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Evolution of avian clutch size along latitudinal gradients: do seasonality, nest predation or breeding season length matter?
Author(s) -
GRIEBELER E. M.,
CAPRANO T.,
BÖHNINGGAESE K.
Publication year - 2010
Publication title -
journal of evolutionary biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.289
H-Index - 128
eISSN - 1420-9101
pISSN - 1010-061X
DOI - 10.1111/j.1420-9101.2010.01958.x
Subject(s) - avian clutch size , biology , ecology , predation , fecundity , nest (protein structural motif) , seasonal breeder , tropics , trait , temperate climate , life history theory , population , clutch , seasonality , reproduction , life history , demography , thermodynamics , biochemistry , physics , sociology , computer science , programming language
Birds display a latitudinal gradient in clutch size with smaller clutches in the tropics and larger in the temperate region. Three factors have been proposed to affect this pattern: seasonality of resources (SR), nest predation and length of the breeding season (LBS). Here, we test the importance of these factors by modelling clutch size evolution within bird populations under different environmental settings. We use an individual‐based ecogenetic simulation model that combines principles from population ecology and life history theory. Results suggest that increasing SR from the tropics to the poles by itself or in combination with a decreasing predation rate and LBS can generate the latitudinal gradient in clutch size. Annual fecundity increases and annual adult survival rate decreases from the tropics to the poles. We further show that the annual number of breeding attempts that (together with clutch size) determines total annual egg production is an important trait to understand latitudinal patterns in these life history characteristics. Field experiments that manipulate environmental factors have to record effects not only on clutch size, but also on annual number of breeding attempts. We use our model to predict the outcome of such experiments under different environmental settings.