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Impacts of pesticides and natural stressors on leaf litter decomposition in agricultural streams

机译:农药和自然胁迫对农业流叶片凋落物分解的影响

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Agricultural pesticides are known to significantly impact the composition of communities in stream ecosystems. Moreover, agricultural streams are often characterised by loss of physical habitat diversity which may impose additional stress resulting from suboptimal environmental conditions. We surveyed pesticide contamination and rates of leaf litter decomposition in 14 1st and 2nd order Danish streams using litter bags with coarse and fine mesh sizes. Two sites differing in physical habitat complexity were sampled in each stream, and we used this approach to differentiate the effects of pesticides between sites with uniform (silt and sand) and more heterogeneous physical properties. Microbial litter decomposition was reduced by a factor two to four in agricultural streams compared to forested streams, and we found that the rate of microbial litter decomposition responded most strongly to pesticide toxicity for microorganisms and not to eutrophication. Moreover, the rate of microbial litter decomposition was generally 50% lower at sites with uniform physical habitats dominated by soft substrate compared to the sites with more heterogeneous physical habitats. The rate of macroinvertebrate shredding activity was governed by the density of shredders, and the density of shredders was not correlated to pesticide contamination mainly due to high abundances of the amphipod Gammarus pulex at all sites. Our study provides the first field based results on the importance of multiple stressors and their potential to increase the effect of agricultural pesticides on important ecosystem processes.
机译:众所周知,农业农药会严重影响河流生态系统中社区的组成。此外,农业流通常以物理栖息地多样性的丧失为特征,这可能会因环境条件欠佳而造成额外的压力。我们使用粗细筛孔的垃圾袋调查了14条1阶和2阶丹麦溪流中的农药污染和叶片凋落物分解的速率。在每个河流中采样了两个物理栖息地复杂性不同的地点,我们使用这种方法来区分农药(具有均匀的(粉砂和沙土)和物理性质更为不同的地点)的影响。与森林流相比,农业流中微生物凋落物的分解减少了2到4倍,并且我们发现微生物凋落物分解的速率对农药对微生物的毒性反应最强,而对富营养化反应却最弱。此外,与物理异质性较多的地点相比,在具有均匀的,以软质基质为主的物理栖息地的地点,微生物凋落物的分解率通常低50%。大型无脊椎动物切碎活动的速率受切碎机的密度控制,而切碎机的密度与农药污染无关,这主要是由于所有地点的两栖类双足类γ-粉刺的丰度很高。我们的研究提供了第一个基于现场的结果,涉及多种胁迫源的重要性及其潜在作用,可提高农业农药对重要生态系统过程的影响。

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