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寻找食物:彼得氏裸臀电鳗捕食昆虫幼虫所涉及的感官。

Finding food: senses involved in foraging for insect larvae in the electric fish gnathonemus petersii.

作者信息

Emde G

出版信息

J Exp Biol. 1998 Apr;201 (Pt 7):969-80. doi: 10.1242/jeb.201.7.969.

Abstract

The weakly electric fish Gnathonemus petersii searches at night for insect larvae in tropical African streams. The aim of this study was to determine the contributions of different sensory modalities to foraging. The time that fish needed to find two randomly placed chironomid larvae was measured. The influence of various senses on search time was investigated by blocking the use of one or more senses. Active electrolocation was used by most fish for prey detection in the dark. In addition, passive electrolocation played a role in some individuals. If light was available, vision could become the dominant sense in some individuals, replacing active electrolocation. The presence of chemical cues decreased prey detection time in most fish. Prey movements also shortened search times when active electrolocation and vision were not possible, indicating that the mechanosensory lateral line also plays a role in the detection of moving prey. The results show that G. petersii uses several senses simultaneously during foraging. Each individual favours a specific combination of the available sensory inputs. If one sensory modality is eliminated, fish can switch to other modalities, indicating that the food detection system is flexible and plastic.

摘要

弱电鱼彼得氏非洲长颌鱼在夜间于非洲热带溪流中搜寻昆虫幼虫。本研究的目的是确定不同感官模式在觅食过程中的作用。测量了鱼找到两只随机放置的摇蚊幼虫所需的时间。通过阻断一种或多种感官的使用,研究了各种感官对搜索时间的影响。大多数鱼在黑暗中利用主动电定位来探测猎物。此外,被动电定位在一些个体中也发挥了作用。如果有光线,视觉在一些个体中可能会成为主导感官,取代主动电定位。化学线索的存在缩短了大多数鱼探测猎物的时间。当无法进行主动电定位和视觉探测时,猎物的移动也缩短了搜索时间,这表明机械感觉侧线在探测移动猎物时也发挥了作用。结果表明,彼得氏非洲长颌鱼在觅食过程中同时使用多种感官。每个个体都偏爱可用感官输入的特定组合。如果一种感官模式被消除,鱼可以切换到其他模式,这表明食物探测系统具有灵活性和可塑性。

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