首页> 外文期刊>The Journal of Experimental Biology >Homing strategies of the Australian desert ant Melophorus bagoti. I. Proportional path-integration takes the ant half-way home
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Homing strategies of the Australian desert ant Melophorus bagoti. I. Proportional path-integration takes the ant half-way home

机译:澳大利亚沙漠蚂蚁Melophorus bagoti的归巢策略。 I.比例路径整合将蚂蚁中途带回家

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摘要

Highly evolved eusocial insects such as ants return from a food source to their nest by the shortest possible distance. This form of navigation, called path-integration, involves keeping track of the distance travelled and the angles steered on the outbound journey, which then aids in the computation of the shortest return distance. In featureless terrain, ants rely on the path integrator to travel the entire distance to return to the nest, whereas in landmark-rich habitats ants are guided by visual cues and in the absence of the visual cues homing ants rely on the path integrator to travel only an initial 10-60 cm of the homebound distance. The functioning of the path integrator in a habitat of intermediate landmark density is unknown. The findings reported here show that when the outward journey is on a familiar foraging area, and the inward journey is on an unfamiliar area, the Australian route-following desert ant Melophorus bagoti relies on the path integrator and consistently travels half the distance of the outward trip. However, when both the outward and inward trips are performed in plain and featureless channels, which blocks the distinct terrestrial visual cues, ants travel the entire distance accurately. A similar half-way abbreviation of the home vector occurs when the ant's outward trip is in an L-shaped channel and the homeward trip is over an open and unfamiliar region. The ecological significance of these new findings is discussed.
机译:诸如蚂蚁之类的高度进化的共生昆虫从食物源以最短的距离返回其巢穴。这种导航形式称为路径整合,涉及跟踪出行距离和出站航向所引导的角度,从而有助于计算最短的返回距离。在无特征的地形中,蚂蚁依靠路径积分器移动整个距离以返回巢穴,而在地标丰富的栖息地中,蚂蚁则受到视觉提示的引导,而在没有视觉提示的情况下,归巢蚂蚁依靠路径积分器进行移动起始距离只有10-60厘米。路径积分器在中等地标密度的栖息地中的功能尚不清楚。此处报告的调查结果表明,当向外旅行是在熟悉的觅食区而向内旅行是在不熟悉的地区时,澳大利亚跟随路线的沙漠蚂蚁Melophorus bagoti依赖路径整合器,并且始终走出向外距离的一半旅行。但是,当在平坦且无特征的通道中执行向外旅行和向内旅行时,都会阻挡明显的地面视觉提示,因此蚂蚁会精确地移动整个距离。当蚂蚁的向外行程在L形通道中并且向返程在开放且陌生的区域上时,会发生类似的居家矢量缩写。讨论了这些新发现的生态意义。

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