Evolution of gene-rich germline restricted chromosomes in black-winged fungus gnats through introgression (Diptera: Sciaridae)
Hodson, C. N.; Jaron, K. S.; Gerbi, S. A.; Ross, L.
Show abstract
Germline restricted DNA has evolved in diverse animal taxa, and is found in several vertebrate clades, nematodes, and flies. In these lineages, either portions of chromosomes or entire chromosomes are eliminated from somatic cells early in development, restricting portions of the genome to the germline. Little is known about why germline restricted DNA has evolved, especially in flies, in which three diverse families, Chironomidae, Cecidomyiidae, and Sciaridae exhibit germline restricted chromosomes (GRCs). We conducted a genomic analysis of germline restricted chromosomes in the fungus gnat Bradysia (Sciara) coprophila (Diptera: Sciaridae), which carries two large germline restricted "L" chromosomes. We sequenced and assembled the genome of B. coprophila, and used differences in sequence coverage and k-mer frequency between somatic and germ tissues to identify GRC sequence and compare it to the other chromosomes in the genome. We found that the GRCs in B. coprophila are large, gene-rich, and have many genes with paralogs on other chromosomes in the genome. We also found that the GRC genes are extraordinarily divergent from their paralogs, and have sequence similarity to another Dipteran family (Cecidomyiidae) in phylogenetic analyses, suggesting that these chromosomes have arisen in Sciaridae through introgression from a related lineage. These results suggest that the GRCs may have evolved through an ancient hybridization event, raising questions about how this may have occurred, how these chromosomes became restricted to the germline after introgression, and why they were retained over time.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Hybridization promotes asexual reproduction in Caenorhabditis nematodes 97%
- The fourspine stickleback (Apeltes quadracus) has an XY sex chromosome system with polymorphic inversions on both X and Y chromosomes 96%
- Dynamics of X chromosome hyper-expression and inactivation in male tissues during stick insect development 96%
Similar papers in this journal
- Complex evolutionary history of the Y chromosome in flies of the Drosophila obscura species group 98%
- Whole-genome sequence of Potamopyrgus antipodarum: a model system for the maintenance of sexual reproduction reveals a recent whole-genome duplication 96%
- Increased evolutionary rate in the Z-chromosome of Morpho butterflies and implications for speciation. 96%
Similar papers in this journal
- Complete representation of a tapeworm genome reveals chromosomes capped by centromeres, necessitating a dual role in segregation and protection 96%
- A chromosome-level assembly of the cat flea genome uncovers rampant gene duplication and genome size plasticity 96%
- The X chromosome of the German cockroach, Blattella germanica, is homologous to a fly X chromosome despite 400 million years divergence 96%
"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.