Sexual dimorphism in the tardigrade Paramacrobiotus metropolitanus transcriptome
Sugiura, K.; Yoshida, Y.; Hayashi, K.; Arakawa, K.; Kunieda, T.; Matsumoto, M.
Show abstract
BackgroundIn gonochoristic animals, the sex determination pathway induces different morphological and behavioral features that can be observed between sexes, a condition known as sexual dimorphism. While many components of this sex differentiation cascade shows high levels of diversity, factors such as the Doublesex-Mab-3-related transcription factor (DMRT) are highly conserved throughout animals. Species of the phylum Tardigrada exhibits remarkable diversity in morphology and behavior between sexes, suggesting a pathway regulating such dimorphism. Despite the wealth of genomic and zoological knowledge accumulated in recent studies, the sexual differences in tardigrades genomes have not been identified. In this study, we focused on the gonochoristic species Paramacrobiotus metropolitanus and employed omics analyses to unravel the molecular basis of sexual dimorphism. ResultsTranscriptome analysis between sex identified numerous differentially expressed genes, of which approximately 2,000 male-biased genes were focused on 29 non-male-specific genomic loci. From these regions, we identified two Macrobiotidae family specific DMRT paralogs, which were significantly upregulated in males and lacked sex specific splicing variants. Furthermore, phylogenetic analysis indicated all tardigrade genomes lacks the doublesex ortholog, suggesting doublesex emerged after the divergence of Tardigrada. In contrast to sex-specific expression, no evidence of genomic difference between the sexes were found. We also identified several anhydrobiosis genes exhibiting sex-biased expression, possibly suggesting a mechanism for protection of sex specific tissues against extreme stress. ConclusionsThis study provides a comprehensive analysis for analyzing the genetic differences between sexes in tardigrades. The existence of male-biased, but not male-specific, genomic loci and identification of the family specific male-biased DMRT subfamily would provide the foundation for understanding the sex determination cascade. In addition, sex-biased expression of several tardigrade-specific genes which are involved their stress tolerance suggests a potential role in protecting sex-specific tissue and gametes.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Genomic and transcriptomic analyses of the subterranean termite Reticulitermes speratus: gene duplication facilitates social evolution 96%
- The genetic basis for PRC1 complex diversity emerged early in animal evolution 95%
- A conserved RWP-RK transcription factor VSR1 controls gametic differentiation in volvocine algae 95%
Similar papers in this journal
- Chromosome-level genome assembly of a human fungal pathogen reveals synteny among geographically distinct species 94%
- Multiple pathways to homothallism in closely related yeast lineages in the Basidiomycota 94%
- Essential genes encoded by the mating-type locus of the human fungal pathogen Cryptococcus neoformans 94%
Similar papers in this journal
- Recent evolution of a maternally-acting sex-determining supergene in a fly with single-sex broods 96%
- Chromosome fusion affects genetic diversity and evolutionary turnover of functional loci, but consistently depends on chromosome size 96%
- Sea anemone MACPF proteins demonstrate an evolutionary transitional state between venomous and developmental functions 95%
Similar papers in this journal
- A chromosome-level assembly of the cat flea genome uncovers rampant gene duplication and genome size plasticity 94%
- The chromatin-regulating CoREST complex is animal specific and essential for development in the cnidarian Nematostella vectensis 94%
- Complete representation of a tapeworm genome reveals chromosomes capped by centromeres, necessitating a dual role in segregation and protection 94%
Similar papers in this journal
- Live-bearing cockroach genome reveals convergent evolutionary mechanisms linked to viviparity in insects and beyond 96%
- The maternal vGluT2 and embryonic mGluR3 signaling relay system controls offspring wing dimorphism in pea aphid 93%
- RNAi-based screen for pigmentation in Drosophila melanogaster reveals regulators of brain dopamine and sleep 92%
"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.