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Hesen, V.

Publications and source records attributed to Hesen, V..

2 recordsLinked to original sources

Dozens of genetic variants sustain adaptation to urban spatial heterogeneity in Arabidopsis thaliana

Urbanization creates mosaics of microhabitats that sustain diverse plant communities and offer untapped opportunities to understand contemporary ecological and evolutionary processes. Using a city-wide colonization experiment in Cologne (Germany), we identified the environmental factors limiting establishment and persistence of the ruderal species Arabidopsis thaliana and the genetic variants enabling adaptation. We show that standing genetic variation is essential for realizing the species urban niche, enabling rapid adaptation to fine-scale gradients in disturbance, vegetation, and soil conditions. Despite originating from only two parental genotypes, populations evolved substantial adaptive differentiation within three generations, revealing a highly polygenic basis of local adaptation. More broadly, our approach establishes cities as powerful open-air laboratories for uncovering and fostering ecological and evolutionary processes that generate and sustain biodiversity in human-dominated landscapes.

evolutionary biology↗

Steep logarithmic increase of genetic variation in natural Arabidopsis thaliana accessions across geographic scales

Arabidopsis thalianas large native range across Eurasia and display of considerable genetic variation is key to its increasing use in eco-evolutionary studies. The structure and amount of this genetic variation has been studied on various geographic scales. On a continental scale, the genetic variation was postulated to follow an isolation by distance model, implying less genetic variation at smaller geographic distances. However, recent studies showed that the genetic variation is already high on small geographic scales, yet direct comparisons of the genetic variation across different geographic scales are rare. Here, we present a new local diversity panel covering 19 km2 with accessions of the Veluwe, the Netherlands. We compared the genetic variation of this local diversity panel to a national and a continental A. thaliana diversity panel. Direct comparison of these three geographic scales showed that local accessions harbour already 41.8% of the genetic variation found on a continental scale despite the substantial difference in geographic surface area covered. Moreover, a rapidly ascending logarithmic relationship between genetic and geographic distances was observed at continental, national and local scale and thus irrespective of the geographic scale considered. The high level of local genetic variation reported here poses new questions on which evolutionary forces are driving and maintaining this, and how much this constrains experimental design when using local A. thaliana populations in future eco-evolutionary studies.

genetics↗