AI Article Synopsis

  • * The assembled genome is about 2.62 Gb long with over 7,000 scaffolds and contains a significant amount of repetitive sequences (41%), showing high completeness with 97% of mammalian single-copy orthologs successfully identified.
  • * Additionally, 20,045 protein-coding sequences were found, leading to extensive annotations, and various RNA types (like tRNAs and miRNAs) were identified, providing insights into the evolution and adaptation of the snow sheep.

Article Abstract

The snow sheep, Ovis nivicola, which is endemic to the mountain ranges of northeastern Siberia, are well adapted to the harsh cold climatic conditions of their habitat. In this study, using long reads of Nanopore sequencing technology, whole-genome sequencing, assembly, and gene annotation of a snow sheep were carried out. Additionally, RNA-seq reads from several tissues were also generated to supplement the gene prediction in snow sheep genome. The assembled genome was ∼2.62 Gb in length and was represented by 7,157 scaffolds with N50 of about 2 Mb. The repetitive sequences comprised of 41% of the total genome. BUSCO analysis revealed that the snow sheep assembly contained full-length or partial fragments of 97% of mammalian universal single-copy orthologs (n = 4,104), illustrating the completeness of the assembly. In addition, a total of 20,045 protein-coding sequences were identified using comprehensive gene prediction pipeline. Of which 19,240 (∼96%) sequences were annotated using protein databases. Moreover, homology-based searches and de novo identification detected 1,484 tRNAs; 243 rRNAs; 1,931 snRNAs; and 782 miRNAs in the snow sheep genome. To conclude, we generated the first de novo genome of the snow sheep using long reads; these data are expected to contribute significantly to our understanding related to evolution and adaptation within the Ovis genus.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7487135PMC
http://dx.doi.org/10.1093/gbe/evaa124DOI Listing

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