ArticleIntegrative zoology2025
Chromosome-level genome assembly and population genomic analysis provide insights into the genetic diversity and adaption of Schizopygopsis younghusbandi on the Tibetan Plateau.
Article in Integrative zoology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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10 citing papers in PubMed.
- Genetic and Haplotype Diversity ofAnimals : an open access journal from MDPI · 2026Article
- Article
- Haplotype-resolved chromosome-level genome assembly of Schizothorax davidi.Scientific data · 2026Article
- Chromosome-level genome assembly and annotation of the schizothoracine fish Gymnodiptychus pachycheilus.Scientific data · 2026Article
- Population structure based on whole-genome resequencing and adaptive evolutionary mechanisms of circadian entrainment in the endangered fish Percocypris pingi.BMC genomics · 2026Article
- The haplotype-resolved and near telomere-to-telomere genome assembly for Hypsebarbus vernayi.Scientific data · 2025Article
- Chromosome-level genome assembly and population genomic analysis provide insights into the genetic diversity and adaption of Schizopygopsis younghusbandi on the Tibetan Plateau.Integrative zoology · 2025Article
- Population Structure and Resource Dynamics of Three Schizothoracinae Species in the Duoxiong Zangbo River Tributary of the Yarlung Zangbo River, Tibet: Threat Assessment and Conservation Insights.Animals : an open access journal from MDPI · 2025Article
- Population Structure, Growth Characteristics, Resource Dynamics, and Management Strategies ofBiology · 2025Article
- Article
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16 authors.
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Abstract
The Yarlung Tsangpo River on the Tibetan Plateau provides a unique natural environment for studying fish evolution and ecology. However, the genomes and genetic diversity of plateau fish species have been rarely reported. Schizopygopsis younghusbandi, a highly specialized Schizothoracine species and economically important fish inhabiting the Yarlung Tsangpo River, is threatened by overfishing and biological invasion. Herein, we generated a chromosome-level genome of S. younghusbandi and whole-genome resequencing data for 59 individuals from six locations of the river. The results showed that the divergence time between S. younghusbandi and other primitive Schizothoracine species was ∼4.2 Mya, coinciding with the major phase of the Neogene Tibetan uplift. The expanded gene families enriched in DNA integration and replication, ion binding and transport, energy storage, and metabolism likely contribute to the adaption of this species. The S. younghusbandi may have diverged from other highly specialized Schizothoracine species in the Zanda basin during the Pliocene epoch, which underwent major population reduction possibly due to the drastic climate change during the last glacial period. Population analysis indicated that the ancient population might have originated upstream before gradually adapting to evolve into the populations inhabiting the mid-stream and downstream regions of the Yarlung Tsangpo River. In conclusion, the chromosome-level genome and population diversity of S. younghusbandi provide valuable genetic resources for the evolution, ecology, and conservation studies of endemic fishes on the Tibetan Plateau.
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