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首页> 外文期刊>Marine ecology progress series >Variable utilization of shelf break-associated habitats by chick-brooding rhinoceros auklets in the California Current System
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Variable utilization of shelf break-associated habitats by chick-brooding rhinoceros auklets in the California Current System

机译:加利福尼亚州现行系统中由雏鸟孵化的犀牛小品对与架子破坏相关的生境的可变利用

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Identifying frequently complex and dynamic spatial distributions of marine predators via the modeling of at-sea observations can be inherently challenging, especially when attempting to predict habitats of specific populations. Remotely-sensed tracking devices provide a viable alternative way to gather this information. We collected fine-scale spatiotemporal movement data for a small seabird, the rhinoceros auklet Cerorhinca monocerata, in the California Current System. Chick-brooding adults nesting on Southeast Farallon Island were outfitted with GPS loggers during the 2015 and 2016 breeding seasons (n = 15). Along with basic movement parameters, kernel density and residence time analyses were conducted to characterize at-sea distribution and identify areas of intensive use. Binomial generalized linear mixed modeling (GLMM) was used to assess foraging habitat. We found a greater utilization of areas beyond the shelf break than predicted by previous distributional models based on at-sea censuses. Interannual variation was evident, with relatively more outer break foraging in 2015 and relatively more shelf and inner break exploitation in 2016, although birds likely use the same habitat intrannually for self- and chick-provisioning. Prey availability and local oceanographic conditions may have influenced foraging decisions, with rockfish Sebastes spp. abundances and sub-mesoscale sea surface temperature (SST) fronts potentially acting as mediating factors. Results of mixed modeling highlighted a composite 3-way interaction between environmental variables facilitating auklet behavioral state switching, with an additional non-linear SST term being significant. Overall, foraging effort within the regional shelf break system appears to be variable at fine spatial scales depending on concomitant oceanographic conditions and related resource dynamics.
机译:通过对海上观测进行建模来识别海洋捕食者的频繁复杂和动态的空间分布可能具有内在的挑战,特别是在尝试预测特定种群的栖息地时。遥感跟踪设备提供了一种可行的替代方法来收集此信息。我们收集了加利福尼亚现行系统中小海鸟犀金乌鸦Cerorhinca monocerata的精细时空运动数据。在2015年和2016年的繁殖季节(n = 15),在东南法拉隆岛上筑巢的雏鸟成虫配备了GPS记录仪。除基本运动参数外,还进行了籽粒密度和停留时间分析,以表征海上分布并确定密集使用区域。二项式广义线性混合建模(GLMM)用于评估觅食栖息地。我们发现,比以前基于海上普查的分布模型所预测的,货架期以外的区域的利用率更高。年度间变化是明显的,尽管鸟类可能在内部使用相同的生境进行自我和雏鸡供应,但2015年的外部休息觅食相对较多,2016年的架子和内部休息采食相对较多。猎物Sebastes spp的猎物可用性和当地海洋条件可能会影响觅食决策。丰度和亚中尺度海表温度(SST)前沿可能充当中介因素。混合建模的结果突出显示了环境变量之间的复合3向交互作用,有利于Auklet行为状态切换,另外还有一个重要的非线性SST项。总体而言,区域搁板休息系统内的觅食工作似乎在精细的空间尺度上是可变的,这取决于随之而来的海洋学条件和相关的资源动态。

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