The potential of site-specific and local chironomid-based inference models for reconstructing past lake levels

被引:0
|
作者
Joshua Kurek
Les C. Cwynar
机构
[1] University of New Brunswick,Department of Biology
来源
Journal of Paleolimnology | 2009年 / 42卷
关键词
Chironomids; Water depth; Transfer function; Lake level; Fossil remains; Alaska;
D O I
暂无
中图分类号
学科分类号
摘要
We examined the relationship between three key environmental variables (water depth, loss-on-ignition, and bottom-water temperature) and fossil chironomid distributions sampled from within-lake gradients in three small, moderately deep (18–35 m), maar lakes on St Michael Island, western Alaska. Site-specific (one lake, 29 samples) and local (three lakes, 87 samples) inference models for reconstructing water depth were developed using partial least squares regression and calibration. These models and a previously published regional model (136 lakes, one central-lake sample from each) are used to infer water depths from 78 fossil samples spanning the last ~30,000 14C years B.P. at Zagoskin Lake. Although the site-specific [r2boot = 0.90, root mean square error of prediction (RMSEP) = 1.76] and local (rboot2 = 0.68, RMSEP = 4.36) inference models have better performance statistics than the regional model, few clear trends among all three models exist in the lake-level reconstruction. We propose that multiple, within-lake sampling of gradients can be used to improve the performance statistics of water-depth transfer functions and ultimately reconstruct paleohydrology in regions known to exhibit large fluctuations in moisture balance through time given that: (1) adequate analogs are established and (2) taphonomic processes important to benthic invertebrate remains are more fully understood.
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页码:37 / 50
页数:13
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