Pollen record of sediment core Ein Gedi (DSEn), Dead Sea

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Main Authors: Litt, Thomas, Ohlwein, Christian, Neumann, Frank Harald, Hense, Andreas, Stein, Mordechai
Format: Dataset Open Access
Language:en
Published: PANGAEA 2012
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author Litt, Thomas
Ohlwein, Christian
Neumann, Frank Harald
Hense, Andreas
Stein, Mordechai
author_facet Litt, Thomas
Ohlwein, Christian
Neumann, Frank Harald
Hense, Andreas
Stein, Mordechai
collection Datos científicos de ciencias marinas y ambientales
contents The Dead Sea, located at the deepest place on continent and between the subtropical Mediterranean zone and the desert, reflects in its water composition and levels, and sedimentary records the hydrological conditions in the southern Levant region. Temporal variations in rainfall and temperatures of the Holocene Levant are reconstructed here from pollen data recovered from a sediment core drilled at the Ein Gedi shore, applying a novel biome model based on Bayesian statistics. Our results suggest that the region was arid and warm in the early Holocene period (~10-6.5 ka cal BP), wetter and colder in the mid Holocene (6.3-3.3 ka cal BP), and drier and warmer in the late Holocene (~3.2 ka cal BP to present). These periods comprise multi-centennial climate cycles that are characterized by rapid changes in temperature and precipitation reflecting Sea Surface Temperature (SST) and atmospheric conditions over the Atlantic Ocean. The pollen record responds within a short time interval to the climate conditions and marks rapid shifts from Mediterranean to desert environmental conditions and back in the southern Levant region. We also evaluate our results in the light of possible disturbances of the natural vegetation, e.g. the possibility of forest decrease, since the Neolithic.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_874340
institution PANGAEA
language en
publishDate 2012
publisher PANGAEA
record_format pangaea
spellingShingle Pollen record of sediment core Ein Gedi (DSEn), Dead Sea
Litt, Thomas
Ohlwein, Christian
Neumann, Frank Harald
Hense, Andreas
Stein, Mordechai
Acacia; AGE; Alnus; Anemone; Apiaceae; Arbutus; Artemisia; Asphodelus; Brassicaceae; Carpinus; Caryophyllaceae; Casuarina; Cedrus; Centaurea; Ceratonia; Cerealia-type; Chenopodiaceae; Cirsium-type; Cistus-type; Corylus; Crataegus; Cupressaceae; Cyperaceae; Dead Sea Basin, Israel; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSEn; Echium; Ein Gedi; Ephedra; Euphorbia; Fabaceae; Fraxinus; Geranium; Helianthemum; Herniaria-type; Hypericum; Juglans; Knautia; Lamiaceae; Laurus; Liguliflorae; Liliaceae; Lycopodium; Mentha-type; Mercurialis; Olea; Ostrya; Papaveraceae; Phillyrea; Phoenix; Pinus; Pistacia; Plantago; Plantago coronopus; Plantago lanceolata-type; Platanus; Poaceae; Polygonum; Polypodiaceae; Populus; Potentilla-type; Prunus; Quercus calliprinos-type; Quercus ithaburensis-type; Ranunculaceae; Rosaceae; Rubiaceae; Rumex; Salix; Sambucus; Sarcopoterium; Scabiosa; Scrophulariaceae; Symphytum; Tamarix; Thymelaea; Tubuliflorae; Typha angustifolia-type; Typha latifolia; Urtica; Varia; Vitis; Xanthium; Zizyphus; Zygophyllum
The Dead Sea, located at the deepest place on continent and between the subtropical Mediterranean zone and the desert, reflects in its water composition and levels, and sedimentary records the hydrological conditions in the southern Levant region. Temporal variations in rainfall and temperatures of the Holocene Levant are reconstructed here from pollen data recovered from a sediment core drilled at the Ein Gedi shore, applying a novel biome model based on Bayesian statistics. Our results suggest that the region was arid and warm in the early Holocene period (~10-6.5 ka cal BP), wetter and colder in the mid Holocene (6.3-3.3 ka cal BP), and drier and warmer in the late Holocene (~3.2 ka cal BP to present). These periods comprise multi-centennial climate cycles that are characterized by rapid changes in temperature and precipitation reflecting Sea Surface Temperature (SST) and atmospheric conditions over the Atlantic Ocean. The pollen record responds within a short time interval to the climate conditions and marks rapid shifts from Mediterranean to desert environmental conditions and back in the southern Levant region. We also evaluate our results in the light of possible disturbances of the natural vegetation, e.g. the possibility of forest decrease, since the Neolithic.
title Pollen record of sediment core Ein Gedi (DSEn), Dead Sea
topic Acacia; AGE; Alnus; Anemone; Apiaceae; Arbutus; Artemisia; Asphodelus; Brassicaceae; Carpinus; Caryophyllaceae; Casuarina; Cedrus; Centaurea; Ceratonia; Cerealia-type; Chenopodiaceae; Cirsium-type; Cistus-type; Corylus; Crataegus; Cupressaceae; Cyperaceae; Dead Sea Basin, Israel; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSEn; Echium; Ein Gedi; Ephedra; Euphorbia; Fabaceae; Fraxinus; Geranium; Helianthemum; Herniaria-type; Hypericum; Juglans; Knautia; Lamiaceae; Laurus; Liguliflorae; Liliaceae; Lycopodium; Mentha-type; Mercurialis; Olea; Ostrya; Papaveraceae; Phillyrea; Phoenix; Pinus; Pistacia; Plantago; Plantago coronopus; Plantago lanceolata-type; Platanus; Poaceae; Polygonum; Polypodiaceae; Populus; Potentilla-type; Prunus; Quercus calliprinos-type; Quercus ithaburensis-type; Ranunculaceae; Rosaceae; Rubiaceae; Rumex; Salix; Sambucus; Sarcopoterium; Scabiosa; Scrophulariaceae; Symphytum; Tamarix; Thymelaea; Tubuliflorae; Typha angustifolia-type; Typha latifolia; Urtica; Varia; Vitis; Xanthium; Zizyphus; Zygophyllum
url https://doi.org/10.1594/PANGAEA.874340