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首页> 外文期刊>Journal of Enviromental >Are Leaves that Fall from Imidacloprid-Treated Maple Trees to Control Asian Longhorned Beetles Toxic to Non-target Decomposer Organisms?
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Are Leaves that Fall from Imidacloprid-Treated Maple Trees to Control Asian Longhorned Beetles Toxic to Non-target Decomposer Organisms?

机译:从吡虫啉处理过的枫树上掉下来的叶子对控制亚洲长角甲虫有毒,但对非目标分解生物没有毒性吗?

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摘要

The systemic insecticide imidacloprid may be applied to deciduous trees for control of the Asian longhorned beetle, an invasive wood-boring insect. Senescent leaves falling from systemically treated trees contain imidacloprid concentrations that could pose a risk to natural decomposer organisms. We examined the effects of foliar imidacloprid concentrations on decomposer organisms by adding leaves from imidacloprid-treated sugar maple trees to aquatic and terrestrial microcosms under controlled laboratory conditions. Imidacloprid in maple leaves at realistic field concentrations (3–11 mg kg–1) did not affect survival of aquatic leaf-shredding insects or litter-dwelling earthworms. However, adverse sublethal effects at these concentrations were detected. Feeding rates by aquatic insects and earthworms were reduced, leaf decomposition (mass loss) was decreased, measurable weight losses occurred among earthworms, and aquatic and terrestrial microbial decomposition activity was significantly inhibited. Results of this study suggest that sugar maple trees systemically treated with imidacloprid to control Asian longhorned beetles may yield senescent leaves with residue levels sufficient to reduce natural decomposition processes in aquatic and terrestrial environments through adverse effects on non-target decomposer organisms.
机译:全身性杀虫剂吡虫啉可用于落叶乔木,以控制亚洲长角甲虫(一种侵入性木钻昆虫)。从经过系统处理的树木掉落的衰老叶片中含有吡虫啉的浓度,可能会对天然分解生物造成危险。我们通过在受控实验室条件下,将吡虫啉处理过的糖槭树的叶子添加到水生和陆地的微观世界中,检查了叶吡虫啉浓度对分解生物的影响。枫叶中的吡虫啉在实际田间浓度(3-11 mg kg-1)下不会影响水生切碎昆虫或or生活的survival的存活。然而,在这些浓度下检测到不利的亚致死作用。减少了水生昆虫和rates的摄食率,减少了叶片分解(质量损失),在among之间发生了可衡量的体重减轻,水生和陆地微生物的分解活性受到了明显的抑制。这项研究的结果表明,用吡虫啉进行系统处理以控制亚洲长角甲虫的枫树可能会产生衰老叶片,其残留水平足以通过对非目标分解生物的不利影响来减少水生和陆地环境中的自然分解过程。

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