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Torres-Aguila, N. P.

Publications and source records attributed to Torres-Aguila, N. P..

3 recordsLinked to original sources

Developmental genetic response of the zooplanktonic tunicate Oikopleura dioica to marine noise pollution.

BackgroundAnthropogenic noise is an emerging threat to marine ecosystems, yet its effects on marine invertebrates, particularly zooplanktonic species, remain poorly understood. Despite increasing evidence of behavioral and physiological impacts in invertebrates, the effects of noise on embryonic development and the molecular mechanisms underlying acoustic responses remain largely unexplored. Here, to address this gap, we investigated the impact of high-intensity underwater noise exposure on embryogenesis of the appendicularian tunicate Oikopleura dioica, a cosmopolitan zooplanktonic tunicate that plays important ecological roles in marine trophic webs and carbon cycling. Under lab-controlled conditions, we examined the effects of experimental noise exposure on early embryogenesis at both morphological and transcriptomic levels using RNA-seq in 8-cell (8c) and early tailbud (ETB) stages. ResultsNoise exposure produced no significant increase in embryo malformations compared to non-exposed controls, indicating substantial phenotypic resilience under laboratory conditions. Interestingly, transcriptomic analyses revealed a rapid molecular response of 70 differentially expressed genes (DEG) already detectable after only 30 minutes of exposure at the 8-cell stage, which became markedly amplified with 700 DEGs by the ETB stage. Together, differential expression, GO enrichment, and co-expression network analyses identified coordinated regulation of processes associated with membrane homeostasis, pyrimidine/CTP metabolism, extracellular matrix organization, cytoskeletal architecture, RNA regulation, translational control, proteostasis, mitochondrial metabolism, and developmental pathways. Importantly, both developmental stages precede the formation of differentiated mechanosensory structures, suggesting that the observed responses are unlikely to reflect conventional sound perception. ConclusionsThese findings provide the first molecular characterization of noise effects during O. dioica embryogenesis and reveal an unexpected molecular sensitivity of O. dioica embryos to underwater noise despite preserved morphological development. The transcriptional signatures support a mechanobiological framework in which acoustic exposure may directly perturb cellular mechanical homeostasis through membrane-and cytoskeleton-associated processes, triggering compensatory stress-adaptation responses involving proteostasis, RNA regulation, and metabolic reprogramming. Together, these findings establish O. dioica as a valuable emerging model for investigating the developmental and evolutionary consequences of acoustic pollution in marine ecosystems.

developmental biology↗

CORAL: Accurate annotation of compact genomes using long-read RNA-seq, demonstrated in Oikopleura dioica

The burst of high-quality genome assemblies has created an urgent need to improving genome annotation tools, especially for problematic species such as those with compact, fast-evolving genomes in which standard annotation tools underperform when facing short intergenic regions, overlapping UTRs, non-canonical splicing and widespread operons. We present CORAL (Compact-genome Oriented RNA-based Annotation using Long-reads), a long-read RNA-seq-based workflow for de novo annotation of compact eukaryotic genomes, together with GAMBA (Gene Aggregation tool for Multicistronic Block Annotation), a Rust-based module that detects polycistronic transcriptional units directly from GTF annotations and is integrated within CORAL. Using the exceptionally compact chordate genome of Oikopleura dioica as a case study, CORAL increases the number of annotated genes, improves gene-model completeness and reduces chimeric predictions relative to existing annotations, while GAMBA recovers thousands of operons, most of which are independently supported by splice-leader data. Together, CORAL and GAMBA provide an accurate, scalable framework for annotating compact, structurally atypical genomes using long-read transcriptomic data alone. Availability and ImplementationCORAL and GAMBA are open source and available at https://github.com/EvoDevoGenomics-UB/CORAL and https://github.com/nurie05/gamba-tool.

bioinformatics↗

Long-Read Sequencing Reveals Increased Isoform Diversity in Key Transcription Factor Effectors of Intercellular Signalling at the Invertebrate-Vertebrate Transition

Several intercellular signalling pathways (namely wingless - Wnt, Hedgehog - Hh, and Bone Morphogenetic Protein - BMP) are used repeatedly in animals throughout development and evolution, and are also frequent targets for disease-associated disruptions. We have previously shown that the major transcriptional effectors of {beta}-catenin-dependent Wnt signalling, the TCF/LEF proteins, in contrast to other pathway components, have a higher gene number and isoform diversity in vertebrates versus invertebrates, but this increased diversity has only been poorly quantified. Considering that isoform diversity correlates with organism complexity, any increase in major signalling effectors is likely to have made a significant contribution to vertebrate evolution. Using de novo long-read transcriptomes, we compared isoform number per gene for the chordates Ciona intestinalis, Lampetra planeri and Xenopus tropicalis, thus encompassing the invertebrate sister group to vertebrates, as well as a cyclostome and a gnathostome vertebrate. Our results implicate an increase in isoform diversity of the transcription factors of major intercellular signalling pathways as having a disproportionate role in the evolutionary origin and diversification of vertebrates.

evolutionary biology↗