Temporal and spatial patterns in the emigrations of the army ant Dorylus (Anomma) molestus in the montane forest of Mt Kenya

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  • Caspar Schöning
  • Washington M. Njagi
  • Nigel R. Franks
1. The emigration behaviour of the army ant Dorylus (Anomma) molestus was studied in the montane forest of Mt Kenya. This species forages by massive swarm raids (mean width 10.3 m ± 4.6 m SD), which are assumed to have a strong negative impact on the densities of prey populations.

2. For non-reproductive colonies the stay duration in a nest is highly variable (median 17, range 3-111 days). This suggests that the frequency of emigrations is not dictated by a brood cycle as an underlying endogenous pattern generator.

3. Colony density is high (mean nearest neighbour's distance 82.1 m ± 29.4 m SD) and mean foraging range is 75.0 m, so encounters with neighbouring colonies occur frequently.

4. The straight line emigration distance is on average 92.7 m (± 29.7 SD). The emigration direction is random with respect to absolute bearing and also relative to the direction of the previous emigration. However, the emigration direction is influenced by the location of the nearest neighbour. Colonies typically emigrate directly away from their nearest neighbour.

5. Local food depletion is likely to be the ultimate cause for emigrations in this species, because emigration distance is larger than foraging range and colonies move away from their nearest neighbour. A small percentage of emigrations may be triggered by pangolin attacks on nests.

6. Contrary to the prediction of a recently developed mathematical model for epigaeic swarm-raiding Dorylus (Anomma) species, D. (A.) molestus colonies do not engage in intraspecific battles. Possible reasons for the absence of fights between colonies despite apparently fierce intraspecific competition are discussed.

Original languageEnglish
JournalEcological Entomology
Volume30
Issue number5
Pages (from-to)532-540
ISSN0307-6946
DOIs
Publication statusPublished - 2005

Bibliographical note

KEYWORDS
Competition • encounters • nest relocation • nomadism • swarm raiding

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