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首页> 外文期刊>Ecology and Evolution >Bridge under troubled water: Turbulence and niche partitioning in fish foraging
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Bridge under troubled water: Turbulence and niche partitioning in fish foraging

机译:陷入困境的水下桥梁:鱼类觅食中的湍流和生态位分配

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Abstract The coexistence of competing species relies on niche partitioning. Competitive exclusion is likely inevitable at high niche overlap, but such divide between competitors may be bridged if environmental circumstances displace competitor niches to enhance partitioning. Foraging-niche dimension can be influenced by environmental characteristics, and if competitors react differently to such conditions, coexistence can be facilitated. We here experimentally approach the partitioning effects of environmental conditions by evaluating the influence of water turbulence on foraging-niche responses in two competing fish species, Eurasian perch Perca fluviatilis and roach Rutilus rutilus , selecting from planktonic and benthic prey. In the absence of turbulence, both fish species showed high selectivity for benthic chironomid larvae. R. rutilus fed almost exclusively on zoobenthos, whereas P. fluviatilis complemented the benthic diet with zooplankton (mainly copepods). In turbulent water, on the other hand, the foraging-niche widths of both R. rutilus and P. fluviatilis increased, while their diet overlap simultaneously decreased, caused by 20% of the R. rutilus individuals turning to planktonic (mainly bosminids) prey, and by P. fluviatilis increasing foraging on littoral/benthic food sources. We show that moderate physical disturbance of environments, such as turbulence, can enhance niche partitioning and thereby coexistence of competing foragers. Turbulence affects prey but not fish swimming capacities, with consequences for prey-specific distributions and encounter rates with fish of different foraging strategies (pause-travel P. fluviatilis and cruise R. rutilus ). Water turbulence and prey community structure should hereby affect competitive interaction strengths among fish species, with consequences for coexistence probability as well as community and system compositions.
机译:摘要竞争物种的共存依赖于生态位的划分。在较高的利基市场重叠中,竞争排斥可能是不可避免的,但是如果环境条件取代竞争者的壁to以增强分配,则可以弥合竞争者之间的这种鸿沟。觅食生态位的规模可能受环境特征的影响,如果竞争者对这种条件的反应不同,则可以促进共存。我们在这里通过评估水湍流对两种竞争鱼类,欧亚鲈鱼Perca fluviatilis和蟑螂Rutilus rut​​ilus的觅食-生态位反应的影响来实验性地研究环境条件的分区效应,从浮游生物和底栖生物中进行选择。在没有湍流的情况下,两种鱼类都对底栖的拟南芥幼虫表现出很高的选择性。 Rutilus几乎只以底栖动物为食,而fluviatilis则以浮游动物(主要是co足类)补充了底栖食物。另一方面,在湍流的水中,Rutilus和fluviatilis的觅食生态位宽度增加,而它们的饮食重叠同时减少,这是由于20%的Rutilus个体转向浮游(主要是胸怀)猎物,并通过河豚假单胞菌增加了对沿岸/底栖食物来源的觅食。我们表明,环境的适度物理扰动(例如湍流)可以增强生态位分配,从而使竞争性觅食者并存。湍流不影响猎物的游动能力,但会影响猎物的游动能力,并影响猎物的特定分布,并影响不同觅食策略的鱼的繁殖率(暂停游走河豚(P. fluviatilis)和巡游R. rutilus)。因此,水流和猎物的群落结构应影响鱼类之间竞争性相互作用的强度,并存于共存概率以及群落和系统组成的后果。

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