Artículo
Plant trait and vegetation data along a 1314 m elevation gradient with fire history in Puna grasslands, Perú
Halbritter, Aud H.; Vandvik, Vigdis; Cotner, Sehoya H.; Farfan Rios, William; Maitner, Brian S.; Michaletz, Sean T.; Oliveras Menor, Imma; Telford, Richard J.; Ccahuana, Adam; Cruz, Rudi; Sallo Bravo, Jhonatan; Santos Andrade, Paul Efren; Vilca Bustamante, Lucely L.; Castorena, Matiss; Chacón Labella, Julia; Christiansen, Casper Tai; Duran, Sandra M.; Egelkraut, Dagmar D.; Gya, Ragnhild; Haugum, Siri Vatsø; Seltzer, Lorah; Silman, Miles R.; Strydom, Tanya; Spiegel, Marcus P.; Barros, Ana Agustina
; Birkeli, Kristine; Boakye, Mickey; Chiappero, María Fernanda; Sánchez Tapia, Andrea; Smith, Alyssa; Urquiaga Flores, Erickson; von Oppen, Jonathan; Enquist, Brian J.
; Birkeli, Kristine; Boakye, Mickey; Chiappero, María Fernanda; Sánchez Tapia, Andrea; Smith, Alyssa; Urquiaga Flores, Erickson; von Oppen, Jonathan; Enquist, Brian J.
Fecha de publicación:
02/2024
Editorial:
Nature Research
Revista:
Scientific Data
ISSN:
2052-4463
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Alpine grassland vegetation supports globally important biodiversity and ecosystems that are increasingly threatened by climate warming and other environmental changes. Trait-based approaches can support understanding of vegetation responses to global change drivers and consequences for ecosystem functioning. In six sites along a 1314 m elevational gradient in Puna grasslands in the Peruvian Andes, we collected datasets on vascular plant composition, plant functional traits, biomass, ecosystem fluxes, and climate data over three years. The data were collected in the wet and dry season and from plots with different fire histories. We selected traits associated with plant resource use, growth, and life history strategies (leaf area, leaf dry/wet mass, leaf thickness, specific leaf area, leaf dry matter content, leaf C, N, P content, C and N isotopes). The trait dataset contains 3,665 plant records from 145 taxa, 54,036 trait measurements (increasing the trait data coverage of the regional flora by 420%) covering 14 traits and 121 plant taxa (ca. 40% of which have no previous publicly available trait data) across 33 families.
Palabras clave:
ANDEAN ECOSYSTEMS
,
FUNCTIONAL CHARACTERS
,
ALPINE PLANTS
,
ALTITUDE
Archivos asociados
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Identificadores
Colecciones
Articulos(IMBIV)
Articulos de INST.MULTIDISCIPL.DE BIOLOGIA VEGETAL (P)
Articulos de INST.MULTIDISCIPL.DE BIOLOGIA VEGETAL (P)
Citación
Halbritter, Aud H.; Vandvik, Vigdis; Cotner, Sehoya H.; Farfan Rios, William; Maitner, Brian S.; et al.; Plant trait and vegetation data along a 1314 m elevation gradient with fire history in Puna grasslands, Perú; Nature Research; Scientific Data; 11; 1; 2-2024; 1-19
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