Insights from a Long-Term Outdoor Mesocosm Study: eDNA Metabarcoding Reveals Exacerbated but Transient Impacts from a Nanoenabled Pesticide Formulation (Nano-TiO2-Coated Carbendazim) on Freshwater Microbial Communities.

IF 4.8 Q1 ENVIRONMENTAL SCIENCES
ACS ES&T water Pub Date : 2025-04-22 eCollection Date: 2025-05-09 DOI:10.1021/acsestwater.5c00014
Martin van der Plas, Tom A P Nederstigt, Krijn B Trimbos, Emilie A Didaskalou, Martina G Vijver
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引用次数: 0

Abstract

Fungicides currently encompass the second-most-used class of agricultural pesticides globally. Residues are frequently detected in freshwater, leading to undesired ecological impacts. Nanoenabled pesticide formulations have recently gained prominence in the scientific literature and have been suggested to exhibit favorable properties over conventional pesticide formulations by facilitating reductions in emissions toward nontarget locations. However, data on unintended effects on nontarget aquatic communities are scarce, especially concerning microbial communities. In this study, long-term effects of nano titanium-dioxide- (nTiO2)-coated carbendazim and its constituents on (pelagic) freshwater microbial communities in simulated agricultural ditches were investigated over a period of 14 weeks using environmental DNA (eDNA) metabarcoding. Impacts on bacterial diversity (α and β) were observed 2 weeks after the treatment application and most pronounced in the nTiO2-coated carbendazim treatment, followed by its active substance, i.e., noncoated carbendazim. The observed patterns possibly imply that nTiO2-coated carbendazim imposed more pronounced and potentially delayed or extended effects compared to the noncoated form of carbendazim. Bacterial communities also proved to be resilient under the tested conditions as they returned to the control-state within 5 weeks after the treatment application. Overall, our data suggest that eDNA metabarcoding data on microbial communities can help uncover time-dependent effects of nanoformulated pesticides.

一项长期室外环境研究的见解:eDNA元条形码揭示了纳米农药制剂(纳米二氧化钛包被多菌灵)对淡水微生物群落的加剧但短暂的影响。
杀菌剂目前是全球使用量第二大的农业农药。在淡水中经常检测到残留物,导致意想不到的生态影响。纳米农药制剂最近在科学文献中获得了突出的地位,并被建议通过促进向非目标位置的排放减少,表现出优于传统农药制剂的有利特性。然而,关于非目标水生群落的意外影响的数据很少,特别是关于微生物群落的数据。本研究利用环境DNA (eDNA)元条形码技术,研究了纳米二氧化钛(nTiO2)包被多菌灵及其组分对模拟农业沟渠中(远洋)淡水微生物群落的长期影响,为期14周。在处理后2周观察到细菌多样性(α和β)的影响,其中以二氧化钛包被多菌灵处理最为明显,其次是其活性物质,即非包被多菌灵。观察到的模式可能表明,与非涂层形式的多菌灵相比,二氧化钛涂层的多菌灵施加了更明显的、潜在的延迟或延长的效应。细菌群落也被证明在测试条件下具有弹性,因为它们在治疗应用后的5周内恢复到控制状态。总的来说,我们的数据表明微生物群落的eDNA元条形码数据可以帮助揭示纳米配方农药的时间依赖性效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
5.40
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