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DOI10.1016/j.jglr.2017.08.001
Biomonitoring using invasive species in a large Lake: Dreissena distribution maps hypoxic zones
Karatayev, Alexander Y.1; Burlakova, Lyubov E.1; Mehler, Knut1; Bocaniov, Serghei A.2; Collingsworth, Paris D.3; Warren, Glenn4; Kraus, Richard T.5; Hinchey, Elizabeth K.4
发表日期2018-08-01
ISSN0380-1330
卷号44期号:4页码:639-649
英文摘要

Due to cultural eutrophication and global climate change, an exponential increase in the number and extent of hypoxic zones in marine and freshwater ecosystems has been observed in the last few decades. Hypoxia, or low dissolved oxygen (DO) concentrations, can produce strong negative ecological impacts and, therefore, is a management concern. We measured biomass and densities of Dreissena in Lake Erie, as well as bottom DO in 2014 using 19 high frequency data loggers distributed throughout the central basin to validate a three-dimensional hydrodynamic-ecological lake model. We found that a deep, offshore hypoxic zone was formed by early August, restricting the Dreissena population to shallow areas of the central basin. Deeper than 20 m, where bottom hypoxia routinely develops, only young of the year mussels were found in small numbers, indicating restricted recruitment and survival of young Dreissena. We suggest that monitoring Dreissena distribution can be an effective tool for mapping the extent and frequency of hypoxia in freshwater. In addition, our results suggest that an anticipated decrease in the spatial extent of hypoxia resulting from nutrient management has the potential to increase the spatial extent of profundal habitat in the central basin available for Dreissena expansion. (C) 2017 International Association for Great Lakes Research. Published by Elsevier B.V. All rights reserved.


英文关键词ELCOM-CAEDYM;Mapping hypoxia;Dreissena rostriformis bugensis;Lake Erie;Oxygen dynamics
语种英语
WOS记录号WOS:000440959300010
来源期刊JOURNAL OF GREAT LAKES RESEARCH
来源机构美国环保署
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/61423
作者单位1.Buffalo State Coll, Great Lakes Ctr, 1300 Elmwood Ave, Buffalo, NY 14222 USA;
2.Univ Michigan, Graham Sustainabil Inst, 625 E Liberty St, Ann Arbor, MI 48103 USA;
3.Purdue Univ, Dept Forestry & Nat Resources, Illinois Indiana Sea Grant, 195 Marsteller St, W Lafayette, IN 47907 USA;
4.US EPA, Great Lakes Natl Program Off, Chicago, IL USA;
5.US Geol Survey, Lake Erie Biol Stn, Great Lakes Sci Ctr, 6100 Columbus Ave, Sandusky, OH 44870 USA
推荐引用方式
GB/T 7714
Karatayev, Alexander Y.,Burlakova, Lyubov E.,Mehler, Knut,et al. Biomonitoring using invasive species in a large Lake: Dreissena distribution maps hypoxic zones[J]. 美国环保署,2018,44(4):639-649.
APA Karatayev, Alexander Y..,Burlakova, Lyubov E..,Mehler, Knut.,Bocaniov, Serghei A..,Collingsworth, Paris D..,...&Hinchey, Elizabeth K..(2018).Biomonitoring using invasive species in a large Lake: Dreissena distribution maps hypoxic zones.JOURNAL OF GREAT LAKES RESEARCH,44(4),639-649.
MLA Karatayev, Alexander Y.,et al."Biomonitoring using invasive species in a large Lake: Dreissena distribution maps hypoxic zones".JOURNAL OF GREAT LAKES RESEARCH 44.4(2018):639-649.
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