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酸化对林地溪流底栖和渗流区叶凋落物分解的影响。

Effect of acidification on leaf litter decomposition in benthic and hyporheic zones of woodland streams.

机构信息

Université de Toulouse, INP, UPS, Laboratoire Ecologie Fonctionnelle et Environnement, UMR CNRS 5245, Toulouse, France.

出版信息

Water Res. 2012 Dec 1;46(19):6430-44. doi: 10.1016/j.watres.2012.09.023. Epub 2012 Sep 18.

Abstract

Anthropogenic acidification has deleterious effects on both structure and functioning of surface water ecosystems. This study examined how it may affect the leaf decomposition rate and the community structure and activity of decomposers in both benthic and hyporheic zones of five headwater streams along an acidification gradient from highly acidic (pH 4.6) to circumneutral (pH 7.4). Overall, responses to acidification in hyporheic zones were less pronounced, but followed the same pattern as in their benthic counterparts. Leaf decomposition was much faster in the circumneutral stream, both in the hyporheic and benthic zones (k = 0.0068 and 0.0534 d(-1), respectively), than in the most acidic one (k = 0.0016 and 0.0055 d(-1), respectively), and correlated well with the acidic gradient in both compartments. Interestingly, leaf litter decomposition was less affected by acidification in hyporheic compared to benthic compartments, likely due to the relatively low sensitivity of fungi, which were the main decomposers of buried coarse particulate organic matter. These results argue in favour of conserving hyporheic habitats in acidified streams as they can maintain matter and species fluxes that are essential to the ecosystem.

摘要

人为酸化对地表水生态系统的结构和功能都有有害影响。本研究探讨了它可能如何影响 5 条溪流的底栖和潜流区的叶片分解速率以及分解者的群落结构和活性,这些溪流的酸化梯度从强酸性(pH 值 4.6)到近中性(pH 值 7.4)。总的来说,潜流区对酸化的响应不太明显,但与底栖区的响应模式相同。在近中性溪流中,无论是在潜流区还是底栖区,叶片分解都比最酸性溪流中快得多(k 值分别为 0.0068 和 0.0534 d(-1)),并且与两个区室中的酸性梯度都很好地相关。有趣的是,与底栖区相比,潜流区的叶片凋落物分解受酸化的影响较小,这可能是由于真菌的相对较低的敏感性所致,真菌是埋藏粗颗粒有机物质的主要分解者。这些结果支持保护酸化溪流中的潜流区,因为它们可以维持对生态系统至关重要的物质和物种通量。

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