首页> 外文期刊>The Canadian Field-Naturalist >Pacific Hagfish, Eptatretus stoutii, Spotted Ratfish, Hydrolagus colliei, and scavenger activity on tethered carrion in subtidal benthic communities off Western Vancouver Island
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Pacific Hagfish, Eptatretus stoutii, Spotted Ratfish, Hydrolagus colliei, and scavenger activity on tethered carrion in subtidal benthic communities off Western Vancouver Island

机译:西温哥华岛附近潮间带底栖动物群落中的太平洋Ha鱼,斑秃鱼,斑点鼠鱼,水lag牧羊犬和清除拴链腐肉的清除剂活动

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摘要

The influence of pelagic carrion food falls on marine benthic scavenging communities was investigated at two depths (10 m, 50 m) in Barkley Sound, west Vancouver Island, British Columbia from 12 May to 4 June, 2003. A remotely operated vehicle (ROV) equipped with video cameras was used to monitor anchored carrion (15 kg pig leg) during daylight and darkness. The videos were subsequently analyzed for species diversity, abundance and the intensity of scavenging. At 10 m, Redrock Crab (Cancer productus) and Kelp Greenling (Hexagrammos decagrammus) dominated, while at 50 m, Spot Shrimp (Pandalus plaryceros), Spotted Ratfish (Hydrolagus colliei) and Pacific Hagfish (Eptatretus stoutii) were the dominant species, most of which were nocturnal. Hagfish were the major consumers of the carrion and after 23 days, DO soft tissues remained at 50 m while 40% remained at 10 m. Within 24 hours of the carrion deployment, two of eleven ratfish succumbed, probably due to the direct clogging effects of hagfish mucus on the respiratory apparatus of the raffish. These field observations are consistent with laboratory results suggesting high efficacy of hagfish mucus in competitive interactions.
机译:2003年5月12日至6月4日,在不列颠哥伦比亚省西温哥华岛的巴克利海峡的两个深度(10 m,50 m)研究了浮游腐烂食物掉落对海洋底栖生物清除群落的影响。遥控车(ROV)装有摄像机的摄像机用于在日光和黑暗条件下监视固定的腐肉(15公斤猪腿)。随后对视频进行了分析,以了解物种多样性,丰度和清除强度。在10 m处,红岩蟹(Cancer productus)和海带绿灵(Hexagrammos decagrammus)占主导地位,而在50 m处,斑虾(Pandalus plaryceros),斑点鼠鱼(Hydrolagus colliei)和太平洋Pacific鱼(Eptatretus stoutii)是优势种,多数其中是夜间活动。 g鱼是腐肉的主要消费者,23天后,DO软组织保持在50 m,而40%保持在10 m。在腐肉展开后的24小时内,11条大鼠中的2条死了,这可能是由于ha鱼粘液对草鱼呼吸器官的直接堵塞作用所致。这些现场观察结果与实验室结果一致,表明ha鱼粘液在竞争性相互作用中具有很高的功效。

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