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Climate, soil and plant functional types as drivers of global fine-root trait variation
- Source :
- Journal of Ecology, Journal of Ecology, Wiley, 2017, 105 (5), pp.1182-1196. ⟨10.1111/1365-2745.12769⟩, Journal of Ecology, 2017, 105 (5), pp.1182-1196. ⟨10.1111/1365-2745.12769⟩, Freschet, G T, Valverde-Barrantes, O J, Tucker, C M, Craine, J M, McCormack, M L, Violle, C, Fort, F, Blackwood, C B, Urban-Mead, K R, Iversen, C M, Bonis, A, Comas, L H, Cornelissen, J H C, Dong, M, Guo, D, Hobbie, S E, Holdaway, R J, Kembel, S W, Makita, N, Onipchenko, V G, Picon-Cochard, C, Reich, P B, de la Riva, E G, Smith, S W, Soudzilovskaia, N A, Tjoelker, M G, Wardle, D A & Roumet, C 2017, ' Climate, soil and plant functional types as drivers of global fine-root trait variation ', Journal of Ecology, vol. 105, no. 5, pp. 1182-1196 . https://doi.org/10.1111/1365-2745.12769, Journal of Ecology 5 (105), 1182-1196. (2017), Journal of Ecology, 105(5), 1182-1196. Wiley-Blackwell, Journal of Ecology, 105(5), 1182–1196
- Publication Year :
- 2017
- Publisher :
- HAL CCSD, 2017.
-
Abstract
- 1.Ecosystem functioning relies heavily on belowground processes, which are largely regulated by plant fine-roots and their functional traits. However, our knowledge of fine-root trait distribution relies to date on local- and regional-scale studies with limited numbers of species, growth forms and environmental variation. 2.We compiled a worldwide fine-root trait dataset, featuring 1115 species from contrasting climatic areas, phylogeny and growth forms to test a series of hypotheses pertaining to the influence of plant functional types, soil and climate variables, and the degree of manipulation of plant growing conditions on species fine-root trait variation. Most particularly, we tested the competing hypotheses that fine-root traits typical of faster return on investment would be most strongly associated with conditions of limiting versus favourable soil resource availability. We accounted for both data source and species phylogenetic relatedness. 3.We demonstrate that (1) Climate conditions promoting soil fertility relate negatively to fine-root traits favouring fast soil resource acquisition, with a particularly strong positive effect of temperature on fine-root diameter and negative effect on specific root length (SRL), and a negative effect of rainfall on root nitrogen concentration; (2) Soil bulk density strongly influences species fine-root morphology, by favouring thicker, denser fine-roots; (3) Fine-roots from herbaceous species are on average finer and have higher SRL than those of woody species, and N2-fixing capacity positively relates to root nitrogen; (4) Plants growing in pots have higher SRL than those grown in the field. 4.Synthesis. This study reveals both the large variation in fine-root traits encountered globally and the relevance of several key plant functional types and soil and climate variables for explaining a substantial part of this variation. Climate, particularly temperature, and plant functional types were the two strongest predictors of fine-root trait variation. High trait variation occurred at local scales, suggesting that wide-ranging belowground resource economics strategies are viable within most climatic areas and soil conditions. This is the peer reviewed version of an article, which has been published in final form at [http://dx.doi.org/10.1111/1365-2745.12769]. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Self-Archiving.
- Subjects :
- 0106 biological sciences
Resource (biology)
plant growth form
Biodiversité et Ecologie
Climate
Distribution (economics)
fine roots
Plant Science
Biology
phylogeny
010603 evolutionary biology
01 natural sciences
Biodiversity and Ecology
functional biogeography
Phylogenetics
Resource Acquisition Is Initialization
functional traits
climate
N2-fixation
ComputingMilieux_MISCELLANEOUS
Ecology, Evolution, Behavior and Systematics
Phylogeny
database
2. Zero hunger
plant resource economics
Ecology
business.industry
root function
soil properties
15. Life on land
Herbaceous plant
Bulk density
Agronomy
N-fixation
Trait
Soil fertility
[SDE.BE]Environmental Sciences/Biodiversity and Ecology
business
Functional traits
010606 plant biology & botany
Subjects
Details
- Language :
- English
- ISSN :
- 13652745 and 00220477
- Database :
- OpenAIRE
- Journal :
- Journal of Ecology, Journal of Ecology, Wiley, 2017, 105 (5), pp.1182-1196. ⟨10.1111/1365-2745.12769⟩, Journal of Ecology, 2017, 105 (5), pp.1182-1196. ⟨10.1111/1365-2745.12769⟩, Freschet, G T, Valverde-Barrantes, O J, Tucker, C M, Craine, J M, McCormack, M L, Violle, C, Fort, F, Blackwood, C B, Urban-Mead, K R, Iversen, C M, Bonis, A, Comas, L H, Cornelissen, J H C, Dong, M, Guo, D, Hobbie, S E, Holdaway, R J, Kembel, S W, Makita, N, Onipchenko, V G, Picon-Cochard, C, Reich, P B, de la Riva, E G, Smith, S W, Soudzilovskaia, N A, Tjoelker, M G, Wardle, D A & Roumet, C 2017, ' Climate, soil and plant functional types as drivers of global fine-root trait variation ', Journal of Ecology, vol. 105, no. 5, pp. 1182-1196 . https://doi.org/10.1111/1365-2745.12769, Journal of Ecology 5 (105), 1182-1196. (2017), Journal of Ecology, 105(5), 1182-1196. Wiley-Blackwell, Journal of Ecology, 105(5), 1182–1196
- Accession number :
- edsair.doi.dedup.....201c58ced6da1d521ac87c52d467091b
- Full Text :
- https://doi.org/10.1111/1365-2745.12769⟩