temporal stability
Published in: Ecological monographs, Vol. 96, Num. 1 (February 2026) , art. e70061, ISSN 1557-7015

DOI: 10.1002/ecm.70061


Available from: 2027-02-28
Postprint
53 p, 1.2 MB

Available from: 2027-02-28
Supplementary Material. Postprint
49 p, 3.5 MB

The record appears in these collections:
Research literature > UAB research groups literature > Research Centres and Groups (research output) > Experimental sciences > CREAF (Centre de Recerca Ecològica i d'Aplicacions Forestals)
Articles > Research articles
Articles > Published articles

 Record created 2026-07-03, last modified 2026-07-04



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