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A pilot study of hogfish (Lachnolaimus maximus Walbaum 1792) movement in the Conch Reef Research Only Area (northern Florida Keys)

机译:在海螺礁仅研究区(北佛罗里达礁岛)内的ho鱼(Lachnolaimus maximus Walbaum 1792)运动的初步研究

摘要

The largely sedentary behavior of many fishes on coral reefs is well established. Information on the movement behavior of individual fish, over fine temporal and spatialudscales, however, continues to be limited. It is precisely this type of information that is critical for evaluating the success of marine reserves designed for the conservation and/or management of vagile fishes. In this pilot study we surgically-tagged eight hogfishud(Lachnolaimus maximus Walbaum 1792) with coded-acoustic transmitters inside the Conch Reef Research Only Area (a no-take marine reserve) in the northern Florida KeysudNational Marine Sanctuary. Our primary objective was to characterize the movement of L. maximus across Conch Reef in the vicinity of the reserve. All fish were captured,udsurgically-tagged and released in situ during a saturation mission to the Aquarius Undersea Laboratory, which is located in the center of the reserve. Movement of taggedudL. maximus was recorded for up to 95 days by three acoustic receivers deployed on the seafloor. Results showed clear diel patterns in L. maximus activity and regular movementudamong the receivers was recorded for seven of the eight tagged fish. Fidelity of tagged fish to the area of release was high when calculated at the scale of days, while within-day fidelity was comparatively low when calculated at the scale of hours. While the number of fish departures from the array also varied, the majority of departures for seven of the eight fish did not exceed 1-hr (with the exception of one 47-day departure), suggesting that when departures occurred, the fish did not travel far. Future efforts will significantly expand the number of receivers at Conch Reef such that fish movement behavior relative to the reserve boundaries can be quantified with increased temporal and spatial resolution. (PDF contains 22 pages.)
机译:众所周知,许多鱼类在珊瑚礁上久坐不动。但是,关于单个鱼类在精细的时间和空间尺度上的运动行为的信息仍然受到限制。正是这类信息对于评估旨在保护和/或管理易变性鱼类的海洋保护区的成功至关重要。在这项先导研究中,我们在佛罗里达州北礁国家海洋保护区内的海螺礁仅研究区域(无捕捞的海洋保护区)内,对带有编码声发射器的八只猪ud鱼(Lachnolaimus maximus Walbaum 1792)进行了手术标记。我们的主要目标是表征保护区附近最大海豚跨海螺礁的运动。在对位于保护区中心的水瓶座海底实验室进行饱和任务期间,所有鱼均被捕获,经外科手术标记并原位释放。带标签的 udL的移动。由部署在海底的三个声学接收器记录的最大持续时间长达95天。结果表明,八头鱼中有七头鱼的活动规律清晰,规律。以天为单位计算时,带标签的鱼对释放区域的保真度较高,而以小时为单位计算时,日内保真度较低。虽然从鱼群出发的鱼的数量也有所不同,但八种鱼中有七种的大多数出鱼时间不超过1小时(一个47天的出鱼时间除外),这表明当发生鱼出鱼时,鱼没有远行。未来的工作将大大增加海螺礁的接收者数量,以便可以通过增加的时间和空间分辨率来量化相对于保护区边界的鱼类运动行为。 (PDF包含22页。)

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