Kennett, D. J. et al. (2008): Wildfire and abrupt ecosystem disruption on California's northern Channel Islands at the Allerod-Younger Dryas boundary (13.0-12.9 ka)

Leg/Site/Hole:
ODP 146
ODP 146 893
Identifier:
2011-061823
georefid

10.1016/j.quascirev.2008.09.006
doi

Creator:
Kennett, D. J.
University of Oregon, Department of Anthropology, Eugene, OR, United States
author

Kennett, J. P.
University of Adelaide, Australia
author

West, G. J.
University of California, Santa Barbara, United States
author

Erlandson, J. M.
University of California, Davis, United States
author

Johnson, J. R.
Santa Barbara Museum of Natural History, United States
author

Hendy, I. L.
University of Michigan, United States
author

West, A.
GeoScience Consulting, United States
author

Culleton, B. J.
California State Polytechnic University, San Luis Obispo, United States
author

Jones, T. L.
Stafford Research Laboratories, United States
author

Stafford, Thomas W., Jr.
author

Identification:
Wildfire and abrupt ecosystem disruption on California's northern Channel Islands at the Allerod-Younger Dryas boundary (13.0-12.9 ka)
2008
In: Stewart, John R. (editor), Cooper, Alan (editor), Ice Age refugia and Quaternary extinctions; an issue of Quaternary evolutionary palaeoecology
Elsevier, International
27
27-28
2530-2545
Sedimentary records from California's Northern Channel Islands and the adjacent Santa Barbara Basin (SBB) indicate intense regional biomass burning (wildfire) at the Allerod-Younger Dryas boundary ( nearly equal 13.0-12.9 ka) (All age ranges in this paper are expressed in thousands of calendar years before present [ka]. Radiocarbon ages will be identified and clearly marked " (super 14) C years".). Multiproxy records in SBB Ocean Drilling Project (ODP) Site 893 indicate that these wildfires coincided with the onset of regional cooling and an abrupt vegetational shift from closed montane forest to more open habitats. Abrupt ecosystem disruption is evident on the Northern Channel Islands at the Allerod-Younger Dryas boundary with the onset of biomass burning and resulting mass sediment wasting of the landscape. These wildfires coincide with the extinction of Mammuthus exilis [pygmy mammoth]. The earliest evidence for human presence on these islands at 13.1-12.9 ka ( nearly equal 11,000-10,900 (super 14) C years) is followed by an apparent 600-800 year gap in the archaeological record, which is followed by indications of a larger-scale colonization after 12.2 ka. Although a number of processes could have contributed to a post 18 ka decline in M. exilis populations (e.g., reduction of habitat due to sea-level rise and human exploitation of limited insular populations), we argue that the ultimate demise of M. exilis was more likely a result of continental scale ecosystem disruption that registered across North America at the onset of the Younger Dryas cooling episode, contemporaneous with the extinction of other megafaunal taxa. Evidence for ecosystem disruption at 13-12.9 ka on these offshore islands is consistent with the Younger Dryas boundary cosmic impact hypothesis [Firestone, R. B., West, A., Kennett, J. P., Becker, L., Bunch, T. E., Revay, Z. S., Schultz, P. H., Belgya, T., Kennett, D. J., Erlandson, J. M., Dickenson, O. J., Goodyear, A. A., Harris, R. S., Howard, G. A., Kloosterman, J. B., Lechler, P., Mayewski, P. A., Montgomery, J., Poreda, R., Darrah, T., Que Hee, S. S., Smith, A. R., Stich, A., Topping, W., Wittke, J. H. Wolbach, W. S., 2007. Evidence for an extraterrestrial impact 12,900 years ago that contributed to the megafaunal extinctions and Younger Dryas cooling. Proceedings of the National Academy of Sciences 104, 16016-16021.]. Abstract Copyright (2008) Elsevier, B.V.
English
Coverage:Geographic coordinates:
North:34.1715
West:-120.3000East: -118.1500
South:32.4000

Quaternary geology; accelerator mass spectra; Allerod; archaeology; biogeography; C-14; California; carbon; catastrophes; Cenozoic; Channel Islands; Chordata; climate change; cores; East Pacific; Elephantidae; Elephantoidea; Eutheria; extinct taxa; extinction; fires; geologic hazards; isotopes; Leg 146; Mammalia; Mammuthus; marine sediments; mass movements; mass spectra; natural hazards; North Pacific; Northeast Pacific; Ocean Drilling Program; ODP Site 893; Pacific Ocean; paleoclimatology; paleoecology; paleoenvironment; Pleistocene; Proboscidea; Quaternary; radioactive isotopes; Santa Barbara Basin; sediments; spectra; stratigraphic boundary; Tetrapoda; Theria; United States; upper Pleistocene; upper Weichselian; vegetation; Vertebrata; Weichselian; Younger Dryas;

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