Denitrification in a Laurentian Great Lakes coastal wetland invaded by hybrid cattail (Typha × glauca)

被引:0
|
作者
Shane C. Lishawa
KathiJo Jankowski
Pamela Geddes
Daniel J. Larkin
Andrew M. Monks
Nancy C. Tuchman
机构
[1] Loyola University Chicago,Institute of Environmental Sustainability
[2] University of Michigan Biological Station,School of Aquatic and Fishery Sciences
[3] University of Washington,Department of Biology
[4] Northeastern Illinois University,undefined
[5] Chicago Botanic Garden,undefined
[6] Plant Science and Conservation,undefined
来源
Aquatic Sciences | 2014年 / 76卷
关键词
Denitrification; Invasive species; Temporal; Aquatic macrophyte; Ecosystem service;  × ;
D O I
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中图分类号
学科分类号
摘要
Wetland ecosystems maintain and improve water quality through the process of denitrification, an increasingly important ecosystem service due to global N pollution. Invasive plants have the potential to disrupt denitrification by altering the environmental conditions that facilitate this process. Great Lakes coastal wetlands are experiencing widespread invasion by highly productive hybrid cattail with largely uncertain biogeochemical effects. Through field and controlled mesocosm studies, we sought to determine the effects of cattail invasion through time on denitrification rates and associated environmental factors in a Great Lakes coastal wetland. In the field, we found that cattail density correlated with increased denitrification and a suite of environmental and plant community characteristics and denitrification rates were positively correlated with NH4+, sediment organic matter, reduced water levels, and cattail stand age. Through our controlled mesocosm study, we documented conditions 1- and 5-year following invasion and found that denitrification rates and soil organic matter increased in year 5, and cattail and year-since-invasion altered plant communities and soil NH4+. Only a weak correlation between denitrification rates and cattail treatments was noted, however, owing to high replicate variability. Our results indicate that with increasing cattail residence time, one ecosystem service, biodiversity, was negatively impacted, while two other services, denitrification and sediment carbon accumulation, were enhanced. Thus, this highly invaded wetland still provides valuable services to aquatic ecosystems and to society. A holistic perspective is therefore critical when evaluating invasive species impacts in which negative impacts are weighed against other ecosystem services, which may be stimulated.
引用
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页码:483 / 495
页数:12
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