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The effect of glyphosate-based herbicide on aquatic organisms – a case study

机译:草甘膦基除草剂对水生生物的影响–案例研究

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The non-selective, post-emergence herbicides based on glyphosate [N-(phosphonomethyl) glycine] are one of the most widely used pesticides in agriculture, urban areas and forestry. Although there has been documentation on the physical, chemical and toxicological properties of glyphosate, the aquatic toxicity of such formulations still requires assessment and evaluation. In the present study, we describe deliberate use of glyphosate-based herbicide in a bathing area of Lake Lednica (Wielkopolska, Poland) by unknown perpetrators in April, 2011. Glyphosate was detected using gas chromatography mass spectrometry (GC-MS) in the water samples collected from the bathing area at a mean concentration of 0.09 mg dm-3. Aboveground parts of emerged macrophytes (Phragmites australis and Typha latifolia) covering the investigated area were completely withered. Studies of benthic macroinvertebrates revealed no significant differences in taxa number between event (13 taxa) and control (14 taxa) sites although differences in abundance of particular taxa were observed. Significantly lower numbers of Chironomidae (by 41%), Oligochaeta (by 43%), Vivipariae (by 75%), Hirudinae (by 75%), Asellus aquaticus (by 77%), Gammarus pulex (by 38%) and Dreissena polymorpha (by 42%) were found at the glyphosate-treated site. Furthermore, compared to the control, chironomids (Chironomidae) exposed to glyphosate were represented by specimens smaller in length while A. aquaticus only showed large adults. The ranges of glyphosate concentration in the tissues of sampled macroinvertebrates and Phragmites australis organs were 7.3-10.2 μg kg-1 and 16.2-24.7 μg kg-1, respectively. Our study indicates that glyphosate-based herbicides may have adverse effects on aquatic organisms including macroinvertebrates, thus their use in (or nearby) surface waters should be subject to strict limitation.
机译:基于草甘膦[N-(膦酰基甲基)甘氨酸]的非选择性芽后除草剂是农业,城市地区和林业中使用最广泛的农药之一。尽管有关于草甘膦的物理,化学和毒理学性质的文献,但此类制剂的水生毒性仍需要评估和评估。在本研究中,我们描述了2011年4月由未知的施暴者故意在莱德尼察湖(波兰维克科波尔斯卡)的沐浴区故意使用基于草甘膦的除草剂。使用气相色谱质谱法(GC-MS)在水中检测到草甘膦从沐浴区收集的样品的平均浓度为0.09 mg dm-3。覆盖研究区域的新兴大型植物(芦苇和香蒲)的地上部分完全枯萎。底栖大型无脊椎动物的研究表明,事件(13个分类单元)和对照(14个分类单元)位点之间的分类单元数没有显着差异,尽管观察到特定分类单元的丰度差异。 Chironomidae(减少41%),Oligochaeta(减少43%),Vivipariae(减少75%),Hirudinae(减少75%),Asellus aquaticus(减少77%),Gammarus pulex(减少38%)和Dreissena polymorpha的数量明显减少在草甘膦处理过的地方发现了(占42%)。此外,与对照组相比,暴露于草甘膦的拟虫科(Chironomidae)的标本长度较小,而水曲霉仅显示成年大的标本。大型无脊椎动物和芦苇器官中草甘膦的浓度范围分别为7.3-10.2μgkg-1和16.2-24.7μgkg-1。我们的研究表明,基于草甘膦的除草剂可能会对包括大型无脊椎动物在内的水生生物产生不利影响,因此应严格限制其在(或附近)地表水中的使用。

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