A1 Vertaisarvioitu alkuperäisartikkeli tieteellisessä lehdessä

Exploring patterns of variation in clutch size-density reaction norms in a wild passerine bird




TekijätNicolaus M, Brommer JE, Ubels R, Tinbergen JM, Dingemanse NJ

KustantajaWILEY-BLACKWELL

Julkaisuvuosi2013

JournalJournal of Evolutionary Biology

Tietokannassa oleva lehden nimiJOURNAL OF EVOLUTIONARY BIOLOGY

Lehden akronyymiJ EVOLUTION BIOL

Numero sarjassa9

Vuosikerta26

Numero9

Aloitussivu2031

Lopetussivu2043

Sivujen määrä13

ISSN1010-061X

DOIhttps://doi.org/10.1111/jeb.12210


Tiivistelmä
Negative density dependence of clutch size is a ubiquitous characteristic of avian populations and is partly due to within-individual phenotypic plasticity. Yet, very little is known about the extent to which individuals differ in their degree of phenotypic plasticity, whether such variation has a genetic basis and whether level of plasticity can thus evolve in response to selection. Using 18years of data of a Dutch great tit population (Parus major), we show that females reduced clutch size with increasing population density (slopes of the reaction norms), differed strongly in their average clutch size (elevations of the reaction norms) at the population-mean density and that the latter variation was partly heritable. In contrast, we could not detect individual variation in phenotypic plasticity (IxE'). Level of plasticity is thus not likely to evolve in response to selection in this population. Observed clutch sizes deviated more from the estimated individual reaction norms in certain years and densities, implying that the within-individual between-year variance (so-called residual variance) of clutch size was heterogeneous with respect to these factors. Given the observational nature of this study, experimental manipulation of density is now warranted to confirm the causality of the observed density effects. Our analyses demonstrate that failure to acknowledge this heterogeneity would have inflated the estimate of IxE' and led to misinterpretation of the data. This paper thereby emphasizes the fact that heterogeneity in residuals can provide biologically insightful information about the ecological processes underlying the data.



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