Holocene vegetation history and sea level changes in the SE corner of the Caspian Sea: relevance to SW Asia climate

История растительности голоцена и изменения уровня моря в юго-восточной части Каспийского моря: значение для климата Юго-Западной Азии
Suzanne A.G. Leroy, A.A. Kakroodi, S.B. Kroonenberg, Hamid Lahijani, Habib Alimohammadian, Aman Nigarov
2013-04-22

Alborz MountainsCaspian Sea sea-level changesDinocyst assemblagesHolocene vegetation historyPalynological investigation
The palynological investigation of core TM (27.7 m long) taken in a dried out lagoon reveals both Holocene vegetation history in the north-eastern foothills of the Alborz Mountains and past water level changes of the Caspian Sea (CS). The delay in woodland expansion at the beginning of the Holocene, which is typical of eastern Turkey, the Iranian plateau and recorded in the CS south basin, is only weakly felt as the region is close to glacial refugia of trees. The succession of the main trees out of their refugia has been established as deciduous Quercus, Carpinus betulus, Parrotia persica, and Fagus orientalis-Pterocarya fraxinifolia, presenting therefore close affinities to south European interglacials of the Early Pleistocene. This suggests a similarity in climate. A Pterocarya decline is observed after AD 495. The studied region is close to the easternmost tree distribution; this could explain why it has been affected earlier than elsewhere in the northern Alborz and the Caucasus. In addition human activities during the Sasanian Empire and the subsequent drying of the climate contributed to weakening the spread of this tree. A maximal sea level occurs in the first part of the Holocene from 10.6 to 7.2 cal. ka. It is suggested that the CS levels were significantly influenced by the monsoon precipitations over the western Himalayas (via the Uzboy inflow). This is followed by low levels from 7.2 to 3.5 cal. ka with a minimum at 3.9 cal. ka. The Neocaspian period should be considered a biozone rather than a chronozone, as the environmental conditions reconstructed from dinocyst assemblages are different in shallow shelf waters and in the deep basins.
1
Caspian Sea levels were highest from 10.6 to 7.2 cal. ka, declined from 7.2 to 3.5 cal. ka, and reached a minimum at 3.9 cal. ka; western Himalayan monsoon precipitation may have influenced levels through Uzboy inflow.
2
Early Holocene woodland expansion was only weakly delayed, likely because the region lies near glacial refugia; trees successively expanded as deciduous Quercus, Carpinus betulus, Parrotia persica, and Fagus orientalis–Pterocarya fraxinifolia.
3
Palynological analysis of a 27.7 m lagoon core reconstructs Holocene vegetation history and Caspian Sea-level changes near the northeastern Alborz Mountains.
4
Pterocarya declined after AD 495, probably because the region lies near its eastern distribution limit and was additionally affected by Sasanian human activity and subsequent climatic drying.
5
The Neocaspian period is better treated as a biozone than a chronozone because dinocyst-derived environmental conditions differ between shallow shelf waters and deep basins.
6
The reconstructed tree succession resembles south European Early Pleistocene interglacials, suggesting comparable climatic conditions.

Holocene vegetation and Caspian Sea water-level history in the southeastern Caspian Sea region, reconstructed from a lagoon core in the northeastern Alborz foothills

Vegetation succession, tree-range dynamics, climate-related and anthropogenic influences, and Holocene Caspian Sea-level fluctuations inferred from palynological and dinocyst evidence

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2013-04-22
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Suzanne A.G. Leroy
A.A. Kakroodi
S.B. Kroonenberg
Hamid Lahijani
Habib Alimohammadian
Aman Nigarov
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