4.3 Article

Synchronization of laying by great spotted cuckoos and recognition ability of magpies

Journal

JOURNAL OF AVIAN BIOLOGY
Volume 46, Issue 6, Pages 608-615

Publisher

WILEY
DOI: 10.1111/jav.00627

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Funding

  1. Spanish Ministerio de Economia y Competitividad/FEDER [CGL2011-25634/BOS, CGL2010-19233-C03-01]
  2. Research was conducted according to actual national [1201/2005]

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Brood parasites rely entirely on the parental care of host species to raise the parasitic nestlings until independence. The reproductive success of avian brood parasites depends on finding host nests at a suitable stage (i.e. during egg laying) for parasitism and weakly defensive (i.e. non-ejector) hosts. Finding appropriate nests for parasitism may, however, vary depending on ecological conditions, including parasite abundance in the area, which also varies from one year to another and therefore may influence coevolutionary relationships between brood parasites and their hosts. In this scenario, we explored: 1) the degree of laying synchronization between great spotted cuckoos Clamator glandarius and magpies Pica pica during two breeding seasons, which varied in the level of selection pressure due to brood parasitism (i.e. parasitism rate); 2) magpie responses to natural parasitism in the pre-laying period and successfulness of parasitic eggs laid at this stage; and 3) magpie responses to experimental parasitism performed at different breeding stages. We found that, during the year of higher parasitism rate, there was an increase in the percentage of parasitic eggs laid before magpies started laying. However, the synchronization of laying was poor both years regardless of the differences in the parasitism rate. The ejection rate was significantly higher during the pre-egg-laying and the post-hatching stages than during the laying stage, and hatching success of parasitic eggs laid during the pre-egg-laying stage was zero. Thus, non-synchronized parasitic eggs are wasted and therefore poor synchronization should be penalized by natural selection. We discuss four different hypotheses explaining poor synchronization.

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