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The role of Late Holocene climate variability in the expansion of yellow birch in the western Great Lakes region
Author(s) -
Jackson Stephen T.,
Booth Robert K.
Publication year - 2002
Publication title -
diversity and distributions
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.918
H-Index - 118
eISSN - 1472-4642
pISSN - 1366-9516
DOI - 10.1046/j.1472-4642.2002.00152.x
Subject(s) - macrofossil , pollen , holocene , ecology , betula pubescens , yellow birch , climate change , population , period (music) , peninsula , geography , physical geography , biology , archaeology , demography , physics , maple , sociology , acoustics
. Pollen records from the western Great Lakes region of North America show substantial increases in birch pollen percentages during the late Holocene. The vegetational and population dynamics underlying the birch increase have received little attention, in part because of the inability to discriminate among species of birch based on pollen morphology. We used analyses of pollen and plant macrofossils from four lakes in the Upper Peninsula of Michigan to document that the birch pollen increase represents a regional expansion of yellow birch ( Betula alleghaniensis ) populations, which was initiated c . 4500 years ago. Whether yellow birch invaded the region at this time or simply expanded from small, previously established populations is not clear, although it probably did not grow near our study sites before the expansion. The initial expansion occurred during an independently documented period of high moisture and high water levels in Lake Michigan. A subsequent expansion in yellow birch abundance and distribution occurred c . 3000 years ago, coinciding with a second period of increased moisture and high lake‐levels. The yellow birch expansion may have been modulated by millennial‐scale climate variability, with most rapid expansion occurring during relatively wet periods.

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