首页> 外文期刊>Aquatic Toxicology >Interactive effects of an insecticide and a fungicide on different organism groups and ecosystem functioning in a stream detrital food web
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Interactive effects of an insecticide and a fungicide on different organism groups and ecosystem functioning in a stream detrital food web

机译:杀虫剂对不同生物体群体的互动性和杀菌剂在流脱滴水纤维网中运作

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摘要

Freshwater ecosystems are often affected by cocktails of multiple pesticides targeting different organism groups. Prediction and evaluation of the ecosystem-level effects of these mixtures is complicated by the potential not only for interactions among the pesticides themselves, but also for the pesticides to alter biotic interactions across trophic levels. In a stream microcosm experiment, we investigated the effects of two pesticides targeting two organism groups (the insecticide lindane and fungicide azoxystrobin) on the functioning of a model stream detrital food web consisting of a detritivore (Ispoda: Asellus aquaticus) and microbes (an assemblage of fungal hyphomycetes) consuming leaf litter. We assessed how these pesticides interacted with the presence and absence of the detritivore to affect three indicators of ecosystem functioning - leaf decomposition, fungal biomass, fungal sporulation - as well as detritivore mortality. Leaf decomposition rates were more strongly impacted by the fungicide than the insecticide, reflecting especially negative effects on leaf processing by detritivores. This result most like reflects reduced fungal biomass and increased detritivore mortality under the fungicide treatment. Fungal sporulation was elevated by exposure to both the insecticide and fungicide, possibly representing a stress-induced increase in investment in propagule dispersal. Stressor interactions were apparent in the impacts of the combined pesticide treatment on fungal sporulation and detritivore mortality, which were reduced and elevated relative to the single stressor treatments, respectively. These results demonstrate the potential of trophic and multiple stressor interactions to modulate the ecosystem-level impacts of chemicals, highlighting important challenges in predicting, understanding and evaluating the impacts of multiple chemical stressors on more complex food webs in situ. (C) 2017 Elsevier B.V. All rights reserved.
机译:淡水生态系统通常受到靶向不同生物组的多种杀虫剂的鸡尾酒的影响。这些混合物的生态系统级别效应的预测和评价对于农药本身之间的相互作用,而且对农药来说,而且对农药来改变营养水平的生物相互作用的潜力复杂化。在流体微观实验中,我们研究了靶向两个生物组(杀虫剂Lindane和杀真菌剂Azoxystrobin)的两种农药的效果对由Detriotivore(aspoda:asellus aquaticus)和微生物组成的模型流滴乳食品网的功能(一个组装真菌杂菌菌消耗叶垃圾。我们评估了这些农药如何与Detriotivore的存在和缺乏影响,以影响生态系统功能叶分解,真菌生物量,真菌孢子症的三种指标 - 以及Detrivore死亡率。叶片分解率比杀虫剂更强烈地影响杀虫剂,反映了对DetRitivores的叶片处理的尤其是负面影响。这一结果最重要的是,在杀菌剂处理下反映了降低的真菌生物量并增加了酥皮死亡率。通过暴露于杀虫剂和杀菌剂,真菌孢子率升高,可能代表宣传分散的投资的应激诱导的增加。在综合农药处理对真菌孢子症和酥皮死亡率的影响下,应激源相互作用显而易见,其分别减少和升高了单一的压力源处理。这些结果表明,营养和多重压力源相互作用的潜力,以调节化学品的生态系统级别影响,突出了预测,理解和评估多种化学压力源的影响,以原位更复杂的食物网的影响。 (c)2017 Elsevier B.v.保留所有权利。

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