Assembled chromosomes of the blood fluke Schistosoma mansoni provide insight into the evolution of its ZW sex-determination system
Buddenborg, S. K.; Tracey, A.; Berger, D. J.; Lu, Z.; Doyle, S.; Fu, B.; Yang, F.; Reid, A. J.; Rodgers, F. H.; Rinaldi, G.; Sankaranarayanan, G.; Bohme, U.; Holroyd, N.; Berriman, M.
Show abstract
BackgroundSchistosoma mansoni is a flatworm that causes a neglected tropical disease affecting millions worldwide. Most flatworms are hermaphrodites but schistosomes have genotypically determined male (ZZ) and female (ZW) sexes. Sex is essential for pathology and transmission, however, the molecular determinants of sex remain unknown and is limited by poorly resolved sex chromosomes in previous genome assemblies. ResultsWe assembled the 391.4 Mb S. mansoni genome into individual, single-scaffold chromosomes, including Z and W. Manual curation resulted in a vastly improved gene annotation, resolved gene and repeat arrays, trans-splicing, and almost all UTRs. The sex chromosomes each comprise pseudoautosomal regions and single sex-specific regions. The Z-specific region contains 932 genes, but on W all but 29 of these genes have been lost and the presence of five pseudogenes indicates that degeneration of W is ongoing. Synteny analysis reveals an ancient chromosomal fusion corresponding to the oldest part of Z, where only a single gene--encoding the large subunit of pre-mRNA splicing factor U2AF--has retained an intact copy on W. The sex-specific copies of U2AF have divergent N-termini and show sex-biased gene expression. ConclusionOur assembly with fully resolved chromosomes provides evidence of an evolutionary path taken to create the Z and W sex chromosomes of schistosomes. Sex-linked divergence of the single U2AF gene, which has been present in the sex-specific regions longer than any other extant gene with distinct male and female specific copies and expression, may have been a pivotal step in the evolution of gonorchorism and genotypic sex determination of schistosomes.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Complete representation of a tapeworm genome reveals chromosomes capped by centromeres, necessitating a dual role in segregation and protection 99%
- A chromosome-level assembly of the cat flea genome uncovers rampant gene duplication and genome size plasticity 97%
- The genome of the zoonotic malaria parasite Plasmodium simium reveals adaptations to host-switching 96%
Similar papers in this journal
- Hybridization promotes asexual reproduction in Caenorhabditis nematodes 96%
- Dynamics of X chromosome hyper-expression and inactivation in male tissues during stick insect development 95%
- The fourspine stickleback (Apeltes quadracus) has an XY sex chromosome system with polymorphic inversions on both X and Y chromosomes 94%
Similar papers in this journal
- Long-read RNA sequencing of human and animal filarial parasites improves gene models and discovers operons 97%
- Linked surveillance and genetic data uncovers programmatically relevant geographic scale of Guinea worm transmission in Chad 95%
- High-quality reference genome of Fasciola gigantica: Insights into the genomic signatures of transposon-mediated evolution and specific parasitic adaption in tropical regions 95%
Similar papers in this journal
- Intra-Strain Genetic Heterogeneity in Toxoplasma gondii ME49: Oxford Nanopore Long-Read Sequencing Reveals Copy Number Variation in the ROP8-ROP2A Locus 96%
- Re-annotation of the Theileria parva genome refines 53% of the proteome and uncovers essential components of N-glycosylation, a conserved pathway in many organisms 96%
- The genetic impact of an Ebola outbreak on a wild gorilla population 95%
"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.