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Headwater-river gradient: trait-based approaches show functional dissimilarities among tropical fish assemblages

机译:地下水梯度:基于特质的方法在热带鱼类组合中展示了功能性异化

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Traditionally, species richness and composition of freshwater communities are expected to change according to the structural variation from headwaters to river mouth. In the present study, we hypothesised that fish functional traits will respond to this gradient, leading to functional dissimilarities between fish assemblages of headwaters and those of rivers. We addressed the following questions: (1) which functional traits are present in fish assemblages of each habitat type; (2) which environmental factors determine the occurrence of fish functional traits; and (3) how functional traits are related to each environmental variable? Our findings showed dissimilarities between fish assemblages of headwaters and those of rivers, mainly driven by channel depth, channel width, water temperature, water turbidity and concentration of dissolved oxygen, whereas altitude, water temperature and pH were mainly correlated with variation within each habitat type. These results suggested that not only do the physical variables proposed in classical theory of the river-continuum concept follow the upstream-downstream gradient in structuring the functional organisation of fish assemblages, but that also physicochemical variables, such as turbidity and concentration of dissolved oxygen, display this trend in tropical river systems. Moreover, our results have given a first perspective on what kind of fish species and fish functional traits to expect in each habitat type and, consequently, along the headwater-river mouth gradient.
机译:传统上,预计淡水社区的物种丰富性和组成将根据从河口到河口的角度变化而改变。在本研究中,我们假设鱼类功能性状将对这种梯度作出反应,导致鱼组件与河流的鱼组合之间的功能异化。我们解决了以下问题:(1)每个栖息地类型的鱼组合中存在哪种功能性状; (2)哪些环境因素决定了鱼类功能性状的发生; (3)功能性状如何与每个环境变量有关?我们的研究结果表明,主要的河流和河流的鱼组合之间的不同,主要由通道深度,通道宽度,水温,水浊度和溶解氧浓度驱动,而海拔,水温和pH主要与每个栖息地的变化相关。这些结果表明,河流连续概念的经典理论中提出的物理变量不仅遵循构建鱼组合的功能组织的上游梯度,而且还有物理化学变量,如浊度和溶解氧的浓度,在热带河流系统中展示这一趋势。此外,我们的结果给出了一个关于在每个栖息地类型中预期的鱼类和鱼类功能性状的第一个视角,因此沿着沿着地图 - 河口梯度。

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