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Top predator absence enhances leaf breakdown in an intermittent stream

机译:顶级掠食者的缺席加剧了间歇流中的叶片破裂

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摘要

Current biodiversity loss is characterized by the extinction of top predators, but small-bodied freshwater fish are often overlooked in research and conservation management even when threatened because they usually lack commercial value. Therefore, the ecosystem impacts of their possible loss remain mostly unknown. We assessed whether the presence/absence of an endangered predatory fish (Barbus meridionatis (A. Risso, 1827)) in an intermittent stream affects leaf fungal biomass and leaf quality (i.e. leaf carbon:nitrogen ratio and leaf toughness), macroinvertebrate assemblages colonizing leaf packs, and leaf breakdown rates. We conducted a leaf bag experiment comparing a control reach with a population of B. meridionalis with an adjacent upstream fishless reach. In the fishless reach, leaf fungal biomass and microbially mediated breakdown rate were lower compared to the control reach. This was probably caused by the lack of the bottom-up stimulation through nutrient recycling by fish. Shredders and scrapers were found at higher abundance and biomass in the fishless compared to the control reach, and the whole macroinvertebrate community composition changed with fish absence. Consequently, macroinvertebrate mediated leaf breakdown was faster in the fishless than in the control reach, not only compensating for the lower microbially mediated leaf breakdown in the fishless reach, but accelerating the overall leaf breakdown rate. Our study contributes to understand the potential cascading effects produced by the extirpation of endangered small-bodied fish.
机译:当前生物多样性的丧失以顶级捕食者的灭绝为特征,但是即使在受到威胁的情况下,小体淡水鱼也常常在研究和保护管理中被忽视,因为它们通常缺乏商业价值。因此,其潜在损失对生态系统的影响仍然未知。我们评估了间断流中是否存在濒危的掠食性鱼类(Barbus meridionatis(A. Risso,A. Risso,1827))是否影响叶片真菌生物量和叶片质量(即叶片碳:氮比和叶片韧性),大型无脊椎动物组合定居在叶片上包和叶子分解率。我们进行了一项叶袋实验,将对照组和子午线虫的种群与上游无鱼种群进行了比较。在无鱼区,与对照区相比,叶片真菌生物量和微生物介导的分解率较低。这可能是由于缺乏鱼类养分循环利用自下而上的刺激所致。与对照范围相比,无鱼中的碎纸机和刮板机具有更高的丰度和生物量,并且整个大型无脊椎动物群落组成都随着缺鱼而变化。因此,无脊椎动物中大型无脊椎动物介导的叶片分解速度快于对照范围,不仅补偿了无鱼类触角中较低的微生物介导的叶片分解速度,而且加速了整体叶片分解速率。我们的研究有助于了解濒临灭绝的小体鱼灭绝所产生的潜在连锁效应。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第1期|1123-1131|共9页
  • 作者单位

    Freshwater Ecology and Management (F.E.M.) Research Croup, Departament de Biologia Evolutiva, Ecologia i Ciencies Ambientals, Facultat de Biologia, Universitat de Barcelona, Barcelona, Spain;

    Freshwater Ecology and Management (F.E.M.) Research Croup, Departament de Biologia Evolutiva, Ecologia i Ciencies Ambientals, Facultat de Biologia, Universitat de Barcelona, Barcelona, Spain;

    Freshwater Ecology and Management (F.E.M.) Research Croup, Departament de Biologia Evolutiva, Ecologia i Ciencies Ambientals, Facultat de Biologia, Universitat de Barcelona, Barcelona, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Food web; Freshwater fish; Fungal biomass; Macroinvertebrate communities; Mediterranean stream; Species extinction;

    机译:食物网;淡水鱼;真菌生物量无脊椎动物群落;地中海溪流;物种灭绝;

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