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首页> 外文期刊>The Science of the Total Environment >Multiple-stressor effects of dicyandiamide (DCD) and agricultural stressors on trait-based responses of stream benthic algal communities
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Multiple-stressor effects of dicyandiamide (DCD) and agricultural stressors on trait-based responses of stream benthic algal communities

机译:双氰胺(DCD)和农业胁迫源对河底海藻群落基于性状的响应的多重胁迫效应

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Agricultural practices often result in multiple stressors affecting stream ecosystems, and interacting stressors complicate environmental assessment and management of impacted streams. The nitrification inhibitor dicyandiamide (DCD) is used for nitrogen management on farmland. Effects of leached DCD on stream ecosystems are still largely unstudied, even though it could be relevant as a stressor on its own or in combination with other agricultural stressors. We conducted two experiments in 128 outdoor stream-fed mesocosms to assess stressor effects on biomass, cell density, taxon richness, evenness and functional trait composition of benthic algal communities. First, we examined responses to a wide DCD gradient (eight concentrations, 0-31 mg L-1) and two additional stressors, deposited line sediment (none, high) and nutrient enrichment (ambient, enriched). Second, we determined algal responses to four stressors: DCD, sediment, nutrients, and reduced flow velocity. Here DCD treatments included controls, constant application (1.4 mg L-1) and two pulsed treatments mimicking concentration patterns in real streams (peaks 3.5 mg L-1, 2.2 mg L-1). Sediment and nutrient enrichment were influential stressors in both experiments, with fine sediment having the most pervasive effects. In Experiment 2, reduced flow velocity had pervasive effects and stressor interactions were mainly restricted to two-way interactions. DCD had few, weak stressor main effects, especially at field-realistic concentrations (Experiment 2). At the highest concentrations in Experiment 1 (above levels observed in real streams), DCD effects were still rare but some significant stressor interactions occurred. Analyses of functional traits were helpful in identifying potential mechanisms driving changes in densities and community composition.These findings suggest that, while DCD on its own may be a minor stressor, it could have adverse effects on algal communities already exposed to other stressors, a scenario common in agricultural streams. (C) 2019 Elsevier B.V. All rights reserved.
机译:农业实践通常导致影响河流生态系统的多种压力源,相互作用的压力源使受影响河流的环境评估和管理变得复杂。硝化抑制剂双氰胺(DCD)用于农田中的氮管理。尽管浸出的DCD本身可以作为压力源,也可以与其他农业压力源组合使用,但对流域生态系统的影响仍在很大程度上未被研究。我们在128个室外河流喂养的中观世界中进行了两个实验,以评估应激源对底栖藻类群落生物量,细胞密度,分类群丰富度,均匀性和功能性状组成的影响。首先,我们研究了对宽DCD梯度(8个浓度,0-31 mg L-1)和两个附加压力源(沉积线沉积物(无,高)和营养物富集(环境,富集))的响应。其次,我们确定了藻类对四种应激源的响应:DCD,沉积物,养分和流速降低。这里的DCD处理包括对照,持续施用(1.4 mg L-1)和模拟真实流中浓度模式的两种脉冲处理(峰值3.5 mg L-1、2.2 mg L-1)。在这两个实验中,沉积物和营养物的富集都是影响因素,其中细小的沉积物具有最广泛的影响。在实验2中,降低的流速具有普遍影响,应力源的相互作用主要限于双向相互作用。 DCD几乎没有弱的压力源主效应,尤其是在实地浓度下(实验2)。在实验1中的最高浓度下(在实际流中观察到的水平以上),DCD的影响仍然很少,但是发生了一些显着的应激源相互作用。对功能性状的分析有助于发现驱动密度和群落组成变化的潜在机制,这些发现表明,尽管DCD本身可能是次要的压力源,但它可能会对已经暴露于其他压力源的藻类群落产生不利影响。在农业流中很常见。 (C)2019 Elsevier B.V.保留所有权利。

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