A management-scale investigation of consistent individual differences in behaviour and trapping bias in sea lamprey (Petromyzon marinus)

Author:

Holub Rachel1,Bravener Gale2,McLaughlin Robert1

Affiliation:

1. Department of Integrative Biology, University of Guelph, 50 Stone Road East, Guelph, ON N1G 2W1, Canada.

2. Sea Lamprey Control Centre, Fisheries and Oceans Canada, 1219 Queen Street East, Sault Ste. Marie, ON P6A 2E5, Canada.

Abstract

The sea lamprey (Petromyzon marinus) is invasive in the Laurentian Great Lakes. Trapping in large rivers could suppress sea lamprey recruitment by removing migrating adults prior to spawning. Currently, the proportion of sea lamprey trapped (efficiency) is too low for control purposes, possibly because trapping is biased toward certain behavioural types. We tested if individual differences in time to enter a novel environment (risk-taking) and proportion of time moving (activity) under standardized laboratory conditions were correlated with time to encounter and enter a trap in the field. 638 sea lamprey were tagged, assessed for risk-taking and activity in sequential trials, and released in the river to be trapped. In the laboratory, individuals differed consistently in risk-taking and activity behaviours, and more active individuals entered a simulated trap sooner than less active individuals. In the field, however, the times to first trap encounter, and capture in a trap, were not correlated with risk-taking or activity. Our study provides a novel demonstration of how patterns from small-scale behavioural studies may not extend to management-scale applications.

Publisher

Canadian Science Publishing

Subject

Aquatic Science,Ecology, Evolution, Behavior and Systematics

Reference76 articles.

1. Applegate, V., and Smith, B. 1950. Sea lamprey spawning runs in the Great Lakes, 1950. Special Scientific Report: Fisheries No. 61. United States Department of the Interior, Fish and Wildlife Service, Washington, D.C.

2. The Sea Lamprey

3. Behavioral responses of sea lamprey (Petromyzon marinus) to a putative alarm cue derived from conspecific and heterospecific sources

4. Fitting Linear Mixed-Effects Models Usinglme4

5. INDIVIDUAL DIFFERENCES IN ACTIVITY AND EXPLORATION INFLUENCE LEADERSHIP IN PAIRS OF FORAGING ZEBRA FINCHES

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