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Biodiversity and Conservation · 2026 · Vol. 35 · Issue 10 · Springer
A central quest in conservation biology is to understand how wildlife responds to human-modified landscapes. Yet assessing features of transformed landscapes is non-trivial because categorical maps obscure ecologically meaningful transitions that organisms perceive continuously. We overcame this limitation by using satellite-based fine-scale continuous measures of landscape structure to examine how the cover, complexity, distr...
Ecology Letters · 2016 · Vol. 19 · Issue 9 · Wiley
Land‐use change and climate change are driving a global biodiversity crisis. Yet, how species' responses to climate change are correlated with their responses to land‐use change is poorly understood. Here, we assess the linkages between climate and land‐use change on birds in Neotropical forest and agriculture. Across > 300 species, we show that affiliation with drier climates is associated with an ability to persist in and co...
Molecular Ecology · 2014 · Vol. 23 · Issue 14 · Wiley
Phylogeographic reconstructions of codistributed taxa can help reveal the interplay between abiotic factors, such as altitude and climate, and species‐specific attributes, in shaping patterns of population genetic structure. Recent studies also demonstrate the value of both rangewide sampling and species distribution modelling ( SDM ) in comparative phylogeography. Here, we combine these approaches to study the population hist...
Molecular Ecology · 2009 · Vol. 18 · Issue 2 · Wiley
Phylogeographical studies are typically based on haplotype data, occasionally on nuclear markers such as microsatellites, but rarely combine both. This is unfortunate because the use of markers with contrasting modes of inheritance and rates of evolution might provide a more accurate and comprehensive understanding of a species’ history. Here we present a detailed study of the phylogeography of the greater horseshoe bat, Rhino...