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Contamination of wild plants near neonicotinoid seed-treated crops, and implications for non-target insects

机译:新烟碱种子处理过的农作物附近的野生植物受到污染,并对非目标昆虫产生影响

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摘要

Neonicotinoid insecticides are commonly-used as seed treatments on flowering crops such as oilseed rape. Their persistence and solubility in water increase the chances of environmental contamination via surface-runoff or drainage into areas adjacent to the crops. However, their uptake and fate into non-target vegetation remains poorly understood. In this study, we analysed samples of foliage collected from neonicotinoid seed-treated oilseed rape plants and also compared the levels of neonicotinoid residues in foliage (range: 1.4-11 ng/g) with the levels found in pollen collected from the same plants (range: 1.4-22 ng/g). We then analysed residue levels in foliage from non-target plants growing in the crop field margins (range: ≤0.02-106 ng/g). Finally, in order to assess the possible risk posed by the peak levels of neonicotinoids that we detected in foliage for farmland phytophagous and predatory insects, we compared the maximum concentrations found against the LC50 values reported in the literature for a set of relevant insect species. Our results suggest that neonicotinoid seed-dressings lead to widespread contamination of the foliage of field margin plants with mixtures of neonicotinoid residues, where levels are very variable and discontinuous, but sometimes overlap with lethal concentrations reported for some insect species. Understanding the distribution of pesticides in the environment and their potential effects on biological communities is crucial to properly assess current agricultural management and schemes with biodiversity conservation aims in farmland.
机译:新烟碱类杀虫剂通常用作油料油菜等开花作物的种子处理。它们的持久性和在水中的溶解度增加了通过地表径流或排入作物附近区域的环境污染的机会。然而,它们对非目标植被的吸收和命运仍然知之甚少。在这项研究中,我们分析了从新烟碱种子处理过的油菜植物中收集的叶子样品,并将叶子中新烟碱残留水平(范围:1.4-11 ng / g)与从相同植物中采集的花粉中发现的水平进行了比较(范围:1.4-22 ng / g)。然后,我们分析了在作物田间边缘生长的非目标植物的叶子中的残留水平(范围:≤0.02-106ng / g)。最后,为了评估由我们在农田中检测到的农田植物性食肉性和捕食性昆虫中新烟碱类化合物的峰值水平可能带来的风险,我们将发现的最大浓度与文献中报道的一组相关昆虫物种的LC50值进行了比较。我们的研究结果表明,新烟碱类作物的拌种导致大田边缘植物的叶子被新烟碱类残留物的混合物广泛污染,其中的含量变化很大且不连续,但有时与某些昆虫报道的致死浓度重叠。了解农药在环境中的分布及其对生物群落的潜在影响,对于正确评估当前农业管理和农田生物多样性保护目标计划至关重要。

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