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| DOI | 10.1016/J.QUASCIREV.2023.108084 | ||||
| Año | 2023 | ||||
| Tipo | artículo de investigación |
Citas Totales
Autores Afiliación Chile
Instituciones Chile
% Participación
Internacional
Autores
Afiliación Extranjera
Instituciones
Extranjeras
Leaf cuticular waxes are one of the most important environment-plant interaction structural systems that enable desert plants to withstand extreme climatic conditions. We present a long chain n-alkyl lipids study in fresh plant leaves and rodent palaeomiddens collected along an elevational gradient in the south-central Atacama Desert of Chile, covering six different vegetation belts: Steppe (4500-4000 m asl), Puna (4000-3300 m asl), pre-Puna (3300-2400 m asl), Absolute Desert (2400-1000 m asl) and Coastal Desert (1000-0 m asl). The 28 rodent palaeomiddens analyzed from Quebrada Incahuasi (25.6 °S, 3600 m asl) span the last 17,000 years. Modern-day distribution of long-chain n-alkanes and n-alkanoic acids varies among the dominant plant associations of the Atacama Desert. These plants show a species-specific chemotaxonomy linked to the climatic conditions. Furthermore, differences in average chain length (ACL) and carbon preference index (CPI) suggest that these plant communities are highly adapted to extreme environmental conditions. The sum of leaf wax n-alkanes was highest under wet conditions, while n-alkanoic acids (between n-C24 and n-C28) increased with hyperaridity. Similarly, analysis of n-alkane time series from palaeomiddens showed that the greatest changes in leaf wax n-alkane distributions (ACL and CPI) corresponded to the greatest increases in moisture during the Central Andean Pluvial Event (CAPE; between 18 and 9 ka cal BP) and the Late Holocene. The shift in the palaeomidden n-alkane distributions is corroborated by the relative abundance of rainfall-dependent extra-local taxa. This is the first study to report leaf wax content obtained from ancient rodent middens, and shows promising results as a robust hydroclimate proxy for the Atacama Desert region.
| Ord. | Autor | Género | Institución - País |
|---|---|---|---|
| 1 | Frugone, M. | Hombre |
Universidad Católica de la Santísima Concepción - Chile
Núcleo Milenio de Ecología Histórica Aplicada para los Bosques Áridos - Chile Núcleo Milenio UPWELL - Chile Nucleo Milenio Comprendiendo sistema Surgencia Cos - Chile Núcleo Milenio de Ecología Histórica Aplicada para los Bosques Áridos (AFOREST) - Chile |
| 2 | CONTRERAS-QUINTANA, SERGIO HERNAN | Hombre |
Universidad Católica de la Santísima Concepción - Chile
Centro de Investigación en Biodiversidad y Ambientes Sustentables (CIBAS) - Chile Ctr Invest Biodivers & Ambientes Sustentables CIBA - Chile |
| 3 | Meseguer-Ruiz, Oliver | Hombre |
Universidad de Tarapacá - Chile
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| 4 | TEJOS-ALARCON, EDUARDO ANDRES | Hombre |
Universidad Católica de la Santísima Concepción - Chile
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| 5 | Delgado Huertas, Antonio | Hombre |
CSIC-UGR - Instituto Andaluz de Ciencias de la Tierra (IACT) - España
Inst Andaluz Ciencias Tierra CS UGR - España |
| 6 | VALERO-GARCES, BLAS LORENZO | Hombre |
Instituto Pirenaico de Ecología - España
CSIC - España CSIC - Instituto Pirenaico de Ecología - España CSIC - Instituto Pirenaico de Ecología (IPE) - España |
| 7 | DIAZ-AGUIRRE, FRANCISCA PAULINA | Mujer |
Núcleo Milenio de Ecología Histórica Aplicada para los Bosques Áridos - Chile
Pontificia Universidad Católica de Valparaíso - Chile Instituto de Ecologia y Biodiversidad - Chile Núcleo Milenio de Ecología Histórica Aplicada para los Bosques Áridos (AFOREST) - Chile |
| 8 | Briceño, Matías | - |
Pontificia Universidad Católica de Chile - Chile
|
| 9 | Bustos-Morales, Manuel | - |
Pontificia Universidad Católica de Chile - Chile
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| 10 | LATORRE-HIDALGO, CLAUDIO | Hombre |
Núcleo Milenio de Ecología Histórica Aplicada para los Bosques Áridos - Chile
Núcleo Milenio UPWELL - Chile Instituto de Ecologia y Biodiversidad - Chile Pontificia Universidad Católica de Chile - Chile Fundación Desierto de Atacama - Chile Nucleo Milenio Comprendiendo sistema Surgencia Cos - Chile Núcleo Milenio de Ecología Histórica Aplicada para los Bosques Áridos (AFOREST) - Chile |
| Fuente |
|---|
| Fondo Nacional de Desarrollo Científico y Tecnológico |
| ANID-Fondecyt |
| ANID-FONDECYT, Chile |
| Millennium Science Initiative Nucleus UPWELL |
| Millennium Science Initiative Program Nucleus AFOREST |
| Millennium Science Initiative Nucleus UPWELL, Chile |
| Millennium Science Initiative Nucleus IEB, Chile |
| ANID -Millennium Science Initiative Program Nucleus AFOREST |
| Agradecimiento |
|---|
| This research was supported by the ANID - FONDECYT (grants 1190398 , 1191568 , 11220930 , 3180368 ), Chile. Additional support was provided by the ANID – Millennium Science Initiative Program Nucleus AFOREST ( NCS2022_24 ) and the Millennium Science Initiative Nucleus UPWELL ( NCN19-153 ) and IEB (through ANID FB210006 ), Chile. |
| This research was supported by the ANID - FONDECYT (grants 1190398 , 1191568 , 11220930 , 3180368 ), Chile. Additional support was provided by the ANID – Millennium Science Initiative Program Nucleus AFOREST ( NCS2022_24 ) and the Millennium Science Initiative Nucleus UPWELL ( NCN19-153 ) and IEB (through ANID FB210006 ), Chile. |
| This research was supported by the ANID-FONDECYT (grants 1190398, 1191568, 11220930, 3180368), Chile. Additional support was provided by the ANID -Millennium Science Initiative Program Nucleus AFOREST (NCS2022_24) and the Millennium Science Initiative Nucleus UPWELL (NCN19-153) and IEB (through ANID FB210006), Chile. |