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首页> 外文期刊>Scientific reports. >Environmental factors and river network position allow prediction of benthic community assemblies: A model of nematode metacommunities
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Environmental factors and river network position allow prediction of benthic community assemblies: A model of nematode metacommunities

机译:环境因素和河流网络职位允许预测底栖社区组装:新线虫MetACAMENCITION的模型

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The field of metacommunity studies is growing rapidly, including recent applications to river networks. Most of these studies have targeted a single river network but whether their findings are relevant to other river systems is unknown. This study investigated the influence of environmental, spatial and temporal parameters on the community structure of nematodes in the river networks of the Elbe and Rhine. We asked whether the variance in community structure was better explained by spatial variables representing the watercourse than by overland distances. After determining the patterns in the Elbe river network, we tested whether they also explained the Rhine data. The Elbe data were evaluated using a boosted regression tree analysis. The predictive ability of the model was then assessed using the Rhine data. In addition to strong temporal dynamics, environmental factors were more important than spatial factors in structuring riverine nematode communities. Community structure was more strongly influenced by watercourse than by Euclidean distances. Application of the model's predictions to the Rhine data correlated significantly with field observations. Our model shows that the consequences of changes in environmental factors or habitat connectivity for aquatic communities across different river networks are quantifiable.
机译:Metacommunity研究领域正在迅速增长,包括最近河流网络的应用。这些研究中的大多数都是针对单一的河流网络,但他们的发现是否与其他河流系统有关。本研究调查了环境,空间和时间参数对易北河网络中线虫社区结构的影响。我们询问社区结构的方差是否最好通过代表水道的空间变量来解释而不是陆地距离。在确定易北河网络中的模式后,我们测试了它们是否也解释了莱茵河数据。使用升压回归树分析评估ELBE数据。然后使用莱茵河数据评估模型的预测能力。除了强劲的时间动态之外,环境因素还比构建河滨线陶器社区的空间因素更重要。社区结构受到水道的影响比欧几里德距离更强烈。将模型的预测应用于莱茵河数据,与现场观察有显着相关。我们的模型表明,不同河流网络中的环境因素或栖息地连通性变化的后果是量化的。

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