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与淡水生物膜的相互作用通过降解导致常见除草剂的快速去除——来自微宇宙研究的证据。

Interactions with freshwater biofilms cause rapid removal of common herbicides through degradation - evidence from microcosm studies.

机构信息

Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences, Uppsala, Sweden.

出版信息

Environ Sci Process Impacts. 2021 Feb 4;23(1):66-72. doi: 10.1039/d0em00394h.

Abstract

We investigated the role of periphyton biofilms for the fate of three common herbicides, i.e. bentazone, metazachlor and metribuzin, at low, environmental levels and 100 times higher, during a 16 days laboratory experiment. We found that herbicide water concentrations were stable during the first 8 days, whereas substantial declines (>78%) occurred between days 8-16 for all three herbicides. These rapid declines were explained only to a small extent (<8% of the total herbicide loss) by biofilm sorption. As herbicide concentrations in light and dark treatments without biofilms were similar, and the applied light regimen did not cover the UV-spectrum, herbicide photolysis was ruled out as a possible explanation for the observed declines. Furthermore, based on the compounds' characteristics, also volatilization was judged negligible. Therefore, we conjecture that the observed declines in herbicides were due to biodegradation and subsequent evasion of 14CO2 that was driven by enzymatic action from heterotrophic microbes. We reason that heterotrophic microbes used herbicide molecules as labile organic C-sources during C-limitation. Future studies should identify the microbial communities and genes involved in biodegradation in order to understand better the role of biofilms for the self-purification of surface waters.

摘要

我们研究了周丛生物膜在三种常见除草剂命运中的作用,即在低环境水平和 100 倍更高水平下,在 16 天的实验室实验中,即苯达松、甲草胺和二甲戊灵。我们发现,在最初的 8 天内,除草剂的水浓度保持稳定,而在第 8-16 天之间,所有三种除草剂的浓度都大幅下降(>78%)。这些快速下降仅在很小程度上(总除草剂损失的<8%)可以用生物膜吸附来解释。由于无生物膜的光照和黑暗处理中的除草剂浓度相似,并且施加的光照方案不包括 UV 光谱,因此可以排除除草剂光解是观察到的下降的可能解释。此外,根据化合物的特性,也可以判断挥发作用可以忽略不计。因此,我们推测观察到的除草剂下降是由于生物降解和随后的逃避 14CO2 所致,这是由异养微生物的酶促作用驱动的。我们认为,在 C 限制期间,异养微生物将除草剂分子用作可生物降解的有机 C 源。未来的研究应该确定参与生物降解的微生物群落和基因,以便更好地理解生物膜对地表水自净的作用。

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