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首页> 外文期刊>Marine ecology progress series >Deep danger: intra-specific predation risk influences habitat use and aggregation formation of juvenile lemon sharks Negaprion brevirostris
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Deep danger: intra-specific predation risk influences habitat use and aggregation formation of juvenile lemon sharks Negaprion brevirostris

机译:深层危险:种内捕食风险影响着幼体柠檬鲨的栖息地使用和聚集形成,Negaprion brevirostris

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摘要

Non-consumptive or risk effects imposed by predators can influence prey behaviour over different spatio-temporal scales. Prey vulnerability to predation can also be dependent on abiotic conditions, such as tidal height. We conducted direct field observations of juvenile lemon sharks Negaprion brevirostris in a tidally influenced mangrove-inlet. We also used acoustic tracking to determine the movement patterns of juvenile lemon sharks and their predators (sub-adult lemon sharks) across the tidal cycle. Results showed that greater numbers of juvenile lemon sharks used the mangrove-inlet for longer time periods at deeper and warmer high tide depths. This coincided with an increased presence of potential predators (sub-adult lemon sharks) in the surrounding areas. Furthermore, in accordance with body-size dependent anti-predatory investment, smaller juvenile lemon sharks visited the mangrove inlet more often, spent longer there and left latest on average. Our acoustic tracking data also revealed a tidally-influenced pattern, with both juvenile and sub-adult lemon sharks detected at locations inshore over the high tide and offshore during the low tide. We concluded that the mangrove lake served as a 'refuge' for juvenile lemon sharks over the high tide, providing safe habitat when inshore areas become accessible to large predators, such as sub-adult lemon sharks. We suggest that these decisions are updated through ontogeny and also with daily fluctuations in abiotic factors, such as water depth. This study provides evidence for how intra-specific predator-prey interactions in a top predator species influence juvenile habitat selection, with potential implications for population structure and regulation.
机译:捕食者施加的非消耗性或风险效应会影响不同时空尺度上的猎物行为。猎物的捕食脆弱性还可能取决于非生物条件,例如潮高。我们在经过潮汐影响的红树林入口中对幼年柠檬鲨Negaprion brevirostris进行了直接现场观察。我们还使用声学跟踪来确定青少年柠檬鲨及其捕食者(成年柠檬鲨)在潮汐周期中的运动方式。结果表明,在潮汐更深,温度更高的时候,越来越多的幼年柠檬鲨使用红树林入口。这与周围地区潜在捕食者(亚成年柠檬鲨)的存在增加有关。此外,根据对体型大小的反掠夺性投资,较小的幼年柠檬鲨更多地访问红树林入口,在那里停留时间更长,平均停留时间最晚。我们的声学跟踪数据还揭示了一种潮汐影响的模式,在涨潮时沿岸和退潮时沿岸都发现了少年和亚成年柠檬鲨。我们得出的结论是,红树林湖是涨潮时幼体柠檬鲨的“避难所”,当大型捕食者(例如亚成年柠檬鲨)可以近海进入时,红树林湖便提供了安全的栖息地。我们建议通过个体发育以及非生物因素(例如水深)的每日波动来更新这些决策。这项研究提供了证据,说明顶级捕食物种中的种内捕食者与猎物之间的相互作用如何影响少年生境的选择,并对种群结构和调控产生潜在影响。

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  • 来源
    《Marine ecology progress series》 |2012年第20期|p.279-291|共13页
  • 作者单位

    Institute for Integrative and Comparative Biology, University of Leeds, L.C. Miall Building, Leeds LS2 9JT, UK,Bimini Biological Field Station, 15 Elizabeth Drive, South Bimini, Bahamas,School of Earth and Ocean Sciences, Cardiff University, Cardiff CF10 3XQ, UK;

    Bimini Biological Field Station, 15 Elizabeth Drive, South Bimini, Bahamas,Division of Marine Biology and Fisheries, Rosenstiel School of Marine and Atmospheric Science,4600 Rickenbacker Causeway, Miami, Florida 33149, USA;

    Bimini Biological Field Station, 15 Elizabeth Drive, South Bimini, Bahamas,Department of Biology, Rollins College, Winter Park Florida 32789, USA;

    Bimini Biological Field Station, 15 Elizabeth Drive, South Bimini, Bahamas,School of Earth and Ocean Sciences, Cardiff University, Cardiff CF10 3XQ, UK;

    Bimini Biological Field Station, 15 Elizabeth Drive, South Bimini, Bahamas;

    Flinders University, Stuart Drive, Bedford Park, South Australia 5042, Australia;

    Department of Biology and Ecology of Fishes, Leibniz-Institute of Freshwater Ecology and Inland Fisheries, Muggelseedamm 310,12587 Berlin, Germany,Department of Biology and Ecology of Fishes, Humboldt-University of Berlin, Philippstrasse 13, 10115 Berlin, Germany;

    Marine Biological Association of the United Kingdom, The Laboratory, Citadel Hill, Plymouth PL1 2PB, UK,Marine Biology and Ecology Research Centre, School of Marine Science and Engineering, University of Plymouth,Drake Circus, Plymouth PL4 8AA, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    apex predator; cannibalism; elasmobranchs; refuge use; risk effects;

    机译:顶级掠食者;食人弹性分支;避难所风险影响;

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