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首页> 外文期刊>River Research and Applications >Environmental and spatial drivers of oligochaeta metacommunities structure along the Paraguay-Parana fluvial system
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Environmental and spatial drivers of oligochaeta metacommunities structure along the Paraguay-Parana fluvial system

机译:沿着巴拉圭 - Parana博士系统的Oligochaeta MetaComencies结构的环境和空间司机

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The metacommunity theory is a framework that explains the interdependence of local factors and regional processes as community drivers. In rivers, it has been hypothesized that the metacommunity structure and the relative importance of dispersal and local environmental conditions may vary from headwaters toward lowlands. The aims of this study were (1) to analyze the benthic metacommunity structure along the longitudinal dimension of the Paraguay-Parana system, and (2) to assess the relative importance of dispersal (spatial structure) and niche-based processes as drivers of these structures. We used data of oligochaetes assemblages in the studied system and analyzed the Elements of Metacommunity Structure in different river sections. Moreover, we performed a variance partitioning analysis to determine the relative importance of spatial and environmental variables. In the upper section, we found a gradient structure (Gleasonian) and in the lower section we found random and quasi-Clementsian structures. Similarly, environmental variables were the main structuring factor in the upper section while spatial variables were more important in the delta. The present study provides evidence that metacommunity structure and the underlying mechanisms that shape it, change along the longitudinal dimension of a large South American River. However, we emphasize the necessity of further studies assessing other taxonomic groups and other large South American Rivers.
机译:MetaceAconity理论是一个框架,解释了当地因素和区域进程作为社区司机的相互依存。在河流中,已经假设了MetaComenity结构和分散和局部环境条件的相对重要性可能因朝向低地的兽空而变化。本研究的目的是(1)分析了沿着巴拉圭 - 帕拉帕系统的纵向尺寸的底栖地机构结构,(2)以评估分散(空间结构)和基于利基的过程作为这些的司机的相对重要性结构。我们在研究中使用了Oligochaetes组件的数据,并分析了不同河段中Metacommunity结构的元素。此外,我们进行了方差分区分析,以确定空间和环境变量的相对重要性。在上部,我们发现了一种梯度结构(gleasonian)和在下部我们发现随机和准折叠结构。同样,环境变量是上部的主要结构系数,而空间变量在三角洲更重要。本研究规定了Meta道结构和塑造它的潜在机制,沿着大型南美河流的纵向维度变化。然而,我们强调进一步研究评估其他分类群和其他大型南美河流的研究。

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