Predation risk in a migratory butterfly increases southward along a latitudinal gradient

Author:

Stefanescu Constanti1ORCID,Pla‐Narbona Clàudia1,Ubach Andreu1,Jarrett Crinan2ORCID,Renelies‐Hamilton Justinn3,Colom Pau4ORCID

Affiliation:

1. Natural Sciences Museum of Granollers Granollers Spain

2. Bird Migration Unit, Swiss Ornithological Institute Sempach Switzerland

3. Jane Goodall Institute Spain and Senegal, Dindefelo Biological Station Dindefelo Kedougou Senegal

4. Department of Evolutionary Biology, Ecology and Environmental Sciences, University of Barcelona Barcelona Spain

Abstract

In migratory insects performing multigenerational migration, such as the painted lady butterfly Vanessa cardui, successive generations face a wide variety of predator communities and may be subject to different predation risks. Here, we analyze the pattern of wing damage of over 2000 butterflies to investigate, for the first time, the risk of predation of adult painted ladies across a latitudinal range of ca 3500 km extending from the northern Mediterranean through the Maghreb to sub‐Saharan West Africa. Large number of butterflies showed substantial wing damage attributable to failed attacks, with birds, mantids and lizards being the most likely predators. The risk of attack increased towards the equator, even after controlling for wing wear. In addition, there was a strong effect of butterfly size on predation risk, with larger butterflies facing a higher risk compared to their smaller counterparts, and clear evidence that females suffered more attacks than males. Although size is a major factor, latitude was a stronger predictor of predation risk across the migratory system, as evidenced by greater wing damage in butterflies at lower latitudes, even though their size notably decreased. These results raise an interesting evolutionary conflict, with a tradeoff between size and predation risk, as larger butterflies are likely to be more fecund and efficient in migratory flight but, at the same time, more vulnerable to predation.

Publisher

Wiley

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