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Leaf-litter processing in headwater streams of northern Iberian Peninsula: Moderate levels of eutrophication do not explain breakdown rates

机译:伊比利亚北部半岛上游水域的凋落物处理:中度富营养化不能解释其分解率

摘要

Agricultural and urban runoffs result in increased nitrogen and phosphorus inputs in rivers and are the cause of eutrophication. Headwater streams are less frequently affected by these impairments because of the low-to-moderate human activities there. Eutrophication can affect the structure and function of benthic communities in headwater streams, stimulating the activity of heterotrophic microorganisms and macroinvertebrates on a pivotal process such as leaf-litter decomposition. In this study, we monitored the breakdown of alder leaves in six headwater streams that constitute a moderate nutrient enrichment gradient. Breakdown experiments were conducted in autumn-winter and leaf carbon, nitrogen and phosphorus, and associated aquatic hyphomycetes and macroinvertebrates were determined. The increase in nutrient availability in the stream water enhanced leaf-litter quality and led to an increase in the hyphomycete assemblage evenness and a reduction of shredder densities. However, contrary to our expectations, dissolved nutrient availability did not explain the breakdown rates. Thus, the absence of a clear effect of nutrient enrichment of stream water on the leaf breakdown rate highlights the difficulties of predicting the response of this ecosystem process to slight levels of eutrophication in headwater streams. © 2013 Springer Science+Business Media Dordrecht.
机译:农业和城市径流导致河流中氮和磷的输入增加,并且是富营养化的原因。由于那里的人类活动较低至中等,源头溪流受这些损害的影响较小。富营养化会影响上游水域底栖生物群落的结构和功能,从而刺激异养微生物和大型无脊椎动物在诸如凋落物分解等关键过程中的活动。在这项研究中,我们监测了构成适度养分富集梯度的六种源头水流中al木叶片的分解情况。在秋冬和叶片碳,氮和磷中进行了分解实验,并确定了相关的水生真菌和大型无脊椎动物。溪流水中养分利用率的提高提高了叶子凋落物的质量,并提高了菌丝体的均匀度并降低了切碎机的密度。但是,与我们的预期相反,溶解的养分利用率无法解释分解率。因此,缺乏对溪流水的营养富集对叶片分解速率的明确影响,突出表明了预测这一生态系统过程对源头溪流中富营养化水平的响应的困难。 ©2013 Springer Science +商业媒体多德雷赫特。

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