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Impact of late Quaternary environmental changes on deep-sea benthic foraminiferal faunas of the Red Sea
Institution:1. Laboratory of Marine Organism Taxonomy and Phylogeny, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China;2. Key Laboratory of Marine Sedimentology and Environmental Geology, First Institute of Oceanography, MNR, Qingdao 266061, China;3. CAS Key Laboratory of Economic Stratigraphy and Palaeogeography, Nanjing Institute of Geology and Palaeontology, Centre for Excellence in Life and Paleoenvironment, Chinese Academy of Sciences, Nanjing 210008, China;4. Laboratory of Marine Geology, Qingdao National Laboratory for Marine Science and Technology, Qingdao 266061, China;5. Hohai University, Nanjing 210098, China;6. University of Chinese Academy of Sciences, Beijing, China;7. Center for Ocean Mega-Science, Chinese Academy of Sciences, Qingdao 266071, China;1. Center for Environment and Water, Research Institute, King Fahd University of Petroleum and Minerals, Dhahran, Kingdom of Saudi Arabia;2. Environmental Protection Department, Saudi Aramco, Dhahran, Kingdom of Saudi Arabia;1. Key Laboratory of Marine Hydrocarbon Resources and Environmental Geology, Ministry of Land and Resources, Qingdao 266071, PR China;2. Laboratory for Marine Geology, Qingdao National Laboratory for Marine Science and Technology, Qingdao 266061, PR China;3. Qingdao Institute of Marine Geology, Qingdao 266071, PR China;4. Key Laboratory of Coastal Wetland Biogeosciences, China Geologic Survey, Qingdao 266071, PR China;1. LPG-BIAF UMR-CNRS 6112, University of Angers, UFR Sciences, 2 bd Lavoisier, 49045 Angers Cedex 01, France;2. UMR CNRS 5805 EPOC, University of Bordeaux, Allée de Geoffroy Saint Hilaire CS 50023, 33615 Pessac Cedex, France;3. CEREGE, Europôle Méditerranéen de l''Arbois - Avenue Louis PHILIBERT - BP 80, 13545 Aix en Provence cedex 04, France;4. UMR CNRS 6554 LETG-LEESA, University of Angers, UFR Sciences, 2 bd Lavoisier, 49045 Angers Cedex 01, France;1. Department of Maritime Civilizations and the Leon Recanati Institute for Maritime Studies (RIMS), University of Haifa, Mount Carmel, Haifa 31905, Israel;2. Geological Survey of Israel, 30 Malkhe Yisrael, Jerusalem 95501, Israel;3. Leipzig University, Institute of Geophysics and Geology, Talstrasse 35, 04103 Leipzig, Germany
Abstract:Fluctuations in abundance, diversity and species composition of benthic foraminifera from two sites of the northern and southern Red Sea indicate strong variability of deep-sea ecosystems during the last four glacial to interglacial cycles. In total, five and four different benthic foraminiferal assemblages have been identified in the northern core and southern core, respectively. Comparison with recent faunas from the Red Sea and adjacent oceans allowed the reconstruction of temporal changes in deep-water ventilation, salinity and food availability at the seafloor. Generally, the abundance of infaunal and miliolid taxa increase during glacial intervals indicating increased organic matter fluxes, oxygen decrease and salinity increase in deep waters during these times. These fluctuations are attributed to enhanced oxygen consumption rates and temporarily reduced deep-water formation in the northern Red Sea during glacial intervals. The recorded environmental changes are a reflection of both high- and low-latitude climate changes. The northern Red Sea is mainly influenced by glacio-eustatic sea level fluctuations that control deep-water formation rates and by mid-latitude climate changes of the Mediterranean region that control surface productivity. In contrast, deep-sea ecosystem variability of the southern Red Sea is additionally influenced by low-latitude climate changes attributed to the NE monsoon intensity that drives the inflow of nutrient-rich surface waters from the Gulf of Aden. These results demonstrate the high sensitivity of deep-sea ecosystems of the Red Sea to both global and regional climate changes.
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