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Do agricultural pesticides in streams influence riparian spiders?

机译:溪流中的农业农药会影响河岸蜘蛛吗?

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Freshwater ecosystems are coupledwith their riparian area. Emerging insects are prey for predators in the riparian zone, enriching the terrestrial ecosystemwith energy and nutrients. Stressors associated with agriculture can alter insect communities in water and on land, resulting in complex response patterns of terrestrial predators relying on prey fromboth systems. Examining the effects from individual agricultural stressors such as pesticides is hampered in landscapes with intensive agriculture where multiple stressors like habitat degradation and typically co-occur. In rural regions of Eastern Europe, traditional low intensity agriculture based on working animals and human labour prevails alongside intensive, mechanised agriculture. Assuming that low-intensity agriculture relies on no or limited pesticide use, whereas fertilizer use is similar across different agricultural intensities, such regionsmay allowto study in-streampesticide effects independent fromother stressors, such as nutrient input or habitat degradation. We examined the taxonomic and trait response of riparian spider communities to gradients of agricultural stressors and environmental variables in the region around Cluj-Napoca, Romania. Pesticide sampling was done using passive samplers in the streams adjacent to spider sampling sites. To capture spiders with different traits and survival strategies, we used multiple collection methods. Community composition was best explained by in-stream pesticide toxicity and shading of the stream bank, a proxy for the quality of the habitat. Species richness and the number of spider individuals were negatively associated with in-stream pesticide toxicity. In contrast, mean body size and shading preference of spider communities responded strongest to shading, whereas mean niche width (habitat preference for moisture and shading) responded strongest to the other environmental variables. Our study suggests that in-stream pesticide toxicity can influence riparian communities. The identification of mechanisms requires further studies targeting the potential contributions of direct toxicity and indirect effects from reduced aquatic and terrestrial prey availability. (c) 2019 Elsevier B.V. All rights reserved.
机译:淡水生态系统与其河岸地区相连。新兴昆虫是河岸地区捕食者的猎物,使陆地生态系统充满了能量和营养。与农业有关的压力源可以改变水和陆地上的昆虫群落,导致依赖于两个系统的猎物的陆地捕食者的复杂反应模式。在集约化农业的景观中,检查农药等单个农业压力源的影响会受到阻碍,因为在这些环境中,多种压力源(例如栖息地退化)通常同时发生。在东欧的农村地区,以劳动动物和人工为基础的传统的低强度农业与集约化机械化农业一起流行。假设低强度农业不依赖或限制使用农药,而不同农业强度下的肥料使用相似,则这些地区可以独立于其他压力源(例如营养输入或栖息地退化)研究流内农药的作用。我们研究了罗马尼亚克卢日-纳波卡附近地区河岸蜘蛛群落对农业压力源梯度和环境变量的分类和性状响应。使用无源采样器在蜘蛛采样点附近的溪流中进行农药采样。为了捕获具有不同特征和生存策略的蜘蛛,我们使用了多种收集方法。溪流中的农药毒性和溪流的阴影可以最好地解释群落组成,溪流的阴影代表了栖息地的质量。物种丰富度和蜘蛛个体数量与农药在流中的毒性负相关。相比之下,蜘蛛群落的平均体型和阴影偏好对阴影的反应最强,而平均生态位宽度(对水分和阴影的栖息地偏好)对其他环境变量的反应最强。我们的研究表明,流中农药的毒性会影响河岸社区。对机制的识别需要针对针对直接毒性和因减少水生和陆地猎物可利用性而产生的间接影响的潜在作用进行进一步研究。 (c)2019 Elsevier B.V.保留所有权利。

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