Aug 2026· Scientific Data· Vol 13· 0 citations· 57 references
Medicine
TL;DR
A near telomere-to-telomere (T2T) genome assembly of a farmed rainbow trout from China is presented and provides a valuable resource for resolving lineage-specific structural variation, supporting pangenome construction and facilitating molecular breeding in rainbow trout.
Abstract
The rainbow trout (Oncorhynchus mykiss) exhibits extensive karyotypic diversity (2n = 58–64) driven by Robertsonian translocations, yet widely used reference genomes are derived from North American lineages, leaving Chinese aquaculture populations underrepresented. Here, we present a near telomere-to-telomere (T2T) genome assembly of a farmed rainbow trout from China. Integrating PacBio HiFi, ONT ultra-long reads, and Hi-C data, we assembled a 2.29 Gb genome with 99.04% anchored to 30 chromosomes. Notably, the genome contains only 18 gaps, with 16 gap-free chromosomes and 13 achieving T2T status. Comparative synteny analysis revealed a third chromosomal fission/fusion iteration in which Swanson Omy14 splits into Arlee Omy14 and Omy32. Annotation identified 43,137 protein-coding genes, with a BUSCO completeness of 98.9%. This dataset provides a valuable resource for resolving lineage-specific structural variation, supporting pangenome construction and facilitating molecular breeding in rainbow trout.
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Pteroceltis tatarinowii
is a monotypic relict species endemic to China. It belongs to the genus
Pteroceltis
in the family Cannabaceae, and is an economically and culturally valuable fiber-producing tree species. We integrated PacBio HiFi, Oxford Nanopore Technology (ONT), and Hi-C chromatin conformation capture...
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