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Examinando Artículos de Revistas por Materia "13 - I+D en relación con las Ciencias naturales"
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Ítem Seasonal transcriptome profile across three different tissues of the Andean Killifish Orestias ascotanensis(Springer Nature, 2025-06-10) Maldonado-Agurto, RodrigoThe Andean killifish Orestias ascotanensis inhabits the high-altitude Ascotán Salt Pan, an environment with variable salinity, high UV exposure, low oxygen, and extreme daily temperature fluctuations. These conditions make it an excellent model for studying high-altitude fish biology. However, the transcriptomic responses of O. ascotanensis to seasonal acclimation remain unexplored. To investigate seasonal and tissue-specific transcriptomic profiles, RNA-seq was performed on 42 libraries from gills, skin, and muscle tissues of 14 individuals collected in summer (n = 7) and winter (n = 7). Each library had a median of 105 million reads. Principal component analysis revealed strong tissue-specific expression, and seasonal differential expression analyses identified significant transcriptomic changes within each tissue. Additionally, a bioinformatics pipeline identified 10,365 high-confidence long non-coding RNAs (lncRNAs), predicted by at least three computational tools. Compared to protein-coding genes, lncRNAs exhibited higher tissue specificity, with a predominance of monoexonic structures and shorter exon lengths. This dataset provides the first comprehensive view of seasonal mRNA and lncRNA expression in O. ascotanensis tissues.Ítem Unfused transverse foramen of the atlas vertebra in the Neandertal lineage fossils(Wiley, 2025-11-07) Gómez-Olivencia, AsierIn anatomically modern humans, the atlas can display an unfused transverse foramen (UTF) but currently the presence of UTF in the Neandertal lineage is uncertain due to a scarcity of prevalence studies and no exhaustive record of its presence throughout the entire hominin fossil record. In this context, this study aimed to assess the UTF prevalence in Neandertal lineage fossils. In the Neandertal lineage fossil record, UTF was identified in three atlases: a Middle Pleistocene Preneandertal fossil (VC3) from Sima de los Huesos, and the Neandertal specimens Kebara 2 and Krapina 98. These results suggest that UTF may have been present in the hominin lineage since, at least, the Middle Pleistocene. An UTF could have been present in other, older hominin lineages but this remains unclear due to the generally poor preservation of atlases outside the Neandertal lineage fossil record. However, the existence of UTFs in the Neandertal lineage warrants further investigation into the evolutionary and developmental factors underlying this vertebral morphological variation.