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Published on: May 24, 2014
Chick Begging Strategies in Relation to Brood Hierarchies and Hatching Asynchrony
Insights
Parent birds preferentially feed older chicks, even though they beg less. This challenges existing evolutionary models of parent-offspring communication and begging behavior.
Area of Science:
- Behavioral Ecology
- Evolutionary Biology
- Animal Communication
Background:
- Altricial offspring solicit food through begging, with intensity linked to need.
- Theoretical models, based on handicap theory, predict poorer offspring beg more and receive preferential feeding.
Purpose of the Study:
- To investigate the influence of sibling competition on begging behavior and parent provisioning.
- To test the predictions of existing theoretical models under more realistic conditions.
Main Methods:
- Manipulating hatching asynchrony in starling (Sturnus vulgaris) broods to control competitive asymmetries.
- Creating broods with senior (older), junior (younger), and synchronous (control) chicks.
- Conducting field and laboratory experiments to record begging intensity and measure growth.
Main Results:
- Senior chicks begged less intensely than junior and control chicks.
- Junior chicks did not beg significantly differently from controls.
- Senior chicks received more food and exhibited better growth, indicating preferential parental care.
Conclusions:
- Observed begging behavior and feeding outcomes contradict predictions from current theoretical models.
- Assumptions regarding condition-fitness relationships and the exclusion of sibling competition limit model universality.
- Fundamental aspects of parent-offspring communication and resource allocation remain poorly understood.
Abstract:
Altricial offspring solicit food by begging, and their parents feed them according to begging intensity, which has been shown to be positively related to offspring need. Parent-offspring genetic conflict calls for analyses of evolutionary stability, and various theoretical models have shown that stability is possible in the framework of handicap theory. The models predict that a negative relationship exists between offspring condition and begging and that offspring in poorer condition should be fed preferentially. However, these predictions depend on two unsatisfactory assumptions. First, they assume a monotonically decelerated relation between condition and fitness (this function is more likely to be sigmoid); second, they ignore physical competition between siblings, which is known to be important. We examined the significance of these issues by manipulating hatching asynchrony in broods of starlings Sturnus vulgaris, thus controlling competitive asymmetries between nest mates. We created broods with senior (older) and junior (younger) chicks and control broods with synchronous chicks. In field and laboratory experiments, we found that seniors begged less than juniors and controls, whereas juniors did not differ significantly from controls. However, seniors received more food from their parents and grew better than juniors or controls (hence, they were in better condition). These results violate the predictions of available theoretical models and, together with limitations in the universality of their assumptions, indicate that fundamental aspects of parent-offspring communication are not yet understood.
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