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斑块状床层干扰和鱼类捕食独立地影响溪流无脊椎动物和藻类的分布。

Patchy bed disturbance and fish predation independently influence the distribution of stream invertebrates and algae.

机构信息

Department Biology II, Aquatic Ecology, University of Munich (LMU), Großhaderner Str. 2, 82152 Planegg-Martinsried, Germany.

出版信息

J Anim Ecol. 2011 May;80(3):603-14. doi: 10.1111/j.1365-2656.2011.01807.x. Epub 2011 Feb 17.

DOI:10.1111/j.1365-2656.2011.01807.x
PMID:21323920
Abstract
  1. The identification of factors determining the patchy distribution of organisms in space and time is a central concern of ecology. Predation and abiotic disturbance are both well-known drivers of this patchiness, but their interplay is still poorly understood, especially for communities dominated by mobile organisms in frequently disturbed ecosystems. 2. We investigated the separate and interactive influences of bed disturbance by floods and predation by fish on the benthic community in a flood-prone stream. Electric fields excluded fish predators from half of 48 stream bed patches (area 0·49 m(2) ) with contrasting disturbance treatments. Three types of bed disturbance were created by either scouring or filling patches to a depth of 15-20 cm or by leaving the patches undisturbed, thus mimicking the mosaic of scour and fill caused by a moderate flood. Benthic invertebrates and algae were sampled repeatedly until 57 days after the disturbance. 3. Disturbance influenced all ten investigated biological response variables, whereas predation affected four variables. Averaged across time, invertebrate taxon richness and total abundance were highest in stable patches. Algal biomass and densities of five of the seven most common invertebrate taxa (most of which were highly mobile) were higher in fill than in scour patches, whereas two taxa were more abundant in scour and stable than in fill patches. Furthermore, two common invertebrate grazers were more abundant and algal biomass tended to be reduced in fish exclusion patches, suggesting a patch-scale trophic cascade from fish to algae. 4. Our results highlight the importance of patchy physical disturbance for the microdistribution of mobile stream organisms and indicate a notable, but less prevalent, influence of fish predation at the patch scale in this frequently disturbed environment. Disturbance and predation treatments interacted only once, suggesting that the observed predation effects were largely independent of local bed disturbance patterns.
摘要
  1. 确定决定生物在时空上斑块分布的因素是生态学的核心关注点。捕食和非生物干扰都是导致这种斑块化的已知驱动因素,但它们之间的相互作用仍知之甚少,特别是对于经常受到干扰的生态系统中以移动生物为主的群落。

  2. 我们调查了洪水引起的基底干扰和鱼类捕食对洪水多发溪流底层生物群落的单独和交互影响。电场将鱼类捕食者排除在 48 个基底斑块(面积 0.49 m2)的一半之外,这些斑块具有不同的干扰处理方式。通过将斑块冲刷或填充到 15-20 厘米的深度,或者保持斑块不受干扰,模拟中度洪水造成的冲刷和填充的镶嵌模式,从而创建了三种基底干扰类型。在干扰后 57 天内,反复采集底栖无脊椎动物和藻类样本。

  3. 干扰影响了所有 10 个调查的生物响应变量,而捕食仅影响了 4 个变量。平均而言,在稳定的斑块中,无脊椎动物分类群丰富度和总丰度最高。藻类生物量和 7 种最常见无脊椎动物(其中大多数高度移动)的密度在填充斑块中高于冲刷斑块,而有两个类群在冲刷和稳定斑块中的丰度高于填充斑块。此外,两种常见的无脊椎动物食草动物在鱼类排斥斑块中更为丰富,藻类生物量也有所减少,这表明鱼类到藻类的斑块尺度上存在营养级联。

  4. 我们的研究结果强调了基底物理干扰对移动溪流生物微观分布的重要性,并表明在这种经常受到干扰的环境中,鱼类捕食在斑块尺度上具有显著但不太普遍的影响。干扰和捕食处理仅相互作用了一次,这表明观察到的捕食效应在很大程度上独立于局部基底干扰模式。

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