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Phytoplankton assemblage in the Plio-Pleistocene record of Lake Baikal as indicated by sedimentary steryl chlorin esters

Past changes in phytoplankton assemblages in Lake Baikal over the last 4.5 Ma, both in population and composition, are inferred from the downcore profiles of the relatively stable chlorophyll derivatives steryl esters of pyropheophorbides a and b (steryl chlorine esters; SCEs) in the 0–200 m section...

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Bibliographic Details
Published in:Quaternary international 2009-08, Vol.205 (1), p.126-136
Main Authors: Tani, Yukinori, Nara, Fumiko, Soma, Yuko, Soma, Mitsuyuki, Itoh, Nobuyasu, Matsumoto, Genki Inoue, Tanaka, Atsushi, Kawai, Takayoshi
Format: Article
Language:English
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Summary:Past changes in phytoplankton assemblages in Lake Baikal over the last 4.5 Ma, both in population and composition, are inferred from the downcore profiles of the relatively stable chlorophyll derivatives steryl esters of pyropheophorbides a and b (steryl chlorine esters; SCEs) in the 0–200 m section of the BDP-98 drill core, supplemented by the data on biogenic silica (BSi) and total organic carbon (TOC) contents. SCEs- a and - b dominate among sedimentary chlorophyll derivatives in the BDP-98 sediments except for the upper few meters, indicating their high stability during diagenetic alteration of sediments. The depth (age) profiles of SCEs- a are consistent with BSi and TOC profiles and are interpreted as reflecting primary productivity of the lake in the past. Baikal proxies reveal close correlation with marine oxygen isotope records (MIS stratigraphy). These observations confirm that climate change in the northern hemisphere has been a primary factor controlling the total phytoplankton productivity in Lake Baikal during the last several million years. Among SCEs- a, C 30 (dinostanol)-SCE- a, a marker of dinoflagellates was identified by GC–MS analysis. SCE- b, a marker of green algae, was identified by its UV–vis spectrum. The ratio of C 30-SCE- a to total SCEs- a (TSCEs- a) was higher during 4.5–4.2 and 1.7–1.3 Ma, suggesting that dinoflagellates proliferated preferentially in those periods. The early Pleistocene maximum of this ratio corresponds to the broad minimum of diatom abundance previously suggested to have recorded a prolonged regional cooling. An abrupt increase in the SCE- b/TSCEs- a ratio was observed at 2.5–2.6 Ma, indicating that green algae containing chlorophyll b have proliferated in Lake Baikal during this period. This interval has also been suggested to contain evidence for a significant regional cooling based on minima of diatom abundance and BSi in sediments. The depth profile of C 27Δ 5 (cholesterol)-SCE- a relative to TSCEs- a showed a trend similar to that of BSi, suggesting that C 27Δ 5-SCE- a/TSCEs- a ratio is a potential marker of diatoms in Lake Baikal. Certain mismatches between the Lake Baikal profiles of biological indicators and the marine oxygen isotope records, as well as the slight temporal offsets between different Lake Baikal biological marker signals suggest that the regional component of climatic and/or lacustrine environmental changes also have played a role in determining the composition of the Lake Baikal Plio
ISSN:1040-6182
1873-4553
DOI:10.1016/j.quaint.2009.02.004