...
首页> 外文期刊>The Journal of Applied Ecology >Conserving pelagic habitats: Seascape modelling of an oceanic top predator
【24h】

Conserving pelagic habitats: Seascape modelling of an oceanic top predator

机译:保护远洋栖息地:海景造型一个海洋顶级捕食者

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Currently pelagic ecosystems are changing significantly due to multiple threats. An important management policy is to establish marine protected areas, until now overlooked due to the difficulty of declaring 'high seas' protected areas, obtaining long-term distribution data on indicator species and the dynamic nature of these ecosystems. 2.Within this framework, we developed predictive habitat suitability models of an oceanic predator, the vulnerable wandering albatross Diomedea exulans, in the highly dynamic Southern Ocean. Based on a long-term tracking database (1998-2008), we estimated three quantitative ecological indices that complementarily describe the hierarchical habitat use of the species at multiple spatial scales: where the species (i) spent more time (the seascape, based on the time spent per area), (ii) searched for prey (the foraging habitat, based on zones of increased foraging intensity using first passage time), and (iii) fed (the feeding habitat, based on prey capture data). 3.Predictive habitat models reasonably matched the observed distribution patterns and described albatross multi-scale habitat use as a hierarchical arrangement: albatrosses foraged over topographic features in subtropical waters, nested within the wider seascape due to the constraint imposed by the colony effect, whereas feeding occurred nested over the continental shelf and seamounts in areas of low oceanographic variability within the Polar Frontal Zone. 4.Within the current oceanographic conditions, the location of key pelagic habitats for albatrosses breeding in the southern Indian Ocean encompassed certain topographic features such as pelagic areas surrounding main breeding sites, seamounts and submarine mountain ranges. The placement of these pelagic hotspots depends on the current sea surface temperature conditions. 5.Synthesis and applications. The present study provides two key conservation and management tools. First, we provide the first map to support the development of a prospective network of priority conservation zones across the southern Indian Ocean based on habitat predictions of an oceanic indicator species. This could be used not only to support conservation of top predators but also the underlying biodiversity associated with pelagic key habitats. Secondly, the developed habitat modelling procedure is widely applicable and could be used to track changes in species distribution in both marine and terrestrial environments within the current global change scenario.
机译:目前深海生态系统正在改变由于多种威胁明显。重要的管理政策是建立海洋保护区,直到现在被忽视宣布“公海”的困难保护区,获得长期分布数据指标物种和动态特性这些生态系统。开发预测栖息地适宜性模型的海洋食肉动物,脆弱的游荡信天翁Diomedea exulans,高度动态南大洋。数据库(1998 - 2008),我们估计三个定量生态指数配套描述层次的栖息地使用在不同空间尺度上的物种:的物种(i)花了更多的时间(海景,基于时间单位面积),(2)寻找猎物(觅食生境,基于使用第一个区域觅食的增加强度通过时间),(3)美联储(喂养栖息地,基于猎物捕获数据)。3.观察到的分布模式和描述信天翁多尺度作为栖息地层次结构安排:信天翁采摘在亚热带水域地形特征,嵌套在更广泛的海景由于殖民地强加的约束效应,而喂养在大陆发生嵌套架子上海洋和海底山脉地区低在极地锋面可变性。4.关键远洋栖息地的位置信天翁育种在南部印度洋包含特定的地形等特性远洋主要繁殖地周围地区海山和海底山脉。放置这些远洋热点取决于当前海洋表面温度条件。5.提供了两个关键的保护和管理工具。未来网络的发展整个南部优先保护区域印度洋基于预测的栖息地海洋物种指标。只支持保护但顶级食肉动物也潜在的生物多样性相关远洋关键栖息地。生境建模过程被广泛适用可以用来跟踪变化的物种分布在海洋和陆地在当前全球环境变化场景。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号