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M.J. Connerton

Publications and source records attributed to M.J. Connerton.

2 recordsLinked to original sources

Sculpin and round goby assessment, Lake Ontario 2012

Historically slimy sculpin Cottus cognatus were the most abundant native, benthic prey fish in Lake Ontario and important prey for juvenile lake trout. Over the past 34 years, slimy sculpin abundance has fluctuated, but generally decreased, with a substantial decline occurring in the past 10 years. The 2012 slimy sculpin mean density (0.005 ind.·m -2 , sd=0.012, n=62) and mean biomass density (0.058 g·m -2 , s.d= 0.120, n=62) were the lowest recorded in the 27 years of sampling using the original bottom trawl design. An absence of slimy sculpin less than 50mm (age-0) in the past 10 years suggests population declines are the result of reduced recruitment potentially due to predation or reduced reproductive effort. Over the entire time series, the depth of maximum slimy sculpin abundance has steadily increased from 65m to 125m. Depthassociated sculpin behavior may be a result of water clarity changes that intensify predation risk at shallower depths or a food related response where sculpin have moved deeper to habitats that still support low densities of Diporeia, a favored food source. In the fall of 2012, round goby density (0.526 individuals·m -2 ) was two orders of magnitude greater than slimy sculpin, suggesting round goby are now the dominant benthic prey fish in Lake Ontario. Invasive species, piscivory, and declines in native benthic invertebrates are likely important drivers of slimy sculpin population dynamics.

Lake Ontario

Evaluation of offshore stocking of Lake Trout in Lake Ontario

Restoration stocking of hatchery-reared lake trout Salvelinus namaycush has occurred in Lake Ontario since 1973. In U.S. waters, fish stocked through 1990 survived well and built a large adult population. Survival of yearlings stocked from shore declined during 1990–1995, and adult numbers fell during 1998–2005. Offshore stocking of lake trout was initiated in the late 1990s in response to its successful mitigation of predation losses to double-crested cormorants Phalacrocorax auritus and the results of earlier studies that suggested it would enhance survival in some cases. The current study was designed to test the relative effectiveness of three stocking methods at a time when poststocking survival for lake trout was quite low and losses due to fish predators was a suspected factor. The stocking methods tested during 2000–2002 included May offshore, May onshore, and June onshore. Visual observations during nearshore stockings and hydroacoustic observations of offshore stockings indicated that release methods were not a direct cause of fish mortality. Experimental stockings were replicated for 3 years at one site in the southwest and for 2 years at one site in the southeast. Offshore releases used a landing craft to transport hatchery trucks from 3 to 6 km offshore out to 55–60-m-deep water. For the southwest site, offshore stocking significantly enhanced poststocking survival. Among the three methods, survival ratios were 1.74 : 1.00 : 1.02 (May offshore : May onshore : June onshore). Although not statistically significant owing to the small samples, the trends were similar for the southeast site, with survival ratios of 1.67 : 1.00 : 0.72. Consistent trends across years and sites indicated that offshore stocking of yearling lake trout during 2000–2002 provided nearly a twofold enhancement in survival; however, this increase does not appear to be great enough to achieve the 12-fold enhancement necessary to return population abundance to restoration targets.

North American Journal of Fisheries Management