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Population structure and adaptability analysis of Schizothorax o'connori based on whole-genome resequencing. | LitMetric

AI Article Synopsis

  • Schizothorax o'connori, a fish endemic to the Yarlung Zangbo River in China, serves as a model for studying genetic differences and environmental adaptations due to its history of gene replication and impacts from the uplift of the Qinghai-Tibet Plateau.
  • Whole-genome resequencing revealed a total of 23,602,746 SNPs across seven populations, indicating low genetic diversity and minimal differentiation, except for some distinctions within the Zangga population.
  • The research highlights how the historical population dynamics, influenced by geological events, shaped the genetic structure and adaptation mechanisms of S. o'connori, especially in DNA repair and energy metabolism pathways.

Article Abstract

Background: Schizothorax o'connori is an endemic fish distributed in the upper and lower reaches of the Yarlung Zangbo River in China. It has experienced a fourth round of whole gene replication events and is a good model for exploring the genetic differentiation and environmental adaptability of fish in the Qinghai-Tibet Plateau. The uplift of the Qinghai-Tibet Plateau has led to changes in the river system, thereby affecting gene exchange and population differentiation between fish populations. With the release of fish whole genome data, whole genome resequencing has been widely used in genetic evolutionary analysis and screening of selected genes in fish, which can better elucidate the genetic basis and molecular environmental adaptation mechanisms of fish. Therefore, our purpose of this study was to understand the population structure and adaptive characteristics of S. o'connori using the whole-genome resequencing method.

Results: The results showed that 23,602,746 SNPs were identified from seven populations, mostly distributed on chromosomes 2 and 23. There was no significant genetic differentiation between the populations, and the genetic diversity was relatively low. However, the Zangga population could be separated from the Bomi, Linzhi, and Milin populations in the cluster analysis. Based on historical dynamics analysis of the population, the size of the ancestral population of S. o'connori was affected by the late accelerated uplift of the Qinghai Tibet Plateau and the Fourth Glacial Age. The selected sites were mostly enriched in pathways related to DNA repair and energy metabolism.

Conclusion: Overall, the whole-genome resequencing analysis provides valuable insights into the population structure and adaptive characteristics of S. o'connori. There was no obvious genetic differentiation at the genome level between the S. o'connori populations upstream and downstream of the Yarlung Zangbo River. The current distribution pattern and genetic diversity are influenced by the late accelerated uplift of the Qinghai Tibet Plateau and the Fourth Ice Age. The selected sites of S. o'connori are enriched in the energy metabolism and DNA repair pathways to adapt to the low temperature and strong ultraviolet radiation environment at high altitude.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10845765PMC
http://dx.doi.org/10.1186/s12864-024-09975-9DOI Listing

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