A Geospatial Approach to Improving Fish Species Detection in Maumee Bay, Lake Erie

被引:2
|
作者
Bowser, Jessica [1 ]
Briggs, Andrew S. S. [2 ]
Thompson, Patricia [1 ]
McLean, Matthew [3 ]
Bowen, Anjanette [3 ]
机构
[1] US Fish & Wildlife Serv, Alpena Fish & Wildlife Conservat Off Detroit River, 28403 Old North Gibraltar Rd, Gibraltar, MI 48173 USA
[2] Michigan Dept Nat Resources, Lake St Clair Fisheries Res Stn, 33135 South River Rd, Harrison Township, MI 48045 USA
[3] US Fish & Wildlife Serv, Alpena Fish & Wildlife Conservat Off, 480 W Fletcher St, Alpena, MI 49707 USA
关键词
aquatic invasive species; adaptive sampling; sampling efficiency; geospatial analysis; GREAT-LAKES; RICHNESS; SURVEILLANCE;
D O I
10.3390/fishes8010003
中图分类号
S9 [水产、渔业];
学科分类号
0908 ;
摘要
Maumee Bay of western Lake Erie is at high risk for invasion by aquatic invasive species due to large urban and suburban populations, commercial shipping traffic, recreational boating, and aquaculture ponds. The U.S. Fish and Wildlife Service's Early Detection and Monitoring (EDM) program has been monitoring for new invasive species since 2013 and is continually looking to adapt sampling methods to improve efficiency to increase the chance of detecting new aquatic invasive species at low abundances. From 2013-2016, the program used a random sampling design in Maumee Bay with three gear types: boat electrofishing, paired fyke nets, and bottom trawling. Capture data from the initial three years was used to spatially explore fish species richness with the hot spot analysis (Getis-Ord Gi*) in ArcGIS. In 2017, targeted sites in areas with high species richness (hot spots) were added to the randomly sampled sites to determine if the addition of targeted sampling would increase fish species detection rates and detection of rare species. Results suggest that this hybrid sampling design improved sampling efficiency as species not detected or were rare in previous survey years were captured and species were detected at a faster rate (i.e., in less sampling effort), particularly for shallow-water gear types. Through exploring past data and experimenting with targeted sampling, the EDM program will continue to refine and adapt sampling efforts to improve efficiency and provide valuable knowledge for the early detection of aquatic invasive species. The use of geospatial techniques such as hot spot analysis is one approach fisheries researchers and managers can use to incorporate targeted sampling in a non-subjective way to improve species detection.
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页数:10
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共 48 条
  • [1] Evidence of walleye spawning in Maumee Bay, Lake Erie
    Roseman, EF
    Taylor, WW
    Hayes, DB
    Fofrich, J
    Knight, RL
    [J]. OHIO JOURNAL OF SCIENCE, 2002, 102 (03) : 51 - 55
  • [2] Fish Community Responses to Submerged Aquatic Vegetation in Maumee Bay, Western Lake Erie
    Miller, Jacob W.
    Kocovsky, Patrick M.
    Wiegmann, Daniel
    Miner, Jeffrey G.
    [J]. NORTH AMERICAN JOURNAL OF FISHERIES MANAGEMENT, 2018, 38 (03) : 623 - 629
  • [3] Molecular and ecological characterization of toxic cyanobacteria from the Bay of Quinte (Lake Ontario) and Maumee Bay (Lake Erie)
    Mueller, Kirsten M.
    Chhun, Aline
    Guildford, Stephanie J.
    Yakobowski, Sarah J.
    Jonlija, Miroslava
    [J]. JOURNAL OF GREAT LAKES RESEARCH, 2017, 43 (06) : 1067 - 1083
  • [4] Role of trace metal co-limitation in cyanobacterial blooms of Maumee Bay (Lake Erie) and Green Bay (Lake Michigan)
    Larson, James H. H.
    Loftin, Keith A. A.
    Stelzer, Erin A. A.
    Costello, David M. M.
    Bailey, Sean W. W.
    Evans, Mary Anne
    Givens, Carrie E. E.
    Fogarty, Lisa R. R.
    [J]. JOURNAL OF FRESHWATER ECOLOGY, 2023, 38 (01)
  • [5] Detection of the Spatiotemporal Trends of Mercury in Lake Erie Fish Communities: A Bayesian Approach
    Azim, M. Ekram
    Kumarappah, Ananthavalli
    Bhavsar, Satyendra P.
    Backus, Sean M.
    Arhonditsis, George
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2011, 45 (06) : 2217 - 2226
  • [6] Summer phytoplankton nutrient limitation in Maumee Bay of Lake Erie during high-flow and low-flow years
    Chaffin, Justin D.
    Bridgeman, Thomas B.
    Bade, Darren L.
    Mobilian, Courtney N.
    [J]. JOURNAL OF GREAT LAKES RESEARCH, 2014, 40 (03) : 524 - 531
  • [7] Determining habitat limitations of Maumee River walleye production to western Lake Erie fish stocks: documenting a spawning ground barrier
    Schmidt, Brian A.
    Tucker, Taaja R.
    Collier, Jessica J.
    Mayer, Christine M.
    Roseman, Edward F.
    Stott, Wendylee
    Pritt, Jeremy J.
    [J]. JOURNAL OF GREAT LAKES RESEARCH, 2020, 46 (06) : 1661 - 1673
  • [8] ASSOCIATIONS BETWEEN FISH SPECIES IN TRIBUTARIES AND SHORE WATERS OF WESTERN LAKE ERIE
    NASH, CB
    [J]. ECOLOGY, 1950, 31 (04) : 561 - 566
  • [9] Using a topological approach to identify keystone species of fish in eutrophic lake ecosystems: A case of Zhushan Bay, Taihu Lake
    Ren, Kecheng
    Xu, Dongpo
    Ren, Long
    Zhao, Dongfu
    [J]. FISHERIES MANAGEMENT AND ECOLOGY, 2023, 30 (01) : 89 - 98
  • [10] Life after death in Lake Erie: Nutrient controls drive fish species richness, rehabilitation
    Ludsin, SA
    Kershner, MW
    Blocksom, KA
    Knight, RL
    Stein, RA
    [J]. ECOLOGICAL APPLICATIONS, 2001, 11 (03) : 731 - 746