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首页> 外文期刊>The Science of the Total Environment >Functional connectivity network between terrestrial and aquatic habitats by a generalist waterbird, and implications for biovectoring
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Functional connectivity network between terrestrial and aquatic habitats by a generalist waterbird, and implications for biovectoring

机译:通才水鸟在陆地和水生栖息地之间的功能连接网络及其对生物载体的影响

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摘要

Birds are vectors of dispersal of propagules of plants and other organisms including pathogens, as well as nutrients and contaminants. Thus, through their movements they create functional connectivity between habitat patches. Most studies on connectivity provided by animals to date have focused on movements within similar habitat types. However, some waterbirds regularly switch between terrestrial, coastal and freshwater habitats throughout their daily routines. Lesser black-backed gulls that overwinter in Andalusia use different habitat types for roosting and foraging. In order to reveal their potential role in biovectoring among habitats, we created an inter-habitat connectivity network based on GPS tracking data. We applied connectivity measures by considering frequently visited sites as nodes, and flights as links, to determine the strength of connections in the network between habitats, and identify functional units where connections are more likely to happen. We acquired data for 42 tagged individuals (from five breeding colonies), and identified 5676 direct flights that connected 37 nodes. These 37 sites were classified into seven habitat types: reservoirs, natural lakes, ports, coastal marshes, fish ponds, rubbish dumps and ricefields. The Donana ricefields acted as the central node in the network based on centrality measures. Furthermore, during the first half of winter when rice was harvested, ricefields were the most important habitat type in terms of total time spent. Overall, 90% of all direct flights between nodes were between rubbish dumps (for foraging) and roosts in other habitats, thereby connecting terrestrial and various wetland habitats. The strength of connections decreased between nodes as the distance between them increased, and was concentrated within ten independent spatial and functional units, especially between December and February. The pivotal role for ricefields and rubbish dumps in the network, and their high connectivity with aquatic habitats in general, have important implications for biovectoring into their surroundings.
机译:鸟类是植物和其他生物体(包括病原体)以及营养物质和污染物的繁殖体传播的媒介。因此,通过它们的运动,它们在栖息地斑块之间建立了功能连接。迄今为止,有关动物的连通性的大多数研究都集中在类似栖息地类型内的运动上。但是,有些水鸟在日常活动中会定期在陆地,沿海和淡水栖息地之间切换。在安达卢西亚越冬的黑背黑海鸥使用不同的栖息地类型进行栖息和觅食。为了揭示它们在生境之间生物矢量化中的潜在作用,我们基于GPS跟踪数据创建了一个生境间连接网络。我们通过将经常访问的站点视为节点,将航班作为链接来应用连接性度量,以确定栖息地之间网络之间的连接强度,并确定更可能发生连接的功能单元。我们获取了来自5个繁殖地的42个带标签个体的数据,并确定了5676条直航,这些直航连接了37个节点。这37个地点分为7种栖息地类型:水库,天然湖泊,港口,沿海沼泽,鱼塘,垃圾场和稻田。基于集中度度量,Donana稻田充当了网络的中心节点。此外,就收获的总时间而言,在冬季上半年收获稻米时,稻田是最重要的栖息地类型。总体而言,节点之间所有直接飞行的90%位于其他生境中的垃圾堆(用于觅食)和栖息地之间,从而将陆地和各种湿地生境连接起来。节点之间的连接强度随着节点之间距离的增加而降低,并集中在十个独立的空间和功能单元中,尤其是在十二月和二月之间。稻田和垃圾场在网络中的关键作用以及它们与一般水生生境的高度连通性,对将生物媒介引入周围环境具有重要意义。

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  • 来源
    《The Science of the Total Environment》 |2020年第25期|135886.1-135886.10|共10页
  • 作者单位

    Department of Wetland Ecology Estacion Biologica de Donana EBD-CSIC Americo Vespucio 26 41092 Sevilla Spain;

    Department of Aquatic Ecology Netherlands Institute of Ecology (NIOO-KNAW) Droevendaalsesteeg 10 6708 PB Wageningen the Netherlands;

    Theoretical and Computational Ecology. Institute for Biodiversity and Ecosystem Dynamics (IBED) University of Amsterdam PO Box 94240 1090 CE Amsterdam the Netherlands;

    British Trust for Ornithology The Nunnery. Thetford Norfolk 1P24 2PU UK;

    Terrestrial Ecology Unit (TEREC) Ghent University. K.L Ledeganckstraat 35 9000 Ghent Belgium Behavioural Ecology and Ecophysiology group. University of Antwerp Universiteitsplein 1 2610 Antwerp Belgium;

    COS Department Netherlands Institute for Sea Research P.O. Box 59 1790 AB Den Burg Texel the Netherlands Utrecht University the Netherlands;

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

    CPS tracking; Laws fuscus; Landfills; Movement ecology; Network analysis; Wetlands;

    机译:CPS跟踪;法律重点堆填区;运动生态学;网络分析;湿地;

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