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Influence of Diporeia Density on Diet Composition, Relative Abundance, and Energy Density of Planktivorous Fishes in Southeast Lake Michigan

dc.contributor.authorHondorp, Darryl W.
dc.contributor.authorPothoven, Steven A.
dc.contributor.authorBrandt, Stephen B.
dc.date.accessioned2018-02-05T16:26:34Z
dc.date.available2018-02-05T16:26:34Z
dc.date.issued2005-05
dc.identifier.citationHondorp, Darryl W.; Pothoven, Steven A.; Brandt, Stephen B. (2005). "Influence of Diporeia Density on Diet Composition, Relative Abundance, and Energy Density of Planktivorous Fishes in Southeast Lake Michigan." Transactions of the American Fisheries Society 134(3): 588-601.
dc.identifier.issn0002-8487
dc.identifier.issn1548-8659
dc.identifier.urihttps://hdl.handle.net/2027.42/141042
dc.description.abstractThe benthic amphipod Diporeia spp. is an important prey for many fish in offshore areas of the Great Lakes, but its abundance has been rapidly decreasing. To assess the influence of Diporeia availability on the food habits, relative abundance, and energetics of planktivorous fish, the diet composition, catch per unit effort (CPUE), and energy density of plantkivorous fish in southeast Lake Michigan during 2000–2001 were compared among locations with different Diporeia densities. Diporeia densities at St. Joseph, Michigan, were near 0/m2 over much of the bottom but averaged more than 3,800/m2 at Muskegon and Little Sable Point, Michigan. Consistent with these differences in Diporeia density, fish diet composition, CPUE, and energy density varied spatially. For example, alternative prey types comprised a larger fraction of the diets of bloater Coregonus hoyi, large (>100 mm total length) alewife Alosa pseudoharengus, and slimy sculpin Cottus cognatus at St. Joseph than at Muskegon and Little Sable Point. This pattern was seasonally dependent for alewives and bloaters because Diporeia were eaten mainly in June. Food biomass per stomach was not lower at St. Joseph than elsewhere, suggesting that the spatial variation in diet composition was due to greater consumption of alternative prey by fish at St. Joseph. Although slimy sculpin and bloaters were able to feed on alternative prey, the CPUE of these species at certain depths was considerably lower at St. Joseph than at Muskegon or Little Sable Point, indicating that Diporeia availability may also influence fish abundance and distribution. Finally, a link between Diporeia density and fish energetics was suggested by the comparatively low energy density of deepwater sculpin Myoxocephalus thompsonii and large alewives at St. Joseph, a result that may reflect the low energy content of other prey relative to Diporeia.
dc.publisherTaylor & Francis Group
dc.publisherWiley Periodicals, Inc.
dc.titleInfluence of Diporeia Density on Diet Composition, Relative Abundance, and Energy Density of Planktivorous Fishes in Southeast Lake Michigan
dc.typeArticleen_US
dc.rights.robotsIndexNoFollow
dc.subject.hlbsecondlevelNatural Resources and Environment
dc.subject.hlbtoplevelScience
dc.description.peerreviewedPeer Reviewed
dc.description.bitstreamurlhttps://deepblue.lib.umich.edu/bitstream/2027.42/141042/1/tafs0588.pdf
dc.identifier.doi10.1577/T04-107.1
dc.identifier.sourceTransactions of the American Fisheries Society
dc.identifier.citedreferenceP. S. Rand, D. J. Stewart, B. F. Lantry, L. G. Rudstam, O. E. Johannsson, A. P. Goyke, S. B. Brandt, R. O’Gorman and G. W. Eck, 1995 Effect of lake‐wide planktivory by the pelagic prey fish community in Lakes Michigan and Ontario, Canadian Journal of Fisheries and Aquatic Sciences, 52, Pages 1546 – 1563.
dc.identifier.citedreferenceH. A. Regier and W. L. Hartman, 1973 Lake Erie’s fish community: 150 years of cultural stresses, Science, 180, Pages 1248 – 1255.
dc.identifier.citedreferenceD. R. Robertson, 1987. In Responses of two coral reef toadfishes (Batrachoididae) to the demise of their primary prey, the sea urchin Diadema antillarum, Copeia 1987:637–642.
dc.identifier.citedreferenceD. V. Rottiers and R. M. Tucker, 1982. In Proximate composition and caloric content of eight Lake Michigan fishes, Ann Arbor, U.S. Fish and Wildlife Service Technical Paper 108, Michigan.
dc.identifier.citedreferenceJ. H. Selgeby, 1988 Comparative biology of the sculpins of Lake Superior, Journal of Great Lakes Research, 14, Pages 44 – 51.
dc.identifier.citedreferenceS. H. Smith, 1970 Species interactions of the alewife in the Great Lakes, Transactions of the American Fisheries Society, 99, Pages 754 – 765.
dc.identifier.citedreferenceT. A. Springer and B. R. Murphy, 1990 Properties of relative weight and other condition indices, Transactions of the American Fisheries Society, 119, Pages 1048 – 1058.
dc.identifier.citedreferenceD. J. Stewart and F. P. Binkowski, 1986 Dynamics of consumption and food conversion by Lake Michigan alewives: an energetics‐modeling synthesis, Transactions of the American Fisheries Society, 115, Pages 643 – 661.
dc.identifier.citedreferenceD. J. Stewart, J. F. Kitchell and L. B. Crowder, 1981 Forage fishes and their salmonid predators in Lake Michigan, Transactions of the American Fisheries Society, 110, Pages 751 – 763.
dc.identifier.citedreferenceB. Vondracek, B. D. Giese and M. G. Henry, 1996 Energy density of three fishes from Minnesota waters of Lake Superior, Journal of Great Lakes Research, 22, Pages 757 – 764.
dc.identifier.citedreferenceL. Wells, 1968 Seasonal depth distribution of fish in southeastern Lake Michigan, Fishery Bulletin, 67, Pages 1 – 15.
dc.identifier.citedreferenceL. Wells, 1977 Changes in yellow perch (Perca flavescens) populations of Lake Michigan, 1954–75, Journal of the Fisheries Research Board of Canada, 34, Pages 1821 – 1829.
dc.identifier.citedreferenceL. Wells, 1980. In Food of alewives, yellow perch, spottail shiners, trout‐perch, and slimy and fourhorn sculpins in southeastern Lake Michigan, Ann Arbor, U.S. Fish and Wildlife Service Technical Paper 98, Michigan.
dc.identifier.citedreferenceL. Wells and A. M. Beeton, 1963 Food of the bloater, Coregonus hoyi, in Lake Michigan, Transactions of the American Fisheries Society, 19, Pages 245 – 255.
dc.identifier.citedreferenceL. Wells and A. L. McLain, 1972 Lake Michigan: Effects of exploitation, introductions, and eutrophication on the salmonid community, Journal of the Fisheries Research Board of Canada, 29, Pages 889 – 898.
dc.identifier.citedreferenceL. Wells and A. L. McLain, 1973. In Lake Michigan: man’s effects on native fish stocks and other biota, Ann Arbor, Great Lakes Fishery Commission Technical Report 20, Michigan.
dc.identifier.citedreferenceJ. H. Zar, 1984. In Biostatistical analysis,, Prentice‐Hall, Inc., Englewood Cliffs, New Jersey, 2nd edition.
dc.identifier.citedreferenceM. D. Balcer, N. L. Korda and S. I. Dodson, 1984. In Zooplankton of the Great Lakes. A guide to the identification and ecology of the common crustacean species, The University of Wisconsin Press, Madison.
dc.identifier.citedreferenceS. B. Brandt, 1986a Food of trout and salmon in Lake Ontario, Journal of Great Lakes Research, 12, Pages 200 – 205.
dc.identifier.citedreferenceS. B. Brandt, 1986b Ontogenetic shifts in habitat, diet, and diel‐feeding periodicity of slimy sculpin in Lake Ontario, Transactions of the American Fisheries Society, 115, Pages 711 – 715.
dc.identifier.citedreferenceC. R. Bronte, M. P. Ebener, D. R. Schreiner, D. S. DeVault, M. M. Petzold, D. R. Jensen, C. Richards and S. J. Lozano, 2003 Fish community change in Lake Superior, 1970–2000, Canadian Journal of Fisheries and Aquatic Sciences, 60, Pages 1552 – 1574.
dc.identifier.citedreferenceW. J. Christie, 1972 Lake Ontario: effects of exploitation, introductions, and eutrophication on the salmonid community, Journal of the Fisheries Research Board of Canada, 29, Pages 913 – 929.
dc.identifier.citedreferenceW. J. Christie, 1974 Changes in the fish species composition of the Great Lakes, Journal of the Fisheries Research Board of Canada, 31, Pages 827 – 854.
dc.identifier.citedreferenceR. S. Cone, 1989 The need to reconsider the use of condition indices in fishery science, Transactions of the American Fisheries Society, 118, Pages 510 – 514.
dc.identifier.citedreferenceL. B. Crowder and F. P. Binkowski, 1983 Foraging behaviors and the interaction of alewife, Alosa pseudoharengus, and bloater Coregonus hoyi, Evironmental Biology of Fishes, 8, Pages 105 – 113.
dc.identifier.citedreferenceL. B. Crowder, J. J. Magnuson and S. B. Brandt, 1981 Complementarity in the use of food and thermal habitat by Lake Michigan fishes, Canadian Journal of Fisheries and Aquatic Sciences, 38, Pages 662 – 668.
dc.identifier.citedreferenceR. Dermott, 2001 Sudden disappearance of the amphipod Diporeia from eastern Lake Ontario, Journal of Great Lakes Research, 27, Pages 423 – 433.
dc.identifier.citedreferenceR. Dermott and D. Kerec, 1997 Changes in the deepwater benthos of eastern Lake Erie since the invasion of Dreissena: 1979–1993, Canadian Journal of Fisheries and Aquatic Sciences, 54, Pages 922 – 930.
dc.identifier.citedreferenceA. W. Dittman, G. S. Brown and C. J. Foote, 1998 The role of chemoreception in salmon‐egg predation by coastrange (Cottus aleuticus) and slimy (C. cognatus) sculpins in Iliamna Lake, Alaska, Canadian Journal of Zoology, 76, Pages 406 – 413.
dc.identifier.citedreferenceJ. S. Diana, 1990 Food habits of angler‐caught salmonines in western Lake Huron, Journal of Great Lakes Research, 16, Pages 271 – 278.
dc.identifier.citedreferenceG. W. Eck and L. Wells, 1987 Recent changes in Lake Michigan’s fish community and their probably causes, with emphasis on the role of the alewife (Alosa pseudoharengus), Canadian Journal of Fisheries and Aquatic Sciences, 44, Pages 53 – 60.
dc.identifier.citedreferenceF. Feyrer, B. Herbold, S. A. Matern and P. B. Moyle, 2003 Dietary shifts in a stressed fish assemblage: Consequences of a bivalve invasion in the San Francisco Estuary, Environmental Biology of Fishes, 67, Pages 277 – 288.
dc.identifier.citedreferenceL. E. Flath and J. S. Diana, 1985 Seasonal energy dynamics of the alewife in Lake Michigan, Transactions of the American Fisheries Society, 114, Pages 328 – 337.
dc.identifier.citedreferenceW. S. Gardner, T. F. Nalepa, W. A. Frez, E. A. Cichocki and P. F. Landrum, 1985 Seasonal patterns in lipid content of Lake Michigan macroinvertebrates, Canadian Journal of Fisheries and Aquatic Sciences, 42, Pages 1827 – 1832.
dc.identifier.citedreferenceW. S. Gardner, M. A. Quigley, G. L. Fahnenstiel, D. Scavia and W. A. Frez, 1990, “ Pontoporeia hoyi— a direct trophic link between spring diatoms and fish in Lake Michigan ”, Pages 632 – 644. Edited by: M. M. Tilzer, C. Serruya. In Large lakes: ecological structure and function, Springer‐Verlag, New York.
dc.identifier.citedreferenceS. D. Gerking, 1994. In Feeding ecology of fish, Academic Press, San Diego, California.
dc.identifier.citedreferenceN. E. Grossnickle, 1982 Feeding habits of Mysis relicta: an overview, Hydrobiologia, 93, Pages 101 – 107.
dc.identifier.citedreferenceK. J. Hartman and S. B. Brandt, 1995 Estimating the energy density of fish, Transactions of the American Fisheries Society, 124, Pages 347 – 355.
dc.identifier.citedreferenceS. W. Hewett and D. J. Stewart, 1989 Zooplanktivory by alewives in Lake Michigan: ontogenetic, seasonal, and historical patterns, Transactions of the American Fisheries Society, 118, Pages 581 – 596.
dc.identifier.citedreferenceJ. A. Hoyle, J. M. Casselman, R. Dermott and T. Schaner, 2003, “ Resurgence and decline of lake whitefish (Coregonus clupeaformis) stocks in eastern Lake Ontario ”, Pages 493 – 516. Edited by: M. Munuwar. In State of Lake Ontario: past, present and future, Aquatic Ecosystem Health and Management Society, Ecovision World Monograph Series, Burlington, Ontario.
dc.identifier.citedreferenceJ. Janssen, 1980, “ Alewives (Alosa pseudoharengus) and ciscoes (Coregonus artedii) as selective and non‐selective planktivores ”, Pages 580 – 585. Edited by: W. C. Kerfoot. In Ecology and evolution of zooplankton communities, University Press of New England, Hanover, New Hampshire.
dc.identifier.citedreferenceJ. Janssen and S. B. Brandt, 1980 Feeding ecology and vertical migration of adult alewives (Alosa pseudoharengus) in Lake Michigan, Canadian Journal of Fisheries and Aquatic Sciences, 37, Pages 177 – 184.
dc.identifier.citedreferenceO. E. Johannsson, M. F. Leggett, L. G. Rudstam, M. R. Servos, M. A. Mohammadian, G. Gal, R. M. Dermott and R. H. Hessleain, 2001 Diet of Mysis relicta in Lake Ontario as revealed by stable isotope and gut content analysis, Canadian Journal of Fisheries and Aquatic Sciences, 58, Pages 1975 – 1986.
dc.identifier.citedreferenceJ. F. Koonce, W‐D. N. Busch and T. Czapla, 1996 Restoration of Lake Erie: contribution of water quality and natural resource management, Canadian Journal of Fisheries and Aquatic Sciences, 53, Pages 105 – 112, (Supplement 1).
dc.identifier.citedreferenceC. E. Kraft and J. F. Kitchell, 1986 Partitioning of food resources by sculpins in Lake Michigan, Environmental Biology of Fishes, 16, Pages 309 – 316.
dc.identifier.citedreferenceB. F. Lantry and D. J. Stewart, 1993 Ecological energetics of rainbow smelt in the Laurentian Great Lakes: an interlake comparison, Transactions of the American Fisheries Society, 122, Pages 951 – 976.
dc.identifier.citedreferenceS. J. Lozano, J. V. Scharold and T. F. Nalepa, 2001 Recent declines in benthic macroinvertebrate densities in Lake Ontario, Canadian Journal of Fisheries and Aquatic Sciences, 58, Pages 518 – 529.
dc.identifier.citedreferenceC. P. Madenjian, T. J. DeSorcie and R. M. Stedman, 1998 Ontogenetic and spatial patterns in diet and growth of lake trout in Lake Michigan, Transactions of the American Fisheries Society, 127, Pages 236 – 252.
dc.identifier.citedreferenceC. P. Madenjian, G. L. Fahnenstiel, T. H. Johengen, T. F. Nalepa, H. A. Vanderploeg, G. W. Fleischer, P. J. Schneeberger, D. M. Benjamin, E. B. Smith, J. R. Bence, E. R. Rutherford, D. L. Lavis, D. M. Robertson, D. J. Jude and M. P. Ebener, 2002 Dynamics of the Lake Michigan food web, 1970–2000, Canadian Journal of Fisheries and Aquatic Sciences, 59, Pages 736 – 753.
dc.identifier.citedreferenceC. P. Madenjian, J. D. Holuszko and T. J. Desorcie, 2003 Growth and condition of alewives in Lake Michigan, 1984–2001, Transactions of the American Fisheries Society, 132, Pages 1104 – 1116.
dc.identifier.citedreferenceC. P. Madenjian and D. V. O’Connor, 1999 Laboratory evaluation of a lake trout bioenergetics model, Transactions of the American Fisheries Society, 128, Pages 802 – 814.
dc.identifier.citedreferenceE. L. Mills, R. O’Gorman, J. DeGisi, R. F. Heberger and R. A. House, 1992 Food of the alewife (Alosa pseudoharengus) in Lake Ontario before and after the establishment of Bythotrephes cederstroemi, Canadian Journal of Fisheries and Aquatic Sciences, 49, Pages 2009 – 2019.
dc.identifier.citedreferenceE. L. Mills, J. M. Casselman, R. Dermott, J. D. Fizsimmons, G. Gal, K. T. Holeck, J. A. Hoyle, O. E. Johannsson, B. F. Lantry, J. C. Makarewicz, E. S. Millard, I. F. Munawar, M. Munawar, R. O’Gorman, R. W. Owens, L. G. Rudstam, T. Schaner and T. J. Stewart, 2003 Lake Ontario: food web dynamics in a changing ecosystem (1970–2000), Canadian Journal of Fisheries and Aquatic Sciences, 60, Pages 471 – 490.
dc.identifier.citedreferenceR. S. Mirza and D. P. Chivers, 2002 Attraction of slimy sculpins to chemical cues of brook char eggs, Journal of Fish Biology, 61, Pages 532 – 539.
dc.identifier.citedreferenceT. F. Nalepa, 1987 Long‐term changes in the macrobenthos of southern Lake Michigan, Canadian Journal of Fisheries and Aquatic Sciences, 44, Pages 515 – 524.
dc.identifier.citedreferenceT. F. Nalepa, 1989 Estimates of macroinvertebrate biomass in Lake Michigan, Journal of Great Lakes Research, 15, Pages 437 – 443.
dc.identifier.citedreferenceT. F. Nalepa, D. L. Fanslow, M. B. Lansing and G. A. Lang, 2003 Trends in the benthic macroinvertebrate community of Saginaw Bay, Lake Huron, 1987–1996: responses to phosphorus abatement and the zebra mussel, Dreissena polymorpha, Journal of Great Lakes Research, 29, Pages 14 – 33.
dc.identifier.citedreferenceT. F. Nalepa, D. J. Hartson, D. L. Fanslow, G. A. Lang and S. J. Lozano, 1998 Declines in benthic macroinvertebrate populations in southern Lake Michigan, 1980–1993, Canadian Journal of Fisheries and Aquatic Sciences, 55, Pages 2402 – 2413.
dc.identifier.citedreferenceT. F. Nalepa, G. A. Lang and D. L. Fanslow, 2000 Trends in benthic macroinvertebrate populations in southern Lake Michigan, Internationale Vereinigung für Theoretische und Angewandte Limnologie, 27, Pages 2540 – 2545.
dc.identifier.citedreferenceR. W. Owens and D. E. Dittman, 2003 Shifts in the diet of slimy sculpin (Cottus cognatus) and lake whitefish (Coregonus clupeaformis) in Lake Ontario following the collapse of the burrowing amphipod Diporeia, Aquatic Ecosystem Health and Management, 6, Pages 311 – 323.
dc.identifier.citedreferenceR. W. Owens and P. G. Weber, 1995 Predation on Mysis relicta by slimy sculpins (Cottus cognatus) in southern Lake Ontario, Journal of the Fisheries Research Board of Canada, 21, Pages 275 – 283.
dc.identifier.citedreferenceA. M Phillips Jr and D. R. Brockway, 1959 Dietary calories and the production of trout in hatcheries, Progressive Fish‐Culturist, 21, Pages 3 – 16.
dc.identifier.citedreferenceS. A. Pothoven, T. F. Nalepa and S. B. Brandt, 2000a Age‐0 and age‐1 yellow perch diet in southeastern Lake Michigan, Journal of Great Lakes Research, 26, Pages 235 – 239.
dc.identifier.citedreferenceS. A. Pothoven, G. L. Gahnenstiel, H. A. Vanderploeg and M. Luttenton, 2000b Population dynamics of Mysis relicta in southeastern Lake Michigan, 1995– 98, Journal of Great Lakes Research, 26, Pages 357 – 365.
dc.identifier.citedreferenceS. A. Pothoven, T. F. Nalepa, P. J. Schneeberger and S. B. Brandt, 2001 Changes in diet and body condition of lake whitefish in southern Lake Michigan associated with changes in benthos, North American Journal of Fisheries Management, 21, Pages 876 – 883.
dc.identifier.citedreferenceS. A. Pothoven and H. A. Vanderploeg, 2004 Diet and prey selection of alewives in Lake Michigan: seasonal, depth, and interannual patterns, Transactions of the American Fisheries Society, 133, Pages 1068 – 1077.
dc.owningcollnameInterdisciplinary and Peer-Reviewed


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