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Di Musciano, M.

Publications and source records attributed to Di Musciano, M..

2 recordsLinked to original sources

Leveraging roadless areas to close strict protection gaps in the EU

Strictly protected areas are critical to biodiversity conservation, yet only 4% of the EUs land currently meets this designation, falling short of the 10% target outlined in the EU Biodiversity Strategy for 2030. Roadless areas, i.e., portions of land 1 km farther from linear infrastructure, are increasingly recognized for their ecological value and potential role in closing this gap. Using OpenStreetMap data and environmental gradients derived from climate, soil, and topographic layers, we identified the extent of EU roadless areas and assessed their conservation value based on their capacity to complement the existing strict protection network in terms of environmental representativeness. We found that 11.5% of EU land is roadless, with only 18.9% of this already under strict protection. Integrating all roadless areas would raise strict protection coverage to 12.7% and improve representation of abiotic environmental space from 78.8% to 94.4%. However, most roadless areas are extremely fragmented and redundant with respect to their abiotic features. While roadless areas offer a critical opportunity to expand the strict protection network, they cannot solely meet conservation goals. A balanced strategy that includes restoration, coordination across governance levels, and prioritization based on other biodiversity features is essential to effectively meet EU conservation commitments.

ecology↗

Spatial instability affects Key Biodiversity Areas scoping for bumblebees across three decades

Identifying potential Key Biodiversity Areas (KBAs) using species occurrence records is crucial for integrating hyperdiverse taxa, such as insects, into the KBA network. To ensure the KBA network supports effective conservation decision-making, established KBAs need to be reassessed every 8 to 12 years. Realistically, reassessments for very high numbers of species will be based also on opportunistic occurrence points. However, how changes in species distribution data availability and completeness in different time periods influence the spatial stability of potential KBAs over time has not been investigated in any taxa yet. We performed potential KBA assessments for 28 species and subspecies of bumblebees in Italy using an expert-validated dataset of distribution data collected between 1990 and 2023, using 10-year cumulative and progressive time series. Our findings reveal that KBA scoping for species with distributional knowledge gaps does not ensure stability and reliability over time. Potential KBA turnover percentages between different time periods can be high ([~=]133%). While only seven species/subspecies could trigger potential KBAs, their turnover percentage ranged between 28.5% and 50%. We highlight the need for standardized and strategic monitoring of established KBAs and species distributions between reassessments. We also discuss strategies to optimize monitoring plans under resource constraints.

ecology↗