HR: 0800h
AN: PP11A-0224 [Abstracts]
TI: Paleoenvironmental changes affected on the diversity explosion and extinction events of the fossil diatom resting spore assemblage across the E/O boundary
AU: * Suto, I
EM: sutoitsu@geobio.eps.nagoya-u.ac.jp
AF: Department of Earth and Planetary Sciences, Nagoya University, Chikusa, Nagoya, 464-
8601, Japan
AU: Jordan, R W
EM: sh081@kdw.kj.yamagata-u.ac.jp
AF: Department of Earth and Environmental Sciences, Yamagata University, Kojirakawa-machi
1-4-12, Yamagata, 990-8560, Japan
AU: Watanabe, M
EM: mht.watanabe@aist.go.jp
AF: Institute of Geology and Geoinformation, Geological Survey of Japan, National Institute of
Advanced Industrial Science and Technology (AIST), Central 7, 1-1-1 Higashi, Tsukuba, 305-8567, Japan
AB:
The marine diatom genus Chaetoceros is known as a major contributor to primary production in near-shore
upwelling regions and coastal areas, where it accounts for 20–25% of the total marine primary production. They
produce heavily silicified resting spores which are easily preserved as fossils under nutrient-poor conditions. The
diatom resting spores are therefore preserved as significant constituents in fossil marine diatom assemblages
providing useful information for reconstructing paleoproductivity and paleoenvironmental changes. However, due
to the importance of Chaetoceros in marine primary production, it is crucial to investigate fossil resting spores in
upwelling regions.
As the result of revising the taxonomy of fossil diatom Chaetoceros resting spores using DSDP 338, 436 and
438, and onland-samples (Newport Beach Section, California) from the late Eocene to the Recent, the
Chaetoceros Explosion Event (when there was an increase in diversity and abundance, and a 50% reduction in
valve size) across the Eocene/Oligocene (E/O) boundary was clarified. On the other hand, investigation of middle
Eocene samples from the Integrated Ocean Drilling Program (IODP) Expedition 302, revealed an Extinction Event
across the E/O boundary of diatom resting spores other than Chaetoceros. These two events indicate increased
amounts of nutrient supply via upwelling and a change from a stable water column with a constant nutrient supply
in the Eocene to an unstable one with sporadic nutrient supply due to increased vertical mixing in the Oligocene.
UR: http://www.geocities.jp/restingspace2/
DE: 3344 Paleoclimatology (0473, 4900)
DE: 4800 OCEANOGRAPHY: BIOLOGICAL AND CHEMICAL (0460)
DE: 4900 PALEOCEANOGRAPHY (0473, 3344)
SC: Paleoceanography and Paleoclimatology [PP]
MN: 2007 Fall Meeting