Single-cell analyses reveal scyphozoan conserved and specific genes contribution during tissue regeneration in two jellyfish
Li, Y.; Law, S. T. S.; Nong, W.; So, W. L.; Xie, Y.; Leung, T. C. N.; Li, T. H.; Tse, J.; Yip, H. Y.; Jin, O.; Zhang, J.; Chui, A. P.; Lau, K. F.; John, A.; Kai, Z. p.; Bendena, W. G.; Hayward, A.; Wei, Y.; Chan, T. F.; Ngai, S. M.; Hui, J. H. L.
Show abstract
The phylum Cnidaria is the outgroup of Bilateria and includes sea anemones, corals, hydroids, and jellyfish. Cnidarians play crucial ecological roles in marine ecosystems, including the formation of highly diverse and productive coral reefs, and acting as important predator and prey species. Cnidarians are also well known for their remarkable regeneration capacities. Here, we report single-cell RNA sequencing during bell regeneration in two species of scyphozoans or true jellyfish, Aurelia coerulea and Rhopilema esculentum. We delineated 12 cell populations in Aurelia and Rhopilema, and revealed their respective marker genes and enriched gene pathways. Conserved transcription factor Otx and Wnt/ {beta}-catenin signalling pathway genes were identified during regeneration processes. Additionally, we discovered two conserved, sequentially activated modules during regeneration, with stem cells, gastrodermal cells, neural cells, and secretory gland cells modulated in the first phase, followed by cnidocytes in the second phase. Further comparison among cnidarian genomes identified a suite of scyphozoan lineage-specific genes, a subset of which were frequently significantly expressed in cnidocytes in both jellyfish species during the first phase of regeneration. This study reveals key insights into the evolution and contribution of conserved and novel genes to the formation of lineage-specific genetic networks and biological processes.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Novel insights on obligate symbiont lifestyle and adaptation to chemosynthetic environment as revealed by the giant tubeworm genome 96%
- Acoel single-cell transcriptomics: cell-type analysis of a deep branching bilaterian 96%
- The rich evolutionary history of the ROS metabolic arsenal shapes its mechanistic plasticity at the onset of metazoan regeneration 95%
Similar papers in this journal
- New hypotheses of cell type diversity and novelty from comparative single cell and nuclei transcriptomics in echinoderms 97%
- Single Cell Sequencing Provides Clues about the Developmental Genetic Basis of Evolutionary Adaptations in Syngnathid Fishes 96%
- Identification of neural progenitor cells and their progeny reveals long distance migration in the developing octopus brain 95%
Similar papers in this journal
- Identification of LINE retrotransposons and long non-coding RNAs expressed in the octopus brain 94%
- Insights into the origin of metazoan multicellularity from predatory unicellular relatives of animals 94%
- From spiral cleavage to bilateral symmetry: The developmental cell lineage of the annelid brain 93%
Similar papers in this journal
- Recently evolved, stage-specific genes are enriched at life stage transitions in flies 93%
- Multiomics reveal associations between CpG methylation, histone modifications and transcription in a species that has lost DNMT3, the Colorado potato beetle 92%
- Annelid perspectives into the role of FGF signaling in caudal regeneration 92%
Similar papers in this journal
"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.