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Updated: Jan 10, 2026

High-throughput Physical Mapping of Chromosomes using Automated in situ Hybridization
Published on: June 28, 2012
Chromosome-level genome assembly and annotation of the Triplophysa pappenheimi
Ying Li1,2, Dan Liu1, Zhanwen Yao1,2
1State Key Laboratory of Plateau Ecology and Agriculture, Qinghai University, Xining, 810016, China.
Abstract:
Triplophysa pappenheimi, an ecologically important species within the plateau freshwater ecosystem, predominantly inhabits the rapids of the upper Yellow River, its tributaries, and associated lakes, playing a crucial role in maintaining local aquatic biodiversity and serving as a model for plateau fish adaptation studies. In this study, we utilized a combination of Illumina short-read sequencing, PacBio HiFi long-read sequencing, and Hi-C technology to generate the first high-quality, chromosome-level genome assembly of T. pappenheimi. The assembled genome spans 626.33 Mb, organized into 25 pseudochromosomes, with a scaffold N50 of 24.41 Mb. We annotated 24,952 genes, representing 98.82% of the predicted protein-coding genes. In addition, we used GetOrganelle v1.7.7.1 to isolate and assemble the complete mitochondrial genome from the Illumina sequencing data, with a total length of 16,574 bp, and successfully achieved circularization. This high-quality genome assembly provides a valuable genomic resource for understanding the evolutionary history, adaptive mechanisms, and biological characteristics of this species.
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