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首页> 外文期刊>Oikos: A Journal of Ecology >Consumer movement dynamics as hidden drivers of stream habitat structure: suckers as ecosystem engineers on the night shift
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Consumer movement dynamics as hidden drivers of stream habitat structure: suckers as ecosystem engineers on the night shift

机译:消费者运动动态作为溪流栖息地结构的隐藏司机:夜班时的傻瓜作为生态系统工程师

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Ecosystem engineering can control the spatial and temporal distribution of resources and movement by engineering organisms within an ecosystem can mobilize resources across boundaries and distribute engineering effects. Movement patterns of fishes can cause physical changes to aquatic habitats though nesting or feeding, both of which often vary in space and time. Here we present evidence of ecosystem engineering by the Sonora sucker Catostomus insignis, a dominant fish in streams of the southwestern United States, and show how cryptic nocturnal movement patterns and bioturbation activities control heterogeneity in benthic substrates, and in sediment and carbon export. Sonora suckers exhibit distinct diel movement patterns, spending daylight hours in refuge habitats (typically deep pools) while moving into shallow habitats at night to feed. Feeding by suckers creates substantial disturbance in soft sediments that are patchy in space and time. These disturbances moved up to 2.4 x 10(4) cm(3) of sediment per square meter per week in locations that are up to hundreds of meters away from sucker daytime refuges. The diel cycles in feeding activity (i.e. nocturnal digging in benthic substrates) caused nighttime pulses in suspended sediment that comprised up to 32% of the daily suspended load and organic matter transport of a stream reach. During the daytime, this particulate transport settles in habitats beyond the location of the initial disturbance, thus redistributing both sediment and organic matter. Our data indicate that cryptic movement by ecosystem engineers can distribute their effects in space and time generating heterogeneity in resources and suggest that habitat modifications restricting consumer movement may alter the impact of engineering activities.
机译:生态系统工程可以控制资源的空间和时间分布,通过生态系统内的工程生物体的流动可以调动界限的资源和分配工程效果。虽然嵌套或喂养,但是,鱼类的运动模式可能会对水生栖息地进行物理变化,这两者都在空间和时间内变化。在这里,我们提出了Sonora Sucker Catostomus Insignis的生态系统工程的证据,这是美国西南部的溪流中的主要鱼类,并展示了神秘的夜间运动模式和生物扰动活动如何控制底栖基材的异质性,以及沉积物和碳出口。 Sonora吸盘展示了不同的Diel运动模式,在避难所栖息地(通常是深池)的日光时光,同时在晚上搬进浅埋栖息地。喂食器喂养在空间和时间在软沉积物中产生了大量的干扰。这些干扰在每周每周每周达到2.4×10(4)厘米(3)个沉积物,距离吸盘日难度高达数百米。喂养活性的二氧化铈循环(即弯曲底物中的夜间挖掘)引起了悬浮沉积物中的夜间脉冲,其占每日悬浮载荷的32%的悬浮载荷和流达的有机物质运输。在白天期间,这种微粒运输在初始干扰位置的栖息地沉降,从而重新分配沉积物和有机物。我们的数据表明,生态系统工程师的密码运动可以在节省空间和时间在资源中产生异质性,并建议限制消费者运动的栖息地修改可能会改变工程活动的影响。

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