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首页> 外文期刊>Ecological Modelling >Quantitative food web modeling unravels the importance of the microphytobenthos-meiofauna pathway for a high trophic transfer by meiofauna in soft-bottom intertidal food webs
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Quantitative food web modeling unravels the importance of the microphytobenthos-meiofauna pathway for a high trophic transfer by meiofauna in soft-bottom intertidal food webs

机译:定量食品网造型不明显Meiofauna在软底部跨境食品网中的高营养途径途径的重要性

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摘要

Meiofauna are known to have an important role on many ecological processes, although, their role in food web dynamics is often poorly understood, partially as they have been an overlooked and under sampled organism group. Here, we used quantitative food web modeling to evaluate the trophic relationship between meiofauna and their food sources and how meiofauna can mediate the carbon flow to higher trophic levels in five contrasting soft-bottom intertidal habitats (including seagrass beds, mudflats and sandflats). Carbon flow networks were constructed using the linear inverse model-Markov chain Monte Carlo technique, with increased resolution of the meiofauna compartments (i.e. biomass and feeding ecology of the different trophic groups of meiofauna) compared to most previous modeling studies. These models highlighted that the flows between the highly productive microphytobenthos and the meiofauna compartments play an important role in transferring carbon to the higher trophic levels, typically more efficiently so than macrofauna. The pathway from microphytobenthos to meiofauna represented the largest flow in all habitats and resulted in high production of meiofauna independent of habitat. All trophic groups of meiofauna, except for selective deposit feeders, had a very high dependency on microphytobenthos. Selective deposit feeders relied instead on a wider range of food sources, with varying contributions of bacteria, microphytobenthos and sediment organic matter. Ecological network analyses (e.g. cycling, throughput and ascendency) of the modeled systems highlighted the close positive relationship between the food web efficiency and the assimilation of high-quality food sources by primary consumers, e.g. meiofauna and macrofauna. Large proportions of these flows can be attributed to trophic groups of meiofauna. The sensitivity of the network properties to the representation of meiofauna in the models leads to recommending a greater attention in ecological data monitoring and integrating meiofauna into food web models.
机译:众所周知,Meiofauna在许多生态过程中具有重要作用,尽管它们在食品Web动态中的作用通常很差,部分原样,因为它们是一个被忽视的生物组。在这里,我们使用定量食品网络模型来评估Meiofauna及其食物来源之间的繁殖关系以及Meiofauna如何在五个对比的软底栖息地(包括海草床,Mudflats和Sandflats)中将碳流介导到更高的营养水平。使用线性逆模型-Markov链蒙特卡罗技术构建碳流网络,与大多数以前的建模研究相比,Meiofauna隔间的分辨率增加了梅多芬纳仓的分辨率(即,不同营养的营养群的生物量)。这些模型突出显示,高效菌段和Meiofauna隔间之间的流动在将碳转移到更高的营养水平方面,通常比Macrofauna更有效地发挥着重要作用。 Microphytobenthos到Meiofauna的途径代表了所有栖息地的最大流量,导致高产的Meiofauna独立于栖息地。除了选择性沉积物外,所有冬季山脉群体均有较高的依赖性依赖性。选择性存款馈线依赖于更广泛的食物来源,具有不同的细菌,微蛋白和沉积物有机物的贡献。建模系统的生态网络分析(例如循环,吞吐量和上升)强调了食品网络效率与主要消费者的高质量食品来源之间的密切正面关系,例如,优质消费者。 Meiofauna和Macrofauna。这些流量的大量比例可归因于Meiofauna的营养团组。网络属性对模型中Meiofauna表示的敏感性导致了在生态数据监测和将Meiofauna集成到食品网络模型中更加重视。

著录项

  • 来源
    《Ecological Modelling》 |2020年第1期|共16页
  • 作者单位

    Univ La Rochelle Inst Littoral &

    Environm UMR 7266 Littoral Environm &

    Soc CNRS 2 Rue Olympe Gouges F-17000 La Rochelle France;

    Univ Caen Normandy IRD BOREA Ctr Natl Rech Sci CNRS MNHN UA SU F-14032 Caen France;

    Univ Caen Normandy IRD BOREA Ctr Natl Rech Sci CNRS MNHN UA SU F-14032 Caen France;

    Alfred Wegener Inst Wattenmeerstn Sylt Helmholtz Zentrum Polar &

    Meeresforsch Hafenstr 43 D-25992 List Auf Sylt Germany;

    US EPA Pacific Ecol Syst Div Ctr Publ Hlth &

    Environm Assessment Off Res &

    Dev Newport OR 97365 USA;

    Alfred Wegener Inst Helmholtz Ctr Polar &

    Marine Res Bremerhaven Germany;

    UPMC Univ Paris 06 Sorbonne Univ Lab Ecogeochim Environm Benth LECOB UMR 8222 Observ Oceanol CNRS F-66650 Banyuls Sur Mer France;

    Alfred Wegener Inst Wattenmeerstn Sylt Helmholtz Zentrum Polar &

    Meeresforsch Hafenstr 43 D-25992 List Auf Sylt Germany;

    Univ Laval Quebec Ocean Quebec City PQ Canada;

    Univ La Rochelle Inst Littoral &

    Environm UMR 7266 Littoral Environm &

    Soc CNRS 2 Rue Olympe Gouges F-17000 La Rochelle France;

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

    food web model; linear inverse model; meiofauna; microphytobenthos; stable isotope mixing models; intertidal habitats;

    机译:食物网型;线性逆模型;Meiofauna;瞳孔细胞疫苗;稳定同位素混合模型;跨境栖息地;

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