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Aquatic fungi: a disregarded trophic level in ecological risk assessment of organic fungicides

机译:水生真菌:有机杀菌剂生态风险评估中的营养水平被忽略

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Freshwater fungi are a diverse group of organisms and fulfil important functions in the food web dynamics of surface water ecosystems. Ascomycetic and basidiomycetic hyphomycetes play key roles in leaf litter breakdown in rivers and creeks, while parasitic chytrids are an important food source for small invertebrates in lakes. Field studies indicate that fungal communities are affected by fungicides at environmentally relevant concentrations. However, despite their ecological importance, freshwater fungi are currently not specifically addressed in the EU regulatory frameworks with respect to the protection of surface waters. Specifically, the prospective risk assessment of fungicides does not evaluate adverse effects on non-target aquatic fungi. This paper aims to describe important functions of freshwater fungi, provides an overview of adverse effect levels of fungicides on this organism group, and proposes to integrate the fungal community of freshwater ecosystems as an additional trophic level in the current fungicide risk assessment frameworks. Results of a literature review on the effects of fungicides on aquatic fungi revealed that information on the toxicity of fungicides to non-target aquatic fungi is limited. This is, in part, due to the lack of standardised bioassays using aquatic fungi as test species. Although there is an encouraging number of bioassays focusing on the degradation of dead organic material by hyphomycetes, studies on fungicide effects on other important ecological functions, like the control of algal blooms in lentic surface waters by parasitic chytrid fungi, or on mutualistic fungi living in the guts of aquatic arthropods are largely missing. Thus, the further development and standardisation of different fungi bioassays is recommended.
机译:淡水真菌是多种生物,在地表水生态系统的食物网动态中发挥重要作用。子囊菌和担子菌菌丝菌在河流和小溪中的凋落物分解中起关键作用,而寄生的壶菌是湖泊中小无脊椎动物的重要食物来源。现场研究表明,真菌群落受环境相关浓度的杀真菌剂影响。然而,尽管其具有生态重要性,但欧盟法规框架中目前并未在保护地表水方面专门针对淡水真菌。具体而言,对杀菌剂的前瞻性风险评估不能评估对非目标水生真菌的不利影响。本文旨在描述淡水真菌的重要功能,概述杀菌剂对该生物群的不利影响水平,并提议将淡水生态系统的真菌群落整合为当前杀菌剂风险评估框架中的另一个营养级别。关于杀真菌剂对水生真菌影响的文献综述的结果表明,关于杀真菌剂对非目标水生真菌毒性的信息有限。部分原因是由于缺乏使用水生真菌作为测试物种的标准化生物测定方法。尽管有令人鼓舞的生物测定方法专注于由疏水菌降解死有机物质,但研究了杀真菌剂对其他重要生态功能的影响,例如通过寄生的丝状真菌对丝状体表层水中的藻华进行控制,或对生活在水中的互生真菌进行了研究。水生节肢动物的胆量大为缺失。因此,建议进一步开发和标准化不同的真菌生物测定方法。

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