Unravelling termite evolution with 47 high-resolution genome assemblies
Liu, C.; Aumont, C.; Mikhailova, A.; Audisio, T.; Hellemans, S.; Weng, Y.-M.; He, S.; Clitheroe, C.; wang, Z.; Haifig, I.; Sillam-Dusses, D.; Bucek, A.; Tokuda, G.; Sobotnik, J.; Harrison, M.; Mcmahon, D.; bourguignon, t.
Show abstract
Termites are a lineage of social cockroaches abundant in tropical ecosystems where they are key decomposers of organic matter from wood to soil. Despite their ecological significance, only a handful of reference-quality termite genomes have been sequenced, which is insufficient to unravel the genetic mechanisms that have contributed to their ecological success. Here, we performed sequencing and hybrid assembly of 45 taxonomically and ecologically diverse termites and two cockroaches, resulting in haplotype-merged genome assemblies of 47 species, 22 of which were near-chromosome level. Next, we examined the link between termite dietary evolution and major genomic events. We found that Termitidae, which include [~]80% of described termite species, have larger genomes with more genes and a higher proportion of transposons than other termites. Our analyses identified a gene number expansion early in the evolution of Termitidae, including an expansion of the repertoire of CAZymes, the genes involved in lignocellulose degradation. Notably, this expansion of genomes and gene repertoires coincided with the origin of soil-feeding in Termitidae and remained unchanged in lineages that secondarily reverted to a wood-based diet. Overall, our sequencing effort multiplied the number of available termite genomes by six and provided unprecedented insights into the genome evolution of the most ancient lineage of social insects.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Shared features underlying compact genomes and extreme habitat use in chironomid midges 97%
- Draft Genome Assemblies and Annotations of Agrypnia vestita Walker, and Hesperophylaxmagnus Banks Reveal Substantial Repetitive Element Expansion in Tube Case-making Caddisflies (Insecta: Trichoptera) 97%
- The genome of the blind soil-dwelling and ancestrally wingless dipluran Campodea augens, a key reference hexapod for studying the emergence of insect innovations 97%
Similar papers in this journal
- The Primula edelbergii S-locus is an example of a jumping supergene 96%
- A target capture approach for phylogenomic analyses at multiple evolutionary timescales in rosewoods (Dalbergia spp.) and the legume family (Fabaceae) 96%
- A chromosome-level genome assembly of the woolly apple aphid, Eriosoma lanigerum (Hausmann) (Hemiptera: Aphididae) 95%
Similar papers in this journal
- Caecilian genomes reveal molecular basis of adaptation and convergent evolution of limblessness in snakes and caecilians. 97%
- Tempo of degeneration across independently evolved non-recombining regions 96%
- Genome-scale profiling reveals higher proportions of phylogenetic signal in non-coding data 96%
Similar papers in this journal
Similar papers in this journal
- Extreme genome scrambling in cryptic Oikopleura dioica species 98%
- Telomeric repeat evolution in the phylum Nematoda revealed by high-quality genome assemblies and subtelomere structures 95%
- Grasshopper genome reveals long-term conservation of the X chromosome and temporal variation in X chromosome evolution 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.