Identification of Photosynthetic Plankton Communities Using Sedimentary Ancient DNA and Their Response to late-Holocene Climate Change on the Tibetan Plateau

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作者
Weiguo Hou
Hailiang Dong
Gaoyuan Li
Jian Yang
Marco J. L. Coolen
Xingqi Liu
Shang Wang
Hongchen Jiang
Xia Wu
Haiyi Xiao
Bin Lian
Yunyang Wan
机构
[1] State Key Laboratory of Biogeology and Environmental Geology,Department of Geology and Environmental Earth Science
[2] China University of Geosciences,Marine Chemistry and Geochemistry Department
[3] Miami University,Department of Geochemistry and Environmental Science
[4] State Key Laboratory of Biogeology and Environmental Geology,undefined
[5] China University of Geosciences,undefined
[6] Woods Hole Oceanographic Institution,undefined
[7] College of Environmental Resources & Tourism,undefined
[8] Capital Normal University,undefined
[9] Collage of Life Sciences,undefined
[10] Nanjing Normal University,undefined
[11] College of Geoscience,undefined
[12] China University of Petroleum,undefined
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摘要
Sediments from Tibetan lakes in NW China are potentially sensitive recorders of climate change and its impact on ecosystem function. However, the important plankton members in many Tibetan Lakes do not make and leave microscopically diagnostic features in the sedimentary record. Here we established a taxon-specific molecular approach to specifically identify and quantify sedimentary ancient DNA (sedaDNA) of non-fossilized planktonic organisms preserved in a 5-m sediment core from Kusai Lake spanning the last 3100 years. The reliability of the approach was validated with multiple independent genetic markers. Parallel analyses of the geochemistry of the core and paleo-climate proxies revealed that Monsoon strength-driven changes in nutrient availability, temperature and salinity as well as orbitally-driven changes in light intensity were all responsible for the observed temporal changes in the abundance of two dominant phytoplankton groups in the lake, Synechococcus (cyanobacteria) and Isochrysis (haptophyte algae). Collectively our data show that global and regional climatic events exhibited a strong influence on the paleoecology of phototrophic plankton in Kusai Lake.
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