Heterogeneous trait responses of Páramo plant species and community to experimental warming.
Name
tovar-et-al-heterogeneous-trait-responses-of-p%C3%A1ramo-plant-species-and-community-to-experimental-warming.pdf
Description
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941.36 KB
Format
Adobe PDF
Checksum (CRC64NVME)
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Resource type
Journal article
Creator (person)
Tovar, Carolina
Bellot, Sidonie
Llerena-Zambrano, Melissa
Leitch, Ilia
Carpio-Cordero, Priscila
Granda-Albuja, María Genoveva
Rondal, Jonathan Dario
Duchicela, Sisimac
Bernardi, Antonella Luciana
Salazar, Edison
Mian, Sahr
Tejera, Eduardo
Echevarría, Gabriela
Cuesta, Francisco
Date published
June 18, 2025
Abstract
Understanding the impact of climate change on the functional trait composition (and hence ecosystem functioning) of tropical alpine regions is critical for predicting biodiversity responses. We tested the effects of a decade of warming on the morphological, chemical and genomic traits of Páramo species using open-top chambers (OTCs). We conducted vegetation surveys and collected samples from individuals inside and outside the OTC plots to estimate differences between treatments (warming versus control). Vegetation cover decreased over time in both treatments suggesting a potential decline in soil moisture in our study area. Warming led to a reorganization of the trait space and trait network structure. Species showed a wide range of responses to warming, with significant changes across different trait combinations. Nevertheless, we did not find significant differences in trait values or the direction of change between species whose percentage vegetation cover increased in OTC (or decreased less) over time, compared with control. Community-weighted mean values of plant height, leaf area, leaf dry matter content, genome size, leaf C and P, significantly increased over time only in OTC plots (i.e. traits associated with carbon storage and decomposition). While warming and reduced soil moisture lead to heterogeneous species responses without a clear winning trait strategy, changes at the community level may have important implications for Páramo ecosystem functioning.
Project(s)
Priority 2: Trait Diversity and Function
Priority 1: Ecosystem Stewardship
Funder
| Funder name | Awards |
Bentham-Moxon Trust, United Kingdom | RBG Kew internal Science Pilot Study fund 2021, by the Bentham-Moxon Trust (BMT46-2022) |
Universidad de las Américas,Ecuador | DIV.FCC.23.01 |
Universidad San Francisco de Quito, Ecuador | |
Journal title
Proceedings of the Royal Society B: Biological Sciences
Volume
292
Issue
2049
Article number
20250245
Publisher
The Royal Society
Place of publication
London, UK
ISSN
0962-8452
eISSN
1471-2954
Date accepted
May 19, 2025
Official URL
Rights statement
In Copyright
Additional information
IF = 3.5 (2024)