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Spatial Dynamics and Expanded Vertical Niche of Blue Sharks in Oceanographic Fronts Reveal Habitat Targets for Conservation

机译:空间动态和蓝鲨鱼在海洋战线的扩大的竖直利基显示保护人居目标

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摘要

Dramatic population declines among species of pelagic shark as a result of overfishing have been reported, with some species now at a fraction of their historical biomass. Advanced telemetry techniques enable tracking of spatial dynamics and behaviour, providing fundamental information on habitat preferences of threatened species to aid conservation. We tracked movements of the highest pelagic fisheries by-catch species, the blue shark Prionace glauca, in the North-east Atlantic using pop-off satellite-linked archival tags to determine the degree of space use linked to habitat and to examine vertical niche. Overall, blue sharks moved south-west of tagging sites (English Channel; southern Portugal), exhibiting pronounced site fidelity correlated with localized productive frontal areas, with estimated space-use patterns being significantly different from that of random walks. Tracked female sharks displayed behavioural variability in diel depth preferences, both within and between individuals. Diel depth use ranged from normal DVM (nDVM; dawn descent, dusk ascent), to reverse DVM (rDVM; dawn ascent, dusk descent), to behavioural patterns where no diel differences were apparent. Results showed that blue sharks occupy some of the most productive marine zones for extended periods and structure diel activity patterns across multiple spatio-temporal scales in response to particular habitat types. In so doing, sharks occupied an extraordinarily broad vertical depth range for their size (1.0–2.0 m fork length), from the surface into the bathypelagic realm (max. dive depth, 1160 m). The space-use patterns of blue sharks indicated they spend much of the time in areas where pelagic longlining activities are often highest, and in depth zones where these fisheries particularly target other species, which could account for the rapid declines recently reported for blue sharks in many parts of the world's oceans. Our results provide habitat targets for blue shark conservation that may also be relevant to other pelagic species.
机译:由于报告了过度捕捞,由于过度捕捞,因此,目前历史生物量的一小部分,戏剧性鲨鱼种群在山上鲨鱼种群下降。高级遥测技术能够跟踪空间动力学和行为,提供有关威胁物种的栖息地偏好,以援助保护的基本信息。我们在东北大西洋的蓝鲨普罗西地区逐个捕获物种的动作,使用了弹出卫星连接的档案标签,以确定与栖息地相关的空间程度,并检查垂直的利基。总体而言,蓝鲨在标记网站(英语频道;南部)的西南部移动,展示与局部生产型正面区域相关的明显的网站富力,估计的空间使用模式与随机散步的显着不同。跟踪的女性鲨鱼在个人内部和之间的Diel深度偏好中显示了行为可变性。 Diel Depte使用范围从普通DVM(NDVM;黎明下降,黄昏时,黄昏时),反向DVM(RDVM;黎明上升,黄昏血症),到没有DIEL差异的行为模式显而易见。结果表明,蓝色鲨鱼占据了一些最富有成效的海区,延长了一段时间,以及响应于特定栖息地类型的多种时空尺度的结构Diel活动模式。这样做,鲨鱼占据了一个非常宽阔的垂直深度范围,尺寸(叉长度为1.0-2.0米叉长),从表面进入浴铝栏(最大潜水深度,1160米)。蓝色鲨鱼的空间使用模式表明他们在骨架龙头活动的往往是最高的地区的大部分时间,以及这些渔业特别靶向其他物种的深度区域,这可能考虑到最近为蓝鲨报告的快速下降世界上许多地区的海洋。我们的结果提供了蓝鲨保护的栖息地目标,也可能与其他胸腺物种相关。

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