A multiproxy environmental investigation of Holocene wood from a submerged conifer forest in Lake Huron, USA

Author:

Hunter R. Douglas,Panyushkina Irina P.,Leavitt Steven W.,Wiedenhoeft Alex C.,Zawiskie John

Abstract

AbstractRemains of a Holocene drowned forest in southern Lake Huron discovered in 12.5 m of water (164 m above sea level), 4.5 km east of Lexington, Michigan USA (Sanilac site), provided wood to investigate environment and lake history using several proxies. Macrofossil evidence indicates a forest comprised primarily of conifers equivalent to the modern “rich conifer swamp” community, despite generally low regional abundance of these species in pollen records. Ages range from 7095 ± 50 to 6420 ± 70 14C yr BP, but the clustering of stump dates and the development of 2 floating tree-ring chronologies suggest a briefer forest interval of no more than c. 400 years. Dendrochronological analysis indicates an environment with high inter-annual climate variability. Stable-carbon isotope composition falls within the range of modern trees from this region, but the stable-oxygen composition is consistent with warmer conditions than today. Both our tree-ring and isotope data provide support for a warmer environment in this region, consistent with a mid-Holocene thermal maximum. This drowned forest also provides a dated elevation in the Nipissing transgression at about 6420 14C yr BP (7350 cal yr BP) in the southern Lake Huron basin, a few hundred years before reopening of the St. Clair River drainage.

Publisher

Cambridge University Press (CUP)

Subject

General Earth and Planetary Sciences,Earth-Surface Processes,Arts and Humanities (miscellaneous)

Reference44 articles.

1. Tree-ring characteristics of wood samples from the Southport buried forest, Kenosha, Wisconsin;Leavitt,1989

2. An explanation of 13C/12C variations in tree rings

3. Analysis of sediment cores in the St. Clair river delta. 12th Conference on Great Lakes Research;Mandelbaum,1969

4. Comparison of Modeled and Observed Environmental Influences on the Stable Oxygen and Hydrogen Isotope Composition of Leaf Water in Phaseolus vulgaris L.

5. Natural community abstract for mesic northern forest;Cohen,2000

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