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Resistance of aquatic insects to a low-flow disturbance: Exploring a trait-based approach

机译:水生昆虫对低流量干扰的抵抗力:探索基于特征的方法

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Low-flow disturbances are predicted to increase in frequency and intensity because of climate change and extensive human water withdrawal, but the effect of decreased flow on aquatic insect communities is not well understood. I explored the resistance of aquatic insects to reduced flow by creating an experimental low-flow disturbance that diverted ~40 to 80% of the water in 3 replicate streams for 2 summers. I sampled the aquatic insect community in control and treatment reaches before and during the 3-mo water diversions. I used a trait-based approach to analyze the data because traits have the potential to increase mechanistic understanding and predictive capabilities. The analysis focused on 6 traits: desiccation resistance, maximum crawling rate, armoring, size at maturity, rheophily, and habit. Community trait composition underwent strong seasonal shifts, but few consistent responses to reduced flow were observed. The 2 trait states that did appear to confer increased resistance were high crawling rate and armoring. These trait states can provide protection from predators. Thus, biotic interactions might be important during low-flow disturbance.
机译:预计由于气候变化和人类大量取水,低流量扰动的频率和强度会增加,但是人们对流量减少对水生昆虫群落的影响知之甚少。我通过创建实验性的低流量扰动来探索水生昆虫对减少流量的抵抗力,该扰动在两个夏季的3个重复流中将约40%至80%的水转移了。我在3个月内调水之前和期间对水生昆虫群落进行了控制和采样。我使用基于特征的方法来分析数据,因为特征具有增加机械理解和预测能力的潜力。该分析集中在6个特征上:抗干燥性,最大爬行速率,装甲,成熟时的大小,嗜性和习惯。社区性状组成经历了强烈的季节性变化,但是很少观察到对减少流量的一致反应。确实可以增加抵抗力的2个性状状态是高爬行速率和装甲。这些特质状态可以提供对天敌的保护。因此,在低流量扰动期间,生物相互作用可能很重要。

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