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Traba, J.

Publications and source records attributed to Traba, J..

4 recordsLinked to original sources

Unique rhythmic signatures in arrhythmic birdsong

Animal rhythms are gaining increasing attention in the studies of behaviour and musicology. Recently, it has been shown that rhythm itself can be used as an information coding channel. Now we ask: does this hold true for arrhythmic sequences? To answer that, we analysed songs of the tawny pipits (Anthus campestris), migratory songbirds known for their simple songs. Using focal recordings of 384 individuals from six populations collected across their European breeding range, we calculated an extensive set of rhythmic and temporal indices to describe each song. First, the pattern of these songs was inspected and shown to be arrhythmic. Second, songs belonging to specific individuals and populations were compared using permuted discriminant function analysis and supervised uniform manifold approximation and projection. To describe the level of individuality of the rhythmic structure alone, we calculated Beechers statistic for all songs, as well as the potential of identity coding for each parameter separately. We show that tawny pipit males sing using individual rhythmic patterns in their arrhythmic songs, and that modern rhythmic indices, such as beat precision and integer ratios, are among some of the most individually distinct parameters of their songs. Furthermore, contrary to previous investigations based on the spectral shape and basic frequency and temporal characteristics of these songs, we show that the species displays population-specific temporal patterns, with significant differences throughout its European range. This study is the first to demonstrate geographic scale differences in birdsong rhythm, and to show that rhythmic analysis can provide useful descriptions of arrhythmic sequences.

animal behavior and cognition↗

Drug screening identifies the Src/Abl inhibitor Dasatinib as suppressor of IL-23 signalling in skin inflammation

IL-23-driven IL-17 production by {gamma}{delta}17 and Th17 cells is central to the pathogenesis of psoriasis and other autoimmune disorders. The intracellular mechanisms linking IL-23 signalling to effector cytokine production remain incompletely defined and thus, therapeutic targets downstream of IL-23 are limited. Here, we developed an in vitro model based on a {gamma}{delta}17 T cell line to study IL-23 responses and identify pharmacological inhibitors of type 3 immunity. We conducted a drug-repurposing screening of FDA-approved compounds and identified Src/Abl kinase inhibitors Dasatinib and Bosutinib as potent suppressors of IL-23-induced IL-17A production. In vivo, intraperitoneal and topical Dasatinib administration reduced epidermal thickening, immune cell infiltration, and the accumulation of IL-17-producing T cells in the Imiquimod model of skin inflammation. Mechanistically, Dasatinib and Bosutinib blocked IL-23-dependent mTORC1 and mTORC2 activation. Finally, loss-of-function experiments identified the Src kinase Blk as a critical mediator of IL-23-induced mTORC1 activation and IL-17A production in {gamma}{delta}17 T cells. These findings uncover a novel IL-23-Src-mTOR axis in type 3 immunity, opening the door for therapeutic targeting of Src signalling networks in IL-23/IL-17-driven inflammation.

immunology↗

Identifying the exposure of taxonomic, functional, and phylogenetic diversity of steppe birds to renewable energy developments

Biodiversity is globally threatened by human impacts including land use transformation and climate change. Global warming has prompted a rapid transition from fossil fuels to cleaner energy sources such as photovoltaic (PV) energy. However, utility-scale PV plants demand vast areas and can lead to conflicts with biodiversity conservation, making strategic planning essential. We evaluate the spatial overlap between conservation priorities and PV infrastructure using steppe birds--a highly threatened bird group occurring in lands potentially suitable for PV plants--as a model. First, we quantified and mapped taxonomic (TD), functional (FD), and phylogenetic diversity (PD) of 26 species across a main stronghold for European steppe birds (mainland Spain and Balearic Islands) to identify prioritization scenarios that best preserved all steppe bird diversity facets (TD, FD, and PD), and steppe birds of conservation concern. Next, we generated a diversity hotspot map based on the combination of TD, FD, and PD and overlapped with existing PV infrastructure to determine: (1) exposure areas (high diversity hotspots with high PV occupancy), and (2) no-go areas (high diversity hotspots with low/null PV occupancy). We found that the prioritization scenario combining TD+FD+PD retained 68.5% of TD, 75.5% of FD, 59.7% of PD, and 62.8% of areas with species of conservation concern, providing a more balanced representation across biodiversity facets than other prioritization scenarios. PV infrastructure currently occurs in 53.1% of high diversity hotspot cells. Overall, exposure areas (7.2% of the study area) were mainly concentrated in Central, Southern, and Northwestern Spain, while no-go areas (19.9% of the study area) were concentrated in Northern, Central, and Central-Western Spain. Our methodology is adaptable to other species, communities and regions, offering a robust framework for balancing development projects with biodiversity conservation. As the transition to renewable energy accelerates, including biodiversity in energy planning is crucial for preventing irreversible ecological losses.

ecology↗

DNA metabarcoding revealed how time and space do matter -sex does not- in the dietary variation of the endangered Duponts Lark

A species diet is highly dependent on the availability of food resources in space and time, as well as on intrinsic factors such as sex or age. Accurate assessments of variations in the diet composition of bird populations across spatial scales, seasons and demographic groups are essential not only for understanding the basic ecology of species, but also for the conservation of endangered ones. However, our current knowledge about how birds diet change according to spatio-temporal variations or intrinsic factors is very limited. Here, we used a multi-marker metabarcoding approach to characterize the diet of a declining shrub-steppe passerine, the Duponts Lark (Chersophilus duponti), throughout a large part of its global distribution range. We also investigated spatial, phenological and sexual variations in its diet. Using markers from two genomic regions (18S and COI), we analyzed fecal samples from 303 adult Duponts larks from Morocco and Spain during the breeding and non-breeding seasons. Overall, arthropods from the orders Coleoptera, Lepidoptera, Julida and Orthoptera were the main prey consumed by Duponts Larks. We found that Duponts Lark diet varied spatially, as well as temporally, reflecting dietary plasticity in response to changes in prey availability across landscapes and the species phenological periods. High dietary overlap and no differences between sexes were observed, suggesting similar foraging behavior and nutritional requirements in both sexes. This is the first study providing detailed information on Duponts Lark food ecology over much of its distribution, which is fundamental for the management and conservation of this declining steppe species.

ecology↗