双模报警信号会调节 Camponotus modoc 木匠蚁对单模报警信号的反应。

IF 2.9 1区 农林科学 Q1 ENTOMOLOGY Insect Science Pub Date : 2025-02-01 Epub Date: 2024-05-15 DOI:10.1111/1744-7917.13375
Asim Renyard, Gerhard Gries
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引用次数: 0

摘要

受惊的西部木蚁(Camponotus modoc)会产生报警信息素和基质振动。报警信息素能吸引巢友,但振动信号或双峰信息素和振动信号的效果尚不清楚。据报道,两种 Camponotus 同系昆虫的工蚁会静止不动("冻结")或快速奔跑,以应对塑料上输入的工程鼓动振动,但对蚂蚁在木材上产生的振动信号的许多反应尚未进行研究。一般来说,在脊椎动物捕食者的攻击下,朝向信号器似乎是不适应的,对蚂蚁群落并无益处。我们测试了以下假设:(1)振动报警信号会导致巢友冻结、快速奔跑,但不会吸引巢友;(2)双模报警信号会调节对单模报警信号的反应,从而可能降低捕食风险。激光多普勒测振仪的记录显示,蚂蚁的振动信号很容易通过蚁巢薄片传播,从而迅速向巢友通报所感知到的威胁。为了记录和传递振动信号,我们对扬声器进行了改装,在花旗松单板上获得了受难蚂蚁的鼓动信号,并对悬挂着单板地板的竞技场中的蚂蚁进行了信号效应生物测定。在回放振动信号时,蚂蚁会迅速奔跑或僵住,但不会靠近振动信号。接触到报警信息素时,蚂蚁会频繁接近信息素源。然而,同时接触报警信息素和振动信号时,蚂蚁访问信息素源的频率较低,但 "冻结 "的时间较长。蚂蚁对双模信号的调节反应似乎是适应性的,但其对繁殖的益处仍有待量化。
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Bimodal alarm signals modulate responses to monomodal alarm signals in Camponotus modoc carpenter ants.

Distressed western carpenter ants, Camponotus modoc, produce alarm pheromone and substrate-borne vibrations. The alarm pheromone attracts nestmates but the effects of vibratory signals, or of bimodal pheromonal and vibratory signals, are not known. Worker ants of two Camponotus congeners reportedly stand still ("freeze") or run fast in response to engineered drumming vibrations inputted on plastic, but many responses to ant-produced vibratory signals on wood have not yet been investigated. Generally, orientating toward signalers under vertebrate predator attack seems maladaptive and not beneficial to ant colonies. We tested the hypotheses (1) that vibratory alarm signals cause freezing, rapid running but not attraction of nestmates, and (2) that bimodal alarm signals modulate responses to monomodal alarm signals, thereby possibly reducing predation risk. Laser Doppler vibrometry recordings revealed that the ants' vibratory signals readily propagate through ant nest lamellae, and thus quickly inform nest mates of perceived threats. With a speaker modified to record and deliver vibratory signals, we obtained drumming signals of distressed ants on a Douglas fir veneer, and bioassayed signal effects on ants in an arena with a suspended veneer floor. In response playback of vibratory signals, ants ran rapidly, or froze, but did not approach the vibratory signals. Exposed to alarm pheromone, ants frequently visited the pheromone source. However, concurrently exposed to both alarm pheromone and vibratory signals, ants visited the pheromone source less often but spent more time "frozen." The ants' modulated responses to bimodal signals seem adaptive but the reproductive fitness benefits are still to be quantified.

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来源期刊
Insect Science
Insect Science 生物-昆虫学
CiteScore
7.80
自引率
5.00%
发文量
1379
审稿时长
6.0 months
期刊介绍: Insect Science is an English-language journal, which publishes original research articles dealing with all fields of research in into insects and other terrestrial arthropods. Papers in any of the following fields will be considered: ecology, behavior, biogeography, physiology, biochemistry, sociobiology, phylogeny, pest management, and exotic incursions. The emphasis of the journal is on the adaptation and evolutionary biology of insects from the molecular to the ecosystem level. Reviews, mini reviews and letters to the editor, book reviews, and information about academic activities of the society are also published.
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