Neotenic transcriptomic features in the adult turquoise killifish brain
Burgos-Ruiz, A. M.; Naranjo, S.; Hernandez-Perez, M. d. V.; Ardila-Garcia, L.; Moreno-Onate, M.; Fernandez-Minan, A.; de los Reyes-Benitez, A.; Lopez-Rios, J.; Nusspaumer, G.; Tena, J. J.
Show abstract
Aging is one of the main challenges facing modern society. Understanding the cellular processes that occur in the later stages of life is essential to address age-related diseases. Although aging is a global process that affects the entire body, the brain is one of the most sensitive organs and is affected by numerous degenerative diseases. In this study, we investigate cell types and genes that are particularly sensitive to the aging process. To this end, we performed a time-course single-cell RNAseq experiment series in the brain of the killifish, the vertebrate model with the shortest lifespan, which makes it an excellent model for aging studies. Our analysis reveals that non-glial progenitor cells are among those populations that change the most between young and old animals. Furthermore, we identify specialized stromal clusters that seem to support a primitive hematopoietic program in the brain, which is active only during the embryonic stages in other vertebrate species. Our results show that the expression of embryonic genes in the adult brain appears to be a general feature in killifish, and that several cell populations in the adult killifish brain show a higher level of similarity to the zebrafish embryonic populations than to adult ones. Our study suggests that adult killifish maintain a neotenic gene expression status in the brain that may help in sustaining their characteristic high proliferation and metabolic rates, as well as combat the detrimental effects of this high metabolism on cells, especially at advanced ages.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Transcriptome analysis provides genome annotation and expression profiles in the central nervous system of Lymnaea stagnalis at different ages 92%
- High-fat diet in early life triggers both reversible and persistent epigenetic changes in the medaka fish (Oryzias latipes) 92%
- Correction for both common and rare cell types in blood is important to identify genes that correlate with age 92%
Similar papers in this journal
- Gene losses may contribute to subterranean adaptations in naked mole-rat and blind mole-rat 94%
- Spatial cell type mapping of the oligodendrocyte lineage in the mouse juvenile and adult CNS with in situ sequencing 93%
- Identification of LINE retrotransposons and long non-coding RNAs expressed in the octopus brain 92%
Similar papers in this journal
- Under the shadow: Old-biased genes are subject to weak purifying selection at both the tissue and cell type-specific levels 96%
- Concurrent evolution of anti-aging gene duplications and cellular phenotypes in long-lived turtles 94%
- Comparative study of protein aggregation propensity and mutation tolerance between naked mole-rat and mouse 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.