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A 14 000 year multi-proxy alluvial record of ecotone changes in a Fynbos-Succulent Karoo transition in South Africa

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posted on 2021-03-08, 16:16 authored by L Scott, S Manzano, Andrew Carr, C Cordova, JO Tomas, MD Bateman, J Carrion
To address long-standing questions concerning Southern Hemisphere climate dynamics and palaeoecological change in southern Africa, a Late Glacial-Holocene alluvial sediment sequence from the relatively dry interior year-round rainfall zone in South Africa was investigated. The study site borders the Fynbos biome and Succulent Karoo biome ecotone, and comprises a rare stratified sequence of sandy and organic-rich silt deposits, shown to span the last 14,000 years. A high resolution multi-proxy record of ecological change was derived using pollen, phytoliths and organic geochemical analyses. For the period 14–11 ka, significant valley aggradation occurred under relatively drier conditions, followed, during the early and middle Holocene, by alternating phases of humid and dry events with higher stream energy, slower accumulation or subtle seasonality changes. A transition from relatively humid to more arid conditions at 4–3 ka is identified and is consistent in timing with several interior year-round rainfall zone records. Results revealed alternations of fynbos and karroid elements and C3/C4 grasses throughout the last fourteen thousand years, but did not suggest large-scale biome shifts. The record joins a growing number of sites contributing to debate over the complex atmospheric-oceanic drivers of palaeoclimate in this region. These data broadly fit to the regional pattern for the southernmost interior of South Africa in showing alternating influences from the westerly winter rain systems in the early Holocene, with a greater contribution from subtropical summer rain system during the middle and later Holocene.

History

Citation

Palaeogeography, Palaeoclimatology, Palaeoecology Volume 569, 1 May 2021, 110331

Author affiliation

School of Geography, Geology and the Environment

Version

  • AM (Accepted Manuscript)

Published in

Palaeogeography, Palaeoclimatology, Palaeoecology

Volume

569

Publisher

Elsevier

issn

0031-0182

Acceptance date

2021-02-23

Copyright date

2021

Available date

2022-03-01

Language

en

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