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Complete mitochondrial genome sequence of the Himalayan Griffon, Gyps himalayensis (Accipitriformes: Accipitridae): Sequence, structure, and phylogenetic analyses

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Version 2 2024-06-04, 14:36
Version 1 2019-08-01, 00:00
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posted on 2024-06-04, 14:36 authored by L Jiang, L Peng, M Tang, Z You, M Zhang, A West, Q Ruan, W Chen, J Merilä
Ecology and Evolution published by John Wiley & Sons Ltd. This is the first study to describe the mitochondrial genome of the Himalayan Griffon, Gyps himalayensis, which is an Old World vulture belonging to the family Accipitridae and occurring along the Himalayas and the adjoining Tibetan Plateau. Its mitogenome is a closed circular molecule 17,381 bp in size containing 13 protein-coding genes, 22 tRNA coding genes, two rRNA-coding genes, a control region (CR), and an extra pseudo-control region (CCR) that are conserved in most Accipitridae mitogenomes. The overall base composition of the G. himalayensis mitogenome is 24.55% A, 29.49% T, 31.59% C, and 14.37% G, which is typical for bird mitochondrial genomes. The alignment of the Accipitridae species control regions showed high levels of genetic variation and abundant AT content. At the 5′ end of the domain I region, a long continuous poly-C sequence was found. Two tandem repeats were found in the pseudo-control regions. Phylogenetic analysis with Bayesian inference and maximum likelihood based on 13 protein-coding genes indicated that the relationships at the family level were (Falconidae + (Cathartidae + (Sagittariidae + (Accipitridae + Pandionidae))). In the Accipitridae clade, G. himalayensis is more closely related to Aegypius monachus than to Spilornis cheela. The complete mitogenome of G. himalayensis provides a potentially useful resource for further exploration of the taxonomic status and phylogenetic history of Gyps species.

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Location

Chichester, Eng.

Open access

  • Yes

Language

eng

Publication classification

C1 Refereed article in a scholarly journal

Copyright notice

2019, The Authors.

Journal

Ecology and evolution

Volume

9

Pagination

8813-8828

ISSN

2045-7758

eISSN

2045-7758

Issue

15

Publisher

Wiley Open Access

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