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Niche differentiation among invasive Ponto-Caspian Chelicorophium species (Crustacea, Amphipoda, Corophiidae) by food particle size

机译:侵入性Ponto-Caspian Chelicorophium(甲壳成分,Amphipoda,Corophiidae)之间的利基差异化食品粒度

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摘要

After Chelicorophium curvispinum, two other Ponto-Caspian tube-dwelling, filter-feeding amphipod species (Chelicorophium robustum and Chelicorophium sowinskyi) have colonized several catchments in Central and Western Europe in recent decades. To reveal the mechanism of niche differentiation among them, we measured the mesh sizes of their filtering apparatus and analyzed multi-habitat sampling data from the River Danube using RDA-based variance partitioning between environmental and spatial explanatory variables. Morphometric data showed a clear differentiation among the species by filter mesh size (C. curvispinum & C. robustum & C. sowinskyi). Field data also indicated the relevance of suspended matter; however, the mere quantity of suspended solids included in the analysis could not explain the abundance patterns effectively. Current velocity, substrate types, and total nitrogen content also had a non-negligible effect; however, their role in the niche differentiation of the species is not evident. In summary, differences in their filter mesh sizes indicate a niche differentiation by food particle size among the invasive Chelicorophium species, allowing their stable coexistence given sufficient size variability in their food source. Consequently, the two recent invaders increase the effectiveness of resource utilization, resulting in a more intensive benthic-pelagic coupling in the colonized ecosystems.
机译:在Chelicorophium Curvispinum之后,另外两种Ponto-Caspian管居住,喂食Amphipod物种(Chelicorophium Robustum和Chelicorophium Sowinskyi)近几十年来在中欧和西欧殖民地。为了揭示它们之间的利基分化的机制,我们测量了它们的滤波装置的网格尺寸,并使用基于RDA的方差分配在环境和空间解释变量之间分析了来自河流多瑙河的多栖所采样数据。形态测量数据显示通过过滤网眼尺寸(C. curvispinum& C. Robustum& Gt; C. Sowinskyi),在物种中显示出明显的分化。现场数据还表明了暂停物质的相关性;然而,分析中包括的仅包括在分析中的悬浮固体不能有效地解释丰度模式。目前的速度,底物类型和总氮含量也具有不可忽略的效果;然而,它们在物种的利基分化中的作用并不明显。总之,其滤光片网格尺寸的差异表明侵入性肠道物种中的食物粒度分化,允许其稳定的共存在其食物来源中具有足够的尺寸变异性。因此,最近的两个入侵者提高了资源利用的有效性,从而在殖民化生态系统中产生更密集的弯曲脑袋偶联。

著录项

  • 来源
    《Aquatic Ecology》 |2018年第3期|共12页
  • 作者单位

    MTA Ctr Ecol Res GINOP Sustainable Ecosyst Grp Klebelsberg Kuno Utca 3 H-8237 Tihany Hungary;

    BOKU Univ Nat Resources &

    Appl Life Sci Inst Hydrobiol &

    Water Management Dept Water Atmosphere &

    Environm Gregor Mendel Str 33 A-1180 Vienna Austria;

    BOKU Univ Nat Resources &

    Appl Life Sci Inst Hydrobiol &

    Water Management Dept Water Atmosphere &

    Environm Gregor Mendel Str 33 A-1180 Vienna Austria;

    Info Fauna CSCF Passage Maximilien de Meuron 6 CH-2000 Neuchatel Switzerland;

    BOKU Univ Nat Resources &

    Appl Life Sci Inst Hydrobiol &

    Water Management Dept Water Atmosphere &

    Environm Gregor Mendel Str 33 A-1180 Vienna Austria;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水生生物学;
  • 关键词

    Benthic-pelagic coupling; Filter-feeding; Invasion impact; River Danube; Suspended matter;

    机译:底栖耦合;筛选;入侵影响;河多瑙河;暂停物质;
  • 入库时间 2022-08-20 01:18:37

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