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Effects of Increased Temperature, Drought, and an Insecticide on Freshwater Zooplankton Communities

机译:温度升高,干旱和杀虫剂对淡水浮游动物群落的影响

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In the present study we performed a microcosm experiment to assess the effects of the insecticide lufenuron on zooplankton communities exposed to increased temperature and drought in (semi-)arid regions. The experiment consisted of 3 environmental scenarios, assessed in 2 parts. Firstly, we assessed how water temperature (20 and 28 degrees C) affects the sensitivity and resilience of the zooplankton community to lufenuron. Secondly, we investigated the influence of drought on the structure of the zooplankton community at a high water temperature (28 degrees C) and evaluated its possible interaction with lufenuron. The results show that the community exposed to lufenuron at 28 degrees C had a faster lufenuron-related response and recovery than the community at 20 degrees C. The combined effects of lufenuron and temperature resulted in a synergistic effect on some taxa (Daphnia sp., Cyclopoida, and Copepoda nauplii). The tested zooplankton community had a high resilience to drought, although some particular taxa were severely affected after desiccation (Calanoida). Interactions between drought and lufenuron were not statistically significant. However, rewetting after desiccation contributed to lufenuron remobilization from sediments and resulted in a slight Cyclopoida population decline at high exposure concentrations. The study shows how environmental conditions related to global change in (semi-)arid regions may influence chemical fate and the vulnerability of zooplankton communities to chemical stress. Environ Toxicol Chem 2019;38:396-411. (c) 2018 SETAC
机译:在本研究中,我们进行了一个缩影实验,以评估杀虫剂氟苯磺隆对(半)干旱地区暴露于升高的温度和干旱的浮游动物群落的影响。该实验包括3个环境场景,分2部分进行评估。首先,我们评估了水温(20和28摄氏度)如何影响浮游动物群落对氟芬隆的敏感性和弹性。其次,我们调查了干旱在高水温(28摄氏度)下对浮游动物群落结构的影响,并评估了其与氟苯脲的可能相互作用。结果表明,暴露于28°C的氟芬隆的社区比20°C的社区具有更快的与氟芬隆相关的响应和恢复。氟芬隆和温度的共同作用对某些类群(Daphnia sp。, Cyclopoida和Copepoda幼虫)。经过测试的浮游动物群落具有很高的抗旱能力,尽管某些特定的分类单元在干燥后受到严重影响(Calanoida)。干旱和氟苯脲之间的相互作用没有统计学意义。但是,干燥后的再湿润有助于从沉积物中迁移出芬太尼,并导致在高暴露浓度下Cyclopoida种群略有下降。研究表明,与(半)干旱地区全球变化有关的环境条件如何影响化学命运以及浮游动物群落对化学胁迫的脆弱性。 Environ Toxicol Chem 2019; 38:396-411。 (c)2018年SETAC

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