Dispersal is a key ecological process linking metapopulation dynamics in the landscape to distribution patterns at larger spatial scales. In this study, we investigated the landscape occupancy and genetic population structure of a butterfly species, Melanargia galathea. Several, landscapes differing in composition and structure were sampled as well as populations at different spatial. scales. We found that M. galathea occupied 91.3 % of all habitat patches available within a particular landscape, probably due to a dominance of landscape scale processes such as rescue effect and recolonisation. A high level of genetic polymorphism within the sampled populations and a very low amount of genetic differentiation between populations was observed (G(st) = 0.034), characteristic of species with high dispersal capacity and/or high density. High dispersal rates ensured considerable gene mixing at the landscape scale while the influence of distance on dispersal success was detected at the regional and continental scales by a significant amount of isolation by distance. We also found that, at the landscape scale, the dispersal of this butterfly species was influenced by the spatial, distribution of its habitat patches. (C) 2004 Elsevier GmbH. All. rights reserved.
Vandewoestijne, S., Martin, T., Liegeois, S., & Baguette, M. (2004). Dispersal, landscape occupancy and population structure in the butterfly Melanargia galathea. Basic and Applied Ecology, 5(6), 581-591. https://doi.org/10.1016/j.baae.2004.07.004 (Original work published 2004)