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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Do all roads lead to Rome? Exploring community trajectories in response to anthropogenic salinization and dilution of rivers
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Do all roads lead to Rome? Exploring community trajectories in response to anthropogenic salinization and dilution of rivers

机译:所有的道路都通往罗马吗? 探索社区轨迹以应对人为盐渍化和河流稀释

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摘要

Abiotic stress shapes how communities assemble and support ecological functions. However, it remains unclear whether artificially increasing or decreasing stress levels would lead to communities assembling predictably along a single axis of variation or along multiple context-dependent trajectories of change. In response to stress intensity alterations, we hypothesize that a single trajectory of change occurs when trait-based assembly prevails, while multiple trajectories of change arise when dispersal-related processes modify colonization and trait-filtering dynamics. Hem, we tested these hypotheses using aquatic macroinvertebrates from rivers exposed to gradients of natural salinity and artificially diluted or salinized ion contents. Our results showed that trait-filtering was important in driving community assembly in natural and diluted rivers, while dispersal-related processes seemed to play a relevant role in response to salinization. Salinized rivers showed novel communities with different trait composition, while natural and diluted communities exhibited similar taxonomic and trait compositional patterns along the conductivity gradient. Our findings suggest that the artificial modification of chemical stressors can result in different biological communities, depending on the direction of the change (salinization or dilution), with trait-filtering, and organism dispersal and colonization dynamics having differential roles in community assembly. The approach presented here provides both empirical and conceptual insights that can help in anticipating the ecological effects of global change, especially for those stressors with both natural and anthropogenic origins.
机译:非生物应激形状社区如何组装和支持生态功能。然而,仍然不明确于人工增加或降低的应力水平将导致沿着单个变化轴或沿着多种上下文相关的改变轨迹组装的社区。响应于应力强度改变,我们假设当基于特征的组件占上风时,发生单个变化轨迹,而当分散相关的过程改变定子和特质过滤动态时出现多个变化轨迹。下摆,我们使用从暴露于天然盐度梯度和人工稀释的或盐化离子含量的河流的水生门椎间体测试这些假设。我们的研究结果表明,在自然和稀释的河流中驾驶社区组装的特质过滤是很重要的,而分散相关的过程似乎在妥协症化时发挥相关作用。盐渍化的河流展示了具有不同特征组成的新界社区,而自然和稀释的社区沿着电导率梯度表现出类似的分类和特征组成模式。我们的研究结果表明,化学压力源的人工改性可导致不同的生物群群,这取决于变化(盐渍化或稀释)的方向,具有特质过滤,以及在社区组装中具有差异作用的生物分散和定殖动力学。这里提出的方法提供了有助于预测全球变化的生态影响的经验和概念见解,特别是对于那些具有天然和人为起源的这些压力源。

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