4.7 Article

Nutritional state and collective motion: from individuals to mass migration

期刊

出版社

ROYAL SOC
DOI: 10.1098/rspb.2010.1447

关键词

mass migration; desert locust; swarming; nutrition; animal movement

资金

  1. Natural Environment Research Council
  2. Searle Scholars Award [08-SPP-201]
  3. National Science Foundation [PHY-0848755]
  4. Office of Naval Research [N00 014-09-1-1074]
  5. DARPA [HR0011-09-1-0055]
  6. German Science Foundation [Sfb555]
  7. Australian Research Council
  8. Division Of Physics
  9. Direct For Mathematical & Physical Scien [848755] Funding Source: National Science Foundation

向作者/读者索取更多资源

In order to move effectively in unpredictable or heterogeneous environments animals must make appropriate decisions in response to internal and external cues. Identifying the link between these components remains a challenge for movement ecology and is important in understanding the mechanisms driving both individual and collective motion. One accessible way of examining how internal state influences an individual's motion is to consider the nutritional state of an animal. Our experimental results reveal that nutritional state exerts a relatively minor influence on the motion of isolated individuals, but large group-level differences emerge from diet affecting inter-individual interactions. This supports the idea that mass movement in locusts may be driven by cannibalism. To estimate how these findings are likely to impact collective migration of locust hopper bands, we create an experimentally parametrized model of locust interactions and motion. Our model supports our hypothesis that nutrient-dependent social interactions can lead to the collective motion seen in our experiments and predicts a transition in the mean speed and the degree of coordination of bands with increasing insect density. Furthermore, increasing the interaction strength (representing greater protein deprivation) dramatically reduces the critical density at which this transition occurs, demonstrating that individuals' nutritional state could have a major impact on large-scale migration.

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