首页> 外文期刊>The Science of the Total Environment >Fungistatic effect of agrochemical and pharmaceutical fungicides on non-target aquatic decomposers does not translate into decreased fungi- or invertebrate-mediated decomposition
【24h】

Fungistatic effect of agrochemical and pharmaceutical fungicides on non-target aquatic decomposers does not translate into decreased fungi- or invertebrate-mediated decomposition

机译:农业化学和药物杀菌剂对非靶水生分解器的杀菌作用不会转化为降低的真菌或无脊椎动物介导的分解

获取原文
获取原文并翻译 | 示例
           

摘要

Leaf litter decomposition is a key ecological process in freshwater ecosystems. Fungi, particularly aquatic hypho-mycetes, play a major role in organic matter turnover and constitute a pivotal node in detrital food webs. The extensive use of antifungal formulations, which include agrochemicals and pharmaceuticals, is a threat to biodiversity and may affect non-target microbial and invertebrate decomposer communities. Using a laboratory approach, we assessed the effects of tebuconazole (agrochemical), clotrimazole and terbinafine (pharmaceuticals) on aquatic communities and on the decomposition of plant litter. Alder leaves were colonized by natural mi-crobiota in a clean stream, and then exposed in microcosms to 8 concentrations of each fungicide (10 to 1280 ug L~(-1)). Fungicides led to shifts in species dominance in all tested concentrations, but no effects on leaf decomposition were observed. In addition, tebuconazole and clotrimazole strongly reduced fungal biomass and reproduction, whilst terbinafine stimulated fungal reproduction at lower concentrations but had no measurable effects on fungal biomass. Subsequently, the indirect effects of the fungicides were assessed on the next trophic level (detritivore invertebrates), by evaluating leaf consumption by a specialist (Allogamus sp.) and a generalist (Chironomus riparius) species, when feeding on fungicide-preconditioned leaves. The feeding activity of C. riparius and Allogamus sp. was not affected, and as expected, specialists were more efficient than generalists in exploring leaves as a dietary resource. However, results indicated that these fungicides have direct negative effects on microbial decomposers, and thus may compromise ecosystem functions on the long term.
机译:叶凋落物分解是淡水生态系统中的一个主要生态过程。真菌,特别是水生效效力,在有机物质周转中发挥了重要作用,并构成了碎屑食品网中的枢轴节点。广泛使用包括农用化学品和药物的抗真菌制剂是对生物多样性的威胁,可能影响非靶微生物和无脊椎动物分解社区。使用实验室方法,我们评估了Tebuconazole(农业化学),克拉唑和三萘嘧啶(药物)对水生群落的影响以及植物垃圾的分解。桤木在清洁流中通过天然Mi-Crobiota殖民地殖民,然后在微观上暴露于每种杀菌剂的8次浓度(10至1280ug L〜(-1))。杀菌剂导致在所有测试浓度下在物种优势转移,但没有观察到对叶片分解的影响。此外,Tebuconazole和克拉咪唑强烈降低的真菌生物量和繁殖,而Terbinafine在较低浓度下刺激真菌繁殖,但对真菌生物质没有可测量的影响。随后,通过评估专业(AlloGamus SP。)和通用(依戈卢马斯)物种的叶片消耗,在杀菌剂预处理的叶片上评估叶片消耗来评估杀真菌剂的间接影响。 C. riparius和AlloGamus sp的饲养活性。没有受到影响,正如预期的那样,专家比探索叶片作为饮食资源的普遍学家更有效。然而,结果表明这些杀菌剂对微生物分解具有直接的负面影响,因此可能会在长期内损害生态系统功能。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第10期|135676.1-135676.10|共10页
  • 作者单位

    Centre of Molecular and Environmental Biology (CBMA) Department of Biology. University of Minho Campus de Gualtar 4710-057 Braga Portugal Institute of Science and Innovation for Bio-sustainability (IB-S) University of Minho. Campus de Gualtar 4710-057 Braga. Portugal;

    Centre of Molecular and Environmental Biology (CBMA) Department of Biology. University of Minho Campus de Gualtar 4710-057 Braga Portugal Institute of Science and Innovation for Bio-sustainability (IB-S) University of Minho. Campus de Gualtar 4710-057 Braga. Portugal;

    Centre of Molecular and Environmental Biology (CBMA) Department of Biology. University of Minho Campus de Gualtar 4710-057 Braga Portugal Institute of Science and Innovation for Bio-sustainability (IB-S) University of Minho. Campus de Gualtar 4710-057 Braga. Portugal;

    Centre of Molecular and Environmental Biology (CBMA) Department of Biology. University of Minho Campus de Gualtar 4710-057 Braga Portugal Institute of Science and Innovation for Bio-sustainability (IB-S) University of Minho. Campus de Gualtar 4710-057 Braga. Portugal;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Agrochemical fungicides; Anti-fungal pharmaceuticals; Toxicity; Aquatic fungi; Stream invertebrates; Decomposition;

    机译:农业化学杀菌剂;抗真菌药物;毒性;水生真菌;流无脊椎动物;分解;

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号