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Spatio-temporal patterns of foraging behaviour in a wide-ranging seabird reveal the role of primary productivity in locating prey

机译:广泛的海鸟中觅食行为的时空模式揭示了初级生产力在定位猎物中的作用

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摘要

Predicting the distribution and behaviour of animals is a fundamental objective in ecology and a cornerstone of conservation biology. Modelling the distribution of ocean-faring species like seabirds remains a significant challenge due to ocean dynamics, colony-specific effects and the vast ranges seabirds can cover. We used a spatial and behavioural approach to model the distribution of the Manx shearwater Puffinus puffinus, a pelagic, central-place forager that can cover great distances while foraging. GPS data from birds tagged in 2 colonies over 3 yr were modelled with a range of environmental predictors of marine productivity. For both colonies, transitions to foraging behaviour correlated with chlorophyll a, and the distribution of foraging behaviour was also associated with areas of high chlorophyll a concentration in coastal but not offshore areas for one colony. Furthermore, there was evidence for colony differences in habitat use, prevalence of nocturnal foraging, and for some competitive exclusion on foraging grounds, even though the colonies were 170 km apart. Despite the extensive dataset, our models had modest predictive power, which we suggest can probably only be improved by including biotic interactions, including more direct measures of food resource distribution. Our results highlight the importance of including spatial complexity and data from multiple sites when predicting the distribution of wide-ranging predators, because patterns of distribution and habitat use likely differ across the range of a population.
机译:预测动物的分布和行为是生态学和保护生物学的基石的基本目标。建模海鸟等海洋钓鱼物种的分布仍然是由于海洋动力学,殖民地特定效果和广大范围可以覆盖的挑战。我们使用了一种空间和行为方法来模拟Manx Shearwater Puffinus Paffinus的分布,这是一个古典,中央觅食,在觅食时可以覆盖距离。来自3年超过3年的2个菌落的鸟类的GPS数据被建模,这是一系列海洋生产力的环境预测因子。对于殖民地,与叶绿素A相关的觅食行为的过渡以及觅食行为的分布也与沿海,但不是一个殖民地的近海地区的高叶绿素A浓度的区域有关。此外,栖息地使用的殖民地差异有证据,夜间觅食的普遍性以及一些竞争排斥的觅食地,即使殖民地相隔170公里。尽管数据集很广泛,但我们的型号具有适度的预测力,我们建议只能通过包括生物互动,包括更直接的食品资源分布措施。我们的结果突出了在预测广大捕食者的分布时包括来自多个地点的空间复杂性和数据的重要性,因为分配模式和栖息地在人口范围内可能不同。

著录项

  • 来源
    《Marine ecology progress series》 |2020年第30期|175-188|共14页
  • 作者单位

    Univ Coll Dublin Sch Biol & Environm Sci Dublin D04 N2E5 Ireland|Univ Coll Dublin Earth Inst Dublin D04 N2E5 Ireland|Univ Coll Cork Sch Biol Earth & Environm Sci Cork T23 TK30 Ireland;

    Univ Coll Cork Sch Biol Earth & Environm Sci Cork T23 TK30 Ireland|Washington State Univ Dept Math & Stat Washington WA 98686 USA;

    Univ Coll Cork Sch Biol Earth & Environm Sci Cork T23 TK30 Ireland|RSPB RSPB Ctr Conservat Sci Sandy SG19 2DL Beds England;

    Univ Coll Cork Sch Biol Earth & Environm Sci Cork T23 TK30 Ireland|Univ Calif Santa Barbara Marine Sci Inst Santa Barbara CA 93106 USA;

    Univ Coll Cork Sch Biol Earth & Environm Sci Cork T23 TK30 Ireland|Univ Coll Cork MaREI Ctr Environm Res Inst Cork P43 C573 Ireland;

    Univ Coll Cork Sch Biol Earth & Environm Sci Cork T23 TK30 Ireland|Univ Coll Cork MaREI Ctr Environm Res Inst Cork P43 C573 Ireland;

    Univ Coll Cork Sch Biol Earth & Environm Sci Cork T23 TK30 Ireland|Univ Coll Cork Environm Res Inst Lee Rd Cork T23 XE10 Ireland;

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

    Distribution; Foraging; Hidden Markov model; Manx shearwater; Puffinus puffinus; Productivity;

    机译:分布;觅食;隐藏的马尔可夫模型;曼克斯牧草;Puffinus puffinus;生产力;

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