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Chromosome-scale Genome Assembly of the West Indian Fruit Fly Anastrepha obliqua (Diptera: Tephritidae)

Sim, S. B.; Congrains, C.; Velasco-Cuervo, S. M.; Corpuz, R. L.; Kauwe, A. N.; Scheffler, B.; Geib, S. M.

2023-09-26 genomics
10.1101/2023.09.22.559041 bioRxiv
Show abstract

The West Indian fruit fly, Anastrepha obliqua, is a major pest of mango in Central and South America and attacks more than 60 species of host fruits. To support current genetic and genomic research on A. obliqua, we sequenced the genome using high-fidelity (HiFi) long-read sequencing. This resulted in a highly contiguous contig assembly with 90% of the genome in 10 contigs. The contig assembly was placed in a chromosomal context using synteny with a closely related species, A. ludens, as both are members of the A. fraterculus group. The resulting assembly represents the five autosomes and the X chromosome which represents 95.9% of the genome, and 199 unplaced contigs representing the remaining 4.1%. Orthology analysis across the structural annotation sets of high quality tephritid genomes demonstrates the gene annotations are robust, and identified genes unique to Anastrepha species that may help define their pestiferous nature that can be used as a starting point for comparative genomics. This genome assembly represents the first of this species and will serve as a foundation for future genetic and genomic research in support of its management as an agricultural pest.

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