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Hanne De Kort

Publications and source records attributed to Hanne De Kort.

2 recordsLinked to original sources

Habitat fragmentation reshapes genomic footprints of selection in a forest herb

Understanding the combined effects of climate change and habitat fragmentation on the adaptive potential of plant populations is essential for devising effective conservation strategies. This is particularly important where mating system variation impacts the evolutionary consequences of habitat fragmentation. Here we aimed to reveal how habitat fragmentation and climate adaptation jointly influence the evolutionary trajectories in Primula elatior, a heterostylous self-incompatible and dispersal-constrained forest herb. We quantified the genomic variation and degree of herkogamy, a floral trait reducing self-pollination, across 60 geographically paired populations of Primula elatior across Europe, each pair featuring contrasting levels of habitat fragmentation. Our findings revealed a large and unique set of adaptive outliers in more fragmented landscapes, compared to high-connectivity ones, despite the geographic proximity of the sampling pairs. This suggests elevated selective pressures in fragmented habitats, mirrored by a reduced adaptive potential to cope with climate change. Finally, a minority of genetic variants associated with herkogamy were influenced by current levels of habitat fragmentation and population size, potentially signalling early indicators of evolutionary mating system changes in response to pollinator limitation. Because evolutionary trajectories and adaptive potential are expected to be increasingly affected by habitat fragmentation, our findings underscore the importance of considering both habitat fragmentation and climate adaptation in conservation research and planning.

q-bio.PE↗

Habitat fragmentation affects climate adaptation in a forest herb

Climate change and the resulting increased drought frequencies pose considerable threats to forest herb populations, especially when compounded by additional environmental challenges. Specifically, habitat fragmentation may disrupt climate adaptation and cause shifts in mating systems. To examine this, we conducted a garden experiment with Primula elatior offspring from 24 populations across a climate and landscape fragmentation gradient. We evaluated vegetative, regulatory, and reproductive traits under different soil moisture regimes, assessing local adaptation and phenotypic plasticity. We also conducted a field study in 60 populations along the same gradient to examine potential breakdown of reciprocal herkogamy. Our results showed an evolutionary shift from drought avoidance in southern populations to drought tolerance in northern populations for large, connected populations. However, fragmentation disrupted climate clines and adaptive responses to drought in key traits related to growth, biomass allocation and water regulation. Our findings also indicate the beginning of an evolutionary breakdown in reciprocal herkogamy. These disruptions resulted in significantly reduced flowering investment, especially in southern fragmented populations. These findings provide new evidence of how habitat fragmentation disrupts climate adaptation and drought tolerance in Primula elatior, emphasizing the need to account for habitat fragmentation in conservation strategies to preserve resilient forest herb populations amidst global changes.

q-bio.PE↗