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淡水生态系统中群落和生态系统对脉冲式农药干扰的响应。

Community and ecosystem responses to a pulsed pesticide disturbance in freshwater ecosystems.

作者信息

Downing Amy L, DeVanna Kristen M, Rubeck-Schurtz C Nichole, Tuhela Laura, Grunkemeyer Heather

机构信息

Department of Zoology, Ohio Wesleyan University, Delaware, OH 43015, USA.

出版信息

Ecotoxicology. 2008 Aug;17(6):539-48. doi: 10.1007/s10646-008-0211-3. Epub 2008 Apr 24.

Abstract

Pesticides have been shown to be detrimental to key groups of freshwater organisms including cladocerans, odonates, and amphibians. However, less is known about the response of freshwater communities and ecosystems to pesticide disturbances as they occur in nature. Using outdoor aquatic mesocosms, we assembled identical and diverse replicate freshwater plankton food webs obtained from an adjacent pond. We established three pesticide treatments consisting of pulses of a common pesticide Sevin with the active ingredient carbaryl, at concentrations of 0.1, 1 and 20 microg carbaryl/ml, and a pesticide-free control treatment. We monitored the response of microbial, phytoplankton, and zooplankton communities in addition to oxygen concentrations. Carbaryl concentrations peaked shortly after Sevin application and degraded quickly and treatment differences were undetectable after 30 days. Zooplankton richness, diversity, abundance, and oxygen concentrations all decreased in pulsed treatments, while phytoplankton and microbial abundance increased. Zooplankton composition in the high pesticide treatment consisted primarily of rotifers as compared to dominance by copepods in the other three treatments. While many of the community and ecosystem properties showed signs of recovery within 40 days after the pulsed pesticide disturbance, important and significant differences remained in the microbial, phytoplankton and zooplankton communities after the pesticide degraded.

摘要

已表明农药对包括枝角类动物、蜻蜓目昆虫和两栖动物在内的关键淡水生物群体有害。然而,对于淡水群落和生态系统在自然环境中受到农药干扰时的反应,我们了解得较少。利用室外水生中宇宙,我们构建了从相邻池塘获取的相同且多样的重复淡水浮游生物食物网。我们设置了三种农药处理组,分别用含有活性成分西维因的常见农药西维因进行脉冲处理,浓度分别为0.1、1和20微克西维因/毫升,以及一个无农药对照处理组。除了氧气浓度外,我们还监测了微生物、浮游植物和浮游动物群落的反应。西维因施用后不久,西维因浓度达到峰值,随后迅速降解,30天后处理组之间的差异无法检测到。在脉冲处理组中,浮游动物的丰富度、多样性、丰度和氧气浓度均下降,而浮游植物和微生物的丰度增加。与其他三种处理组中以桡足类动物为主导不同,高农药处理组中的浮游动物组成主要为轮虫。虽然许多群落和生态系统属性在脉冲式农药干扰后40天内显示出恢复迹象,但在农药降解后,微生物、浮游植物和浮游动物群落中仍存在重要且显著的差异。

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