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Updated: Jan 9, 2026

High-throughput Physical Mapping of Chromosomes using Automated in situ Hybridization
Published on: June 28, 2012
The haplotype-resolved and near telomere-to-telomere genome assembly for Hypsebarbus vernayi
Zhibang Wang1, Yu Gao2, Chuanshuai Xie1
1Integrative Science Center of Germplasm Creation in Western China (Chongqing) Science City, MOE Key Laboratory of Freshwater Fish Reproduction and Development, School of Life Sciences, Southwest University, Chongqing, 400715, China.
Abstract:
Hypsibarbus vernayi (2n = 50), a medium-sized barb distributed in the Mekong River basin, is widely consumed in its native range and holds significant potential for commercial aquaculture development. To date, there is no high-quality genome available for this species. In this study, we generated a haplotype-resolved and near-T2T assembly of H. vernayi utilizing PacBio HiFi, Oxford Nanopore and Hi-C technologies. The assembled genome sizes for two haplotypes are 709 Mb and 707 Mb with scaffold N50 of 27.8 Mb and 26.8 Mb, respectively. A 262-bp satellite DNA sequence was identified as the centromeric repeats that appeared on almost all chromosomes. The diploid genome contains only eight gaps: one and seven in the two haploid genomes, respectively. Furthermore, 31 out of 50 chromosomes have telomeres assembled at both ends. This high-quality reference genome is expected to facilitate the breeding efforts for this species.
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