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Predictions From Evolutionary Theory for Urban Environments

Author(s): MacPherson A; Caizergues AE; Savary P; Xu K; Messer PW; Akbar MN; Fortin MJ; Holt RD; Hoi AG; Mideo N; Ness R; Peres-Neto PR; Santangelo JS; Johnson MTJ;

Urbanization drives rapid and extreme environmental change, profoundly shaping the ecology and evolution of populations. In this Perspective, we call for the integration and development of evolutionary theory and empirical research through collaboration between theoretical and experimental biol ...

Article GUID: 42253486


Disturbance-induced emigration: an overlooked mechanism that reduces metapopulation extinction risk

Author(s): Mestre A; Barfield M; Peniston JH; Peres-Neto PR; Mesquita-Joanes F; Holt RD;

Emigration propensity (i.e., the tendency to leave undisturbed patches) is a key life-history trait of organisms in metapopulations with local extinctions and colonizations. Metapopulation models of dispersal evolution typically assume that patch disturbance kills all individuals within the patch, thus causing local extinction. However, individuals may ...

Article GUID: 34086976


The interplay of nested biotic interactions and the abiotic environment regulates populations of a hypersymbiont.

Author(s): Mestre A, Poulin R, Holt RD, Barfield M, Clamp JC, Fernandez-Leborans G, Mesquita-Joanes F

J Anim Ecol. 2019 12;88(12):1998-2010 Authors: Mestre A, Poulin R, Holt RD, Barfield M, Clamp JC, Fernandez-Leborans G, Mesquita-Joanes F

Article GUID: 31408529


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