Anna Tószögyová

@annatoszogy.bsky.social

Macroecology | Biogeography | Biodiversity | Statistics Center for Theoretical Study @cts.cuni.cz Charles University @sciencecharles.bsky.social

Our manuscript is now available as a preprint on bioRxiv! We show how geometry alone can explain why small geographic ranges are so common—and why they are disproportionately common near continental margins. doi.org/10.64898/202...

Geometric causes of species rarity

Understanding the limits of species distributions is a central objective of biogeography and macroecology and has become increasingly important as climate change drives rapid shifts in geographic ranges. Species range sizes follow a highly skewed frequency distribution, with most species occupying ranges orders of magnitude smaller than those of the most widespread species. Range sizes also exhibit pronounced geographic patterns, with small-ranged species concentrated near continental margins and other geographic boundaries. No universally accepted explanation has been proposed for these patterns. Here we present a simple geometric model showing that species range size patterns emerge from the random placement of dispersal barriers within continental domains. The model predicts both the observed frequency distribution and the spatial distribution of range sizes across amphibians, birds, and mammals. It therefore provides a first-order explanation for global patterns of species rarity and can be refined by incorporating elevational barriers and spatial variation in species richness. Our findings suggest that species range size is constrained by the geometry of dispersal barriers and the geographic domain, with proximity to domain boundaries acting as a primary determinant of species rarity. These results have important implications for understanding species' evolutionary potential and vulnerability to extinction. ### Competing Interest Statement The authors have declared no competing interest. Czech Science Foundation, GA ČR 25-18055S

doi.org

The online webinar "Environmental Law and Politics between Skepticism and Activism", which we organized together with CELP Cardiff University, featured yesterday Eva Balounová, Jan Géryk, Zdeněk Konopásek, Ben Pontin, David Storch, Irena Šímová and Anna Tószögyová. Thank you!

Our colleague @kulveit.bsky.social cautions that the real threat of AI lies not in dramatic extinction scenarios, but in the gradual loss of human agency. As AI systems quietly outperform us, we may lose control without even noticing. 👉 gradual-disempowerment.ai 👉 Guardian coverage: rb.gy/rsgiph

Better at everything: how AI could make human beings irrelevant

The end of civilisation might look less like a war, and more like a love story. Can we avoid being willing participants in our own downfall?

theguardian.com

Explore the Anthropocene from a transdisciplinary perspective: 🌍 Join our new microcredential course at Charles University—seminars, field trips, and hands-on workshops led by top experts. Prague, Czech Republic | www.anthropocene.cz/en/micro-cre... | Program: www.anthropocene.cz/en/programme...

Micro-credential Anthropocene: Registration opened!

Micro-credential Anthropocene: Registration opened! Filed trips, seminars, workshops, lectures. The 2025 run will be held in English.

anthropocene.cz

Despite these uncertain times, I’m delighted to have received a 3-year research grant from the Czech Science Foundation for my project, 'Equilibrium and Disequilibrium Biodiversity Dynamics: Understanding Biodiversity Responses to Environmental Changes.' 🌍🌱⏳

Curious about the forces shaping #biodiversity and its equilibrium states? 🌍 Check out Equilibrium Theory of Biodiversity Dynamics (ETBD), developed by our team led by David Storch, offering a unifying framework to understand diversity dynamics, equilibria, and global patterns. 🧵👇 #Macroecology