Rasmussen, Nick L.Rudolf, Volker H.W.2015-10-012015-10-012015Rasmussen, Nick L. and Rudolf, Volker H.W.. "Phenological synchronization drives demographic rates of populations." <i>Ecology,</i> 96, (2015) Ecological Society of America: 1754-1760. http://dx.doi.org/10.1890/14-1919.1.https://hdl.handle.net/1911/81861Phenology is increasingly recognized as an important factor structuring communities because it determines when and at what life stage organisms interact. Previous work indicates that changes in first or mean timing of a phenological event can affect populations and communities, but little is known about the consequences of changes in the distribution (e.g., synchrony) of a phenological event. We conducted an experiment using an anuran study system to determine how synchrony of reproduction and egg hatching affects offspring performance, whether the effects are density dependent, and how hatching synchrony influences the synchrony of a subsequent phenological event (metamorphosis). Changes in hatching synchrony altered survival, development rates, and body size at metamorphosis, which can affect post-metamorphosis performance. The degree of synchrony at hatching also affected the degree of synchrony at metamorphosis, indicating that timing of one stage can carry over to affect that of later ones. Importantly, these effects were all density dependent, likely because decreasing hatching synchrony switched intraspecific interactions from scramble to contest competition. This study demonstrates that phenological synchrony has important consequences for ecological interactions and population dynamics, emphasizing the need to develop a comprehensive understanding of how shifts in phenological distributions affect communities.engArticle is made available in accordance with the publisher's policy and may be subject to US copyright law. Please refer to the publisher's site for terms of use.Phenological synchronization drives demographic rates of populationsJournal articleBufo nebuliferclimate changecoastal-plain toadcompetitiondensity dependencemetamorphosispriority effectsseasonal dynamicssynchronytadpolehttp://dx.doi.org/10.1890/14-1919.1