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福美双和一种烃类混合物对室外溪流和池塘中型生态系统中淡水大型无脊椎动物群落的影响:II. 生物学和生态学特征响应以及落叶分解

Effect of thiram and of a hydrocarbon mixture on freshwater macroinvertebrate communities in outdoor stream and pond mesocosms: II. Biological and ecological trait responses and leaf litter breakdown.

作者信息

Bayona Yannick, Roucaute Marc, Cailleaud Kevin, Lagadic Laurent, Bassères Anne, Caquet Thierry

机构信息

INRA, UMR985 Écologie et Santé des Écosystèmes, Équipe Écotoxicologie et Qualité des Milieux Aquatiques, Agrocampus Ouest, 65 rue de Saint Brieuc, CS 84215, 35042, Rennes, France.

Service Environnement, TOTAL, Pôle d'Etude et de Recherche de Lacq RN 117, BP 47, 64170, Lacq, France.

出版信息

Ecotoxicology. 2015 Nov;24(9):1933-46. doi: 10.1007/s10646-015-1531-8. Epub 2015 Aug 27.

DOI:10.1007/s10646-015-1531-8
PMID:26311171
Abstract

Higher-tier ecological risk assessment of chemicals often relies upon studies in dynamic and/or static mesocosms. Physico-chemical and hydrological properties of each type of mesocosm result in specific chemicals fate, community functioning, and potential recovery. In the present study, macroinvertebrate abundance- and biomass-weighted biological and ecological trait matrices were used to assess the effects of a dithiocarbamate fungicide, thiram (35 and 170 µg l(-1)), and of a petroleum middle distillate (0.01, 0.4, 2 and 20 mg l(-1)) in outdoor stream and pond mesocosms. Trait sensitivity was characterized using functional diversity indices and trait modality distributions to assess the influence of the type of experimental systems and the ability of traits to disentangle chemical-induced effects from temporal and stochastic variations. In addition, leaf litter breakdown was used as an integrative functional endpoint. Regardless to the substance, treatments had a direct effect on the functional structure of benthic macroinvertebrate communities in streams but not in ponds, suggesting that global functional responses to chemicals are system-specific. Although both substances had an effect in streams, differences were noticed in the nature of the affected traits suggesting that chemical mode of action plays a role in functional alterations. This was illustrated by the link between negative effects of chemical exposure on detritivorous taxa and reduced litter breakdown rate in streams. Therefore, characterisation of macroinvertebrate biological traits associated with the measurement of a functional process such as litter breakdown may provide a comprehensive understanding of the effects occurring in mesocosms exposed to organic chemicals.

摘要

化学品的高级生态风险评估通常依赖于动态和/或静态中宇宙研究。每种类型中宇宙的物理化学和水文特性导致特定的化学品归宿、群落功能和潜在恢复情况。在本研究中,利用大型无脊椎动物丰度和生物量加权的生物学和生态特征矩阵,评估了二硫代氨基甲酸盐类杀菌剂福美双(35和170微克/升)以及石油中间馏分(0.01、0.4、2和20毫克/升)在室外溪流和池塘中宇宙中的影响。通过功能多样性指数和特征模态分布来表征特征敏感性,以评估实验系统类型的影响以及特征区分化学诱导效应与时间和随机变化的能力。此外,落叶分解被用作一个综合功能终点。无论使用何种物质,处理对溪流中底栖大型无脊椎动物群落的功能结构有直接影响,但对池塘中群落无影响,这表明对化学品的整体功能反应具有系统特异性。尽管两种物质在溪流中都有影响,但在受影响特征的性质上存在差异,这表明化学作用模式在功能改变中起作用。化学暴露对食碎屑类群的负面影响与溪流中落叶分解速率降低之间的联系就说明了这一点。因此,对与落叶分解等功能过程测量相关的大型无脊椎动物生物学特征进行表征,可能有助于全面了解暴露于有机化学品的中宇宙中所发生的影响。

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