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作为被动悬浮取食者的溪流昆虫:流速和食物浓度对取食性能的影响

Stream insects as passive suspension feeders: effects of velocity and food concentration on feeding performance.

作者信息

Finelli Christopher M, Hart David D, Merz Rachel

机构信息

Patrick Center for Environmental Research, Academy of Natural Sciences, 1900 Benjamin Franklin Parkway, Philadelphia, PA, 19103, USA.

Department of Biology, Swarthmore College, Swarthmore, PA, 19081, USA.

出版信息

Oecologia. 2002 Mar;131(1):145-153. doi: 10.1007/s00442-001-0852-x. Epub 2002 Mar 1.

Abstract

Benthic suspension feeders are important components of aquatic ecosystems, often dominating the use of space and influencing patterns of material cycling between the water column and benthos. Biomechanical theory predicts that feeding by these consumers is governed by the flux (i.e., product of food concentration and velocity) of particulate material to their feeding appendages. We performed a laboratory flume experiment to test how feeding by larval black flies (Simulium vittatum Zett.) responds to independent manipulations of flow and food concentration. We quantified larval body posture, flick rate of the labral fans, and ingestion rate as a function of two concentrations of a baker's yeast/chalk suspension (0.96 and 4.44 mg l) and five water velocities (20, 30, 45, 60, and 90 cm s). Using analysis of covariance, we found that both flick rate and ingestion rate increased in a decelerating manner with increasing velocity, while fan height decreased linearly with increasing velocity. In contrast, food concentration had no effect on any aspect of feeding behavior. Thus, although both velocity and food concentration contribute to particle flux, our results indicate that the two were not substitutable under the range of conditions tested here.

摘要

底栖悬浮生物是水生生态系统的重要组成部分,常常主导着空间利用,并影响水柱与底栖生物之间的物质循环模式。生物力学理论预测,这些消费者的摄食受颗粒物质向其摄食附肢的通量(即食物浓度与速度的乘积)支配。我们进行了一项实验室水槽实验,以测试黑蝇幼虫(Simulium vittatum Zett.)的摄食如何响应水流和食物浓度的独立操纵。我们将幼虫的身体姿势、唇扇的摆动频率和摄食率量化为两种浓度的面包酵母/白垩悬浮液(0.96和4.44毫克/升)以及五种水流速度(20、30、45、60和90厘米/秒)的函数。通过协方差分析,我们发现摆动频率和摄食率均随着速度增加而呈减速增加,而扇高随速度增加呈线性下降。相比之下,食物浓度对摄食行为的任何方面均无影响。因此,尽管速度和食物浓度均对颗粒通量有贡献,但我们的结果表明,在此处测试的条件范围内,二者不可相互替代。

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