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Globally limited individual and combined effects of multiple global change factors on allometric biomass partitioning

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Type de ressource
Article de revue
Auteurs/contributeurs
  • Peng, Yan (Auteur)
  • Fornara, Dario A. (Auteur)
  • Yue, Kai (Auteur)
  • Peng, Xin (Auteur)
  • Peng, Changhui (Auteur)
  • Wu, Qiqian (Auteur)
  • Ni, Xiangyin (Auteur)
  • Liao, Shu (Auteur)
  • Yang, Yusheng (Auteur)
  • Wu, Fuzhong (Auteur)
  • Peñuelas, Josep (Auteur)
  • Hurlbert, Allen (Éditeur)
Titre
Globally limited individual and combined effects of multiple global change factors on allometric biomass partitioning
Résumé
Abstract Aim Plant biomass allocation reflects the distribution of photosynthates among different organs in response to changing environmental conditions. Global change influences plant growth across terrestrial ecosystems, but impacts of individual and combined multiple global change factors (GCFs) on plant biomass allocation at the global scale are unclear. Location Global. Time period Contemporary. Major taxa studied Plants in terrestrial ecosystems. Methods We conducted a meta‐analysis of data comprising 4,180 pairwise observations to assess individual and combined effects of nitrogen addition (N), warming (W), elevated CO 2 (C), irrigation (I), and drought (D) on plant biomass allocation based on the ‘ratio‐based optimal partitioning’ and ‘isometric allocation’ hypotheses. Results We found that (a) ratio‐based plant biomass fractions of different organs were only minimally affected by individual and combined effects of the studied GCFs; (b) combined effects of two‐factor pairs of GCFs on plant biomass allocation were commonly additive, rather than synergistic or antagonistic; (c) moderator variables influenced, but seldom changed the direction of individual and combined effects of GCFs on plant biomass allocation; and (d) neither individual nor combined effects of the studied GCFs altered allometric relationships among different organs, indicating that patterns of plant biomass allocation under the environmental stress conditions exerted by the multiple GCFs were better explained by the isometric allocation rather than the ratio‐based optimal partitioning hypothesis. Main conclusions Our results show consistent patterns of allometric plant biomass partitioning under effects of multiple GCFs and provide evidence of an isometric plant biomass allocation trajectory in response to global change perturbations. These findings improve our understanding and prediction of terrestrial vegetation responses to future global change scenarios.
Publication
Global Ecology and Biogeography
Volume
31
Numéro
3
Pages
454-469
Date
03/2022
Abrév. de revue
Global Ecol Biogeogr
Langue
en
DOI
10.1111/geb.13438
ISSN
1466-822X, 1466-8238
URL
https://onlinelibrary.wiley.com/doi/10.1111/geb.13438
Consulté le
12/11/2024 15:47
Catalogue de bibl.
DOI.org (Crossref)
Référence
Peng, Y., Fornara, D. A., Yue, K., Peng, X., Peng, C., Wu, Q., Ni, X., Liao, S., Yang, Y., Wu, F., & Peñuelas, J. (2022). Globally limited individual and combined effects of multiple global change factors on allometric biomass partitioning. Global Ecology and Biogeography, 31(3), 454–469. https://doi.org/10.1111/geb.13438
Auteur·e·s
  • Peng, Changhui
Lien vers cette notice
https://bibliographies.uqam.ca/escer/bibliographie/LLP8HAWV
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