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Sbaraglia, C.

Publications and source records attributed to Sbaraglia, C..

2 recordsLinked to original sources

The potential role of volatile organic compounds on the colonisation of deadwood by saproxylic beetles

Volatile organic compounds (VOCs) emitted by deadwood are increasingly recognised as key olfactory cues used by saproxylic beetles to locate suitable substrates. However, how beetle communities respond to these cues during the colonisation of deadwood remains poorly understood. To address this gap, it is essential to quantify both VOC emissions and beetle assemblages, and to experimentally disentangle the main ecological drivers of the deadwood volatilome (i.e., tree species, sun exposure). To explore the potential role of VOCs on saproxylic beetle colonisation, we exposed 1200 freshly cut branches of oak, beech, spruce, and pine across Central Europe. To mimic natural variation in deadwood and disturbance processes, the bundles were experimentally manipulated either by sterilisation (to reduce endogenous fungi), fungal inoculation with a brown rot fungus (Fomitopsis pinicola), a white rot fungus (Fomes fomentarius), or burning. From each deadwood bundle, we sampled 448 substances, 89 of which were identified as VOCs and reared 134 saproxylic beetle species. We observed distinct VOC profiles emitted by broadleaf and conifer species, aligning with the beetles tree-type preferences. In conifers, bark beetles, longhorn beetles, and jewel beetles were associated with different chemical cues, whereas beetle taxonomic separation was not observed in broadleaf species. Although experimental treatments altered VOC composition, they could not explain beetle colonisation patterns. Our study highlights that VOCs emitted during the early decay stage of deadwood are associated with distinct saproxylic beetle assemblages. VOC composition varied across tree species and treatments, suggesting that chemical variation reflects multiple ecological factors. These findings indicate that deadwood diversity, particularly in tree species, contributes to chemical heterogeneity, which is linked to broader beetle assemblages. Forest conservation efforts may therefore need to consider the role of chemical variation in deadwood, as it could influence colonisation patterns of saproxylic beetles and affect the success of biodiversity management strategies.

ecology↗

Czech Republic butterfly barcoding reveals that distribution of genetic lineages depends on species traits

AimThe distribution of within-species lineages has been affected by Quaternary climate changes, and population differentiation has been influenced by species life histories. We investigated whether the distribution of individual mitochondrial genetic lineages reflects the constituent species traits. Using the functionally diverse group of butterflies, we examined which lineages are present in Central Europe, an important suture zone. LocationCzech Republic and Western Palearctic. TaxonA total of 140 butterfly species. MethodsWe sequenced DNA barcodes (cytochrome c oxidase 1) (959 sequences) of the entire Czech Republic butterfly fauna and used BOLD data to visualize the species biogeographic patterns across Europe. We categorised the distribution patterns of lineages inhabiting the Czech Republic, and used multivariate statistics to interpret these categories by the butterflies habitats, life histories, and threat levels. ResultsOpen habitat dwellers with specialist traits belonged to Eastern, Southern, and temperate lineages. Habitat generalists and woodland dwellers belonged to the Western lineage, formed several lineages, or displayed low genetic diversity; they often developed on woody plants, were large-winged, and had long flight periods. The most threatened species were the specialists of Southern, Eastern, and temperate lineages. Main conclusionsThe distribution of lineages in Central Europe reflects the history of Quaternary ecosystems: during cold periods of the Pleistocene, the diverse open habitats prevailed, and species could expand westwards. Such species also suffer the most under the current anthropogenic habitat alteration. On the other hand, the mobile generalists and woodland dwellers expanded to Central Europe during the Holocene. Our approach of linking the distribution of lineages with species traits can be transferred to other study systems, and we show that DNA barcoding of under-sampled areas represents a powerful tool for discovering the driving forces of biogeography.

ecology↗