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Behavioral responses of minke whales (Balaenoptera acutorostrata) to experimental fishing gear in a coastal environment
Authors:Brian W Kot  Richard Sears  Ayal Anis  Douglas P Nowacek  Jason Gedamke  Christopher D Marshall
Institution:1. Department of Marine Biology, Texas A&M University, Galveston, TX 77553, USA;2. Mingan Island Cetacean Study, Inc., Longue-Pointe-de-Mingan, Québec, Canada G0G 1V0;3. Department of Oceanography, Texas A&M University, College Station, TX 78433, USA;4. Department of Marine Sciences, Texas A&M University, Galveston, TX 77553, USA;5. Duke University Marine Lab, Beaufort, NC 28516, USA;6. National Oceanographic and Atmospheric Administration, Ocean Acoustics Program, Office of Science and Technology, National Marine Fisheries Service, Silver Spring, MD 20910, USA;7. Department of Wildlife and Fisheries Sciences, Texas A&M University, College Station, TX 78433, USA;1. Sitka Sound Science Center, 834 Lincoln St., Sitka, AK 99835, United States;2. Marine Physical Laboratory, Scripps Institution of Oceanography, San Diego, CA 92093-0205, United States;3. University of Alaska Southeast, 1332 Seward Ave., Sitka, AK 99835, United States;4. 111 Jamestown Dr., Sitka, AK 99835, United States;5. Alaska Longline Fishermen’s Association, Sitka, AK 99835, United States;1. Ghent University, Marine Biology Section, Ghent, Belgium;2. Sea Search Africa, Cape Town, South Africa;3. Mammal Research Institute, Department of Zoology and Entomology, University of Pretoria, Gauteng, South Africa;4. Centre Scientifique de Monaco (CSM), LIA-647 “BioSensib” CSM/CNRS, Monaco;5. Université de Strasbourg, IPHC, Strasbourg, France;6. CNRS UMR7178, Strasbourg, France
Abstract:Whale entanglement in fishing gear is a global problem, and underwater ropes associated with this gear are often the cause of injuries that can lead to fatalities. Minke whales (Balaenoptera acutorostrata) are especially at risk because they are relatively small, widely distributed, and often occur in coastal habitats where many types of fishing gear are deployed. It is unknown whether minke whales can detect and avoid ropes associated with fishing gear. To address this question we conducted a series of field experiments to measure behavioral responses of nearshore minke whales to underwater ropes simulating crab and whelk fishing gear. We also investigated correlations between whale behaviors and specific environmental variables. Our methods involved both visual and acoustic monitoring of whale behaviors near experimental ropes and buoys of different colors. A remote sensing system was also used to simultaneously monitor oceanographic conditions, record underwater sounds, and capture underwater video of whales swimming near ropes. Minke whales (N = 42) decreased their swimming velocity and altered their bearing when passing near experimental ropes, especially during trials with white and black ropes. Some minkes (N = 7) also altered their underwater swimming trajectories when passing near ropes, and often appeared to produce low-frequency vocalizations. Collectively this information provides strong evidence that minke whales detect and react behaviorally to the presence of underwater ropes that simulate fishing gear in nearshore areas. We hypothesize that visual and perhaps passive acoustic sensory abilities may be the mechanisms behind these rope avoidance behaviors. We recommend that high contrast ropes (white and black) be used with fishing gear in coastal areas to help minimize entanglements of minke and perhaps other whale species.
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