...
首页> 外文期刊>Sociobiology >Fast Food Delivery: Is There a Way for Foraging Success in Leaf-Cutting Ants?
【24h】

Fast Food Delivery: Is There a Way for Foraging Success in Leaf-Cutting Ants?

机译:快速交付食品:有没有一种方法可以在切叶蚁中觅得成功?

获取原文
           

摘要

Walking long distances through a trail system is an intrinsic feature of the leaf-cutting ants. Workers travel hundred of meters to forage by using well-defined physical routes which are cleared of vegetation or obstacles. Despite the costs of construction and maintenance, cleared trails should promote more benefits than non-physical ones, especially related to the leaf supply for the colony. Here, the leaf delivery rate in constructed and non-constructed trails was compared by counting the foraging flow and travel time of workers. Also the length and width of trails were measured. It was found that leaf delivery rate was 67.47% higher for foragers who were walking along physical trails. The forager walking speed on physical trails had an increment of 86.10%. These significant increments might be related to the truly narrow corridor present inside physical trails that are leaf litter-free, and thereby chemically stronger and smoother than non-physical ones. The speed improvement could induce the construction of longer trails which guide the workers more efficiently to the foraging patch. Thus, physical trails have an important role in foraging efficiency as they allow workers go quickly and further to forage, since they limit a path and congregate more individuals, raising the leaf delivery rate. This study provides additional information about foraging trails of leaf-cutting ants.
机译:长距离穿越小径系统是切叶蚁的一个固有特征。工人通过使用明确的物理路线清除草木或障碍物,以进行数百米的觅食。尽管建设和维护成本高昂,但经过清理的小径应比非自然小径带来更多好处,尤其是与殖民地的叶子供应有关。在这里,通过计算工人的觅食流量和出行时间,比较了在人工和非人工路径中的叶子输送率。还测量了路径的长度和宽度。研究发现,沿着物理步道行走的觅食者的叶子输送率高出67.47%。觅食者在物理步道上的行走速度增加了86.10%。这些重要的增量可能与物理路径中真正狭窄的走廊有关,这些物理路径没有叶子的凋落物,因此比非物理路径的化学作用更强,更光滑。速度的提高可能会导致建设更长的步道,从而将工人更有效地引导至觅食场。因此,物理路径对觅食效率具有重要作用,因为它们可以限制工人前进的道路并聚集更多的个体,从而提高了工人的觅食速度,提高了叶片的输送速度。这项研究提供了有关切叶蚂蚁觅食轨迹的其他信息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号