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Mayfly and stonefly species traits and species composition reflect hydrological regulation: a meta-analysis

机译:蝇和石蝇的物种特征和物种组成反映了水文调控:一项荟萃分析

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Species traits have been identified as a component of biodiversity that is worthy of investigation as a tool for exploring ecological effects of anthropogenic disturbances. We used metaanalysis to show how selected species traits of Ephemeroptera and Plecoptera can be used to examine the ecological effects of flow and water-level regulation in freshwater ecosystems used for hydropower generation. We hypothesized that hydrological regulation would favor an opportunistic ecological strategy and bring about increased similarity in species composition across samples. We found higher reproductive capacity, faster life cycles, and a tendency toward a changed composition of functional feeding groups in lotic stonefly assemblages in response to hydrological regulation. However, the effects of hydrological regulation on mayfly species traits and lentic stonefly species traits were limited. We found lower species turnover in mayflies and stoneflies from regulated than from unregulated lotic and lentic sites, a result suggesting selection of a subset of mayflies and stoneflies from the regional species pool by flow and water-level regulation. The limited support for our predictions probably reflects the comparatively low diversity of aquatic insect species in Norwegian freshwater ecosystems for biogeographical and historical reasons, phenotypic plasticity of the insects' life histories and feeding habits, low trait diversity, trade-offs among species traits in a marginal region, restrictions to trait combinations and, perhaps, random extinction of mayflies and stoneflies caused by hydrological regulation. We advocate inclusion of speciestrait variables that may affect ecosystem-level ecological processes in environmental assessment studies because a better understanding of trait-mediated ecological functioning should facilitate assessment of the ecological consequences of anthropogenic perturbations of freshwater ecosystems.
机译:物种特征已被确定为生物多样性的组成部分,值得探讨,作为探索人为干扰的生态影响的工具。我们使用荟萃分析显示了phe蝶和鞘翅目的选定物种性状如何可用于检查用于水力发电的淡水生态系统中流量和水位调节的生态效应。我们假设水文法规将有利于机会主义的生态策略,并导致样本之间物种组成的相似性增加。我们发现较高的繁殖能力,更快的生命周期,以及响应水文调节,在抽水石蝇组合中功能性进食基团的组成发生变化的趋势。但是,水文调节对may蝇和片状石蝇的影响有限。我们发现,受管制的may蝇和石蝇的物种转换率低于不受管制的虱子和扁豆站点,这表明通过流量和水位调节从区域物种库中选择了一部分may蝇和石蝇。由于生物学地理和历史原因,挪威淡水生态系统中水生昆虫物种的多样性相对较低,该昆虫的生活史和摄食习惯的表型可塑性,低性状多样性,在一个物种中各性状之间的权衡取舍,对我们的预测的支持有限。边缘地区,对性状组合的限制,以及由于水文法规而可能导致的五蝇和石蝇的随机灭绝。我们主张在环境评估研究中纳入可能影响生态系统级生态过程的物种特征变量,因为对特征介导的生态功能的更好理解应该有助于评估淡水生态系统人为干扰的生态后果。

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