首页> 外文期刊>Journal of Environmental Management >A common fungicide impairs stream ecosystem functioning through effects on aquatic hyphomycetes and detritivorous caddisflies
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A common fungicide impairs stream ecosystem functioning through effects on aquatic hyphomycetes and detritivorous caddisflies

机译:常见的杀菌剂通过对水生杂细胞和无碎屑的Caddisflies造成的影响危害流动生态系统

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摘要

Fungicides can reach streams through runoff or adhered to leaf litter, and have the potential to adversely affect processes such as litter decomposition and associated communities. This study investigated the effects of chlorothalonil, a widely used fungicide, on litter decomposition, detritivorous invertebrates (larvae of the insect Sericostoma pyrenaicum) and aquatic hyphomycetes (AHs), using stream microcosms. We considered the single and combined effects of two exposure modes: waterborne fungicide (at two concentrations: 0.125 μg L~(-1) and 1.25 μg L~(-1)) and litter previously sprayed with the fungicide (i.e., pre-treated litter, using the application dose concentration of 1250 μg L~(-1)). We also assessed whether fungicide effects on invertebrates, AHs and decomposition varied among litter types (i.e., different plant species), and whether plant diversity mitigated any of those effects. Invertebrate survival and AH sporulation rate and taxon richness were strongly reduced by most combinations of fungicide exposure modes; however, invertebrates were not affected by the low waterborne concentration, whereas AHs suffered the highest reduction at this concentration. Total decomposition was slowed down by both exposure modes, and microbial decomposition was reduced by litter pre-treatment, while the waterborne fungicide had different effects depending on plant species. In general, with the exception of microbial decomposition, responses varied little among litter types. Moreover, and contrary to our expectation, plant diversity did not modulate the fungicide effects. Our results highlight the severity of fungicide inputs to streams through effects on invertebrate and microbial communities and ecosystem functioning, even in streams with well-preserved, diverse riparian vegetation.
机译:杀菌剂可以通过径流到达溪流或粘附在叶子上,并且有可能对凋落物分解和相关社区等过程产生不利影响。本研究研究了氯洛尼尼尔,广泛使用的杀菌剂,在垃圾分解,无腐蚀性无脊椎动物(昆虫Sericostoma pyrenaicum的幼虫)和水生杂菌(AHS)的影响,使用流微观物体。我们考虑了两种曝光模式的单一和综合影响:水性杀菌剂(以两种浓度:0.125μg1)和1.25μgL〜(-1))和预先用杀真菌剂喷射的垃圾(即预处理凋落物,使用施用剂量浓度为1250μg1-(-1))。我们还评估了对无脊椎动物,AHS和分解的杀菌剂对凋亡类型(即,不同的植物物种)不同,以及植物多样性是否减轻了这些效果。通过大多数杀菌剂暴露模式的组合强烈减少无脊椎动物存活率和孢子率和分类率丰富;然而,无脊椎动物不受水性浓度低的影响,而AHS在该浓度下遭受最高的降低。通过曝光模式减慢总分解,并且通过凋亡预处理减少了微生物分解,而水性杀菌剂根据植物物种具有不同的影响。通常,除了微生物分解之外,垃圾类型之间的反应变化。此外,与我们的期望相反,植物多样性并未调节杀菌剂效应。我们的结果突出了通过对无脊椎动物和微生物社区和生态系统运作的影响来突出杀菌剂的严重程度,即使在具有完全保存的河岸植被的溪流中也是如此。

著录项

  • 来源
    《Journal of Environmental Management》 |2020年第1期|110425.1-110425.10|共10页
  • 作者单位

    Freshwater Macroinvertebrate Laboratory. Zoological Collection Dr. Eustorgio Mendez Gorgas Memorial Institute for Health Studies (COZEM-ICGES) Ave. Justo Arosemena and Calle 35 0816-02593 Panama City Panama Doctoral Program in Natural Sciences with emphasis in Entomology University of Panama Panama City Panama;

    Department of Plant Biology and Ecology Faculty of Science and Technology University of the Basque Country (UPV/EHU) Leioa Spain;

    Department of Plant Biology and Ecology Faculty of Science and Technology University of the Basque Country (UPV/EHU) Leioa Spain;

    Department of Plant Biology and Ecology Faculty of Science and Technology University of the Basque Country (UPV/EHU) Leioa Spain;

    Department of Plant Biology and Ecology Faculty of Science and Technology University of the Basque Country (UPV/EHU) Leioa Spain;

    Department of Plant Biology and Ecology Faculty of Science and Technology University of the Basque Country (UPV/EHU) Leioa Spain IKERBASQUE Bilbao Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Litter decomposition; Chlorothalonil; Aquatic hyphomycetes; Detritivores; Plant diversity;

    机译:凋落物分解;氯洛尼尼尔;水生菌丝;DetRitivores;植物多样性;

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