Abstract

Buceros bicornis (Bucerotiformes: Bucerotidae) has been listed as a near threatened species by the International Union for Conservation of Nature and Natural Resources (IUCN) due to over-hunting and habitat loss. Thus, it is a great challenge for us to efficiently protect the Buceros bicornis resource from extinct. Molecular biology research can provide the scientific basis for the conservation of key endangered species. In this work, we first reported the complete mitochondrial genome (mitogenome) sequence of Buceros bicornis by next-generation sequencing (NGS). The total length of the complete mitogenome was 17,117 bp and its overall base composition was estimated to be 30.2% for A, 23.5% for T, 32.3% for C and 14.0% for G, indicating an A + T (53.7%)-rich feature in the Buceros bicornis complete mitogenome. In addition, it contained the typical structure of 13 protein-coding genes (PCGs), 2 ribosomal RNA genes, 22 transfer RNA genes (tRNAs) and a non-coding control region (D-loop region). The newly obtained mitogenome sequence seems to be useful for conservation biology and evolutionary studies on hornbill bird species, which would contribute to enrich the Buceros bicornis mitogenome resource and promote its biological research.

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