==== Front Mitochondrial DNA B Resour Mitochondrial DNA B Resour Mitochondrial DNA. Part B, Resources 2380-2359 Taylor & Francis 10.1080/23802359.2019.1682481 1682481 Version of RecordResearch Article Mitogenome Announcement Characterization of the first mitochondrial genome of a little Corella (Cacatua sanguinea) and its phylogenetic implications S. Sarker et al.https://orcid.org/0000-0002-2685-8377Sarker Subir ab Talukder Saranika c Sutherland Michelle d Forwood Jade K. e Helbig Karla a Raidal Shane R. b a Department of Physiology, Anatomy and Microbiology, School of Life Sciences, La Trobe University, Melbourne, VIC, Australia; b School of Animal and Veterinary Sciences, Faculty of Science, Charles Sturt University, Albury, New South Wales, Australia; c School of Agriculture and Food, Faculty of Veterinary and Agricultural Sciences, The University of Melbourne, Victoria, Australia; d The Unusual Pet Vets, Frankston, VIC, Australia; e School of Biomedical Sciences, Faculty of Science, Charles Sturt University, Albury, New South Wales, Australia CONTACT Subir Sarker S.Sarker@latrobe.edu.auDepartment of Physiology, Anatomy and Microbiology, School of Life Sciences, La Trobe University, Melbourne, VIC3086, Australia 26 10 2019 2019 4 2 3792 3794 © 2019 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.2019The Author(s)This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.http://creativecommons.org/licenses/by/4.0/Abstract This study was designed to sequence the first complete mitochondrial genome from a little corella (Cacatua sanguinea). The mitogenome sequence was circular and 16,695 bp in length. In comparison to other available mitogenome sequences belongs to Psittacidae species, this mitogenome encoded a conserved structure consisting of 13 protein-coding genes (PCGs), two rRNA genes, 22 tRNA genes. The lengths of 12S and 16S ribosomal RNA were 975 bp and 1582 bp, respectively. The overall base composition of the mitogenome of C. sanguinea was dominated by higher AT (53.0%) than GC (47.0%) content. The complete mitogenome sequence determined in this study is useful for understanding the more profound evolutionary history and the conservation of C. sanguinea. Keywords Avian mtDNAmitogenome phylogenyorder PsittaciformesCacatua sanguinea ==== Body Psittaciformes is a large and diverse avian that order contains over 370 species placed within approximately 74 genera, most of which are distributed in the tropical parts of the Southern Hemisphere (Astuti et al. 2006; White et al. 2011). Although most parrot taxonomists believe the order Psittaciformes to be monophyletic, and some studies based on morphological, biochemical, chromosomal, and allozyme data have been conducted, the within-order phylogeny is still controversial (Astuti et al. 2006). Cockatoos comprise the distinctive family Cacatuidae, a major lineage of the order of parrots (Psittaciformes) that are distributed throughout the Australasian region. However, the evolutionary history of cockatoos is not well understood. There are currently 21 accepted cockatoo species noted for their variation in plumage, which differ from Nestoridae and Psittacidae in a number of characteristics. Cacatuids possess a moveable head-crest, are larger than most Nestorids and psittacids, and lack the Dyck feather texture that Nestorids and Psittacids have for bright blue and green plumage (Higgins 1999). Cockatoos are restricted to the Australasian region (excepting New Zealand), ranging from the Philippines and eastern Indonesian islands of Wallacea to New Guinea, the Solomon Islands and Australia (Cameron and Cunningham 2006). To evaluate the process of diversity and evolutionary relationships among the majority of Cacatuidae species, a molecular phylogeny was constructed using a partial mitochondrial and nuclear DNA sequence, with the addition of five complete mitochondrial genomes, and demonstrated that the Little Corella positioned phylogenetically between the Western Corella (Cacatua pastinator) and Goffin’s Cockatoo (Cacatua goffini) (White et al. 2011). However, we believe that the complete mitogenome could play a significant role to provide more clear evolutionary relationships, the divergence time of speciation, as well as influencing conservation and management decisions of species. Therefore, this study was designed for sequencing the complete mitogenome of C. sanguinea, which will further strengthen our understanding of the species diversity, host phylogeny and ecological diversity of the species. A swab sample moistened in sterile phosphate-buffered saline, of the choana and cloaca was taken from a free-ranging Little Corella (C. sanguinea) originating from Nunawading, Victoria (Sample ID: #46, GPS location: Latitude: 37°49′2.46″S, Longitude: 145°10′37.2″E) and was used in this study. Animal sampling was obtained in accordance with approved guidelines set by the Wildlife and Small Institutions Ethics Committee (DEDJTR Victoria) under application number 01.15 (Sutherland et al. 2019) and the isolated genomic DNA was stored in −20 °C freezer at La Trobe University. The total genomic DNA was extracted using previously established protocol (Sarker, Das et al. 2018, 2017). The genomic library preparation and sequencing were performed according to the published protocol (Sarker, Roberts et al. 2017; Sarker, Isberg et al. 2018). Briefly, the paired-end library with an insert size of 301 bp was prepared using the Illumina Nextera XT DNA Library Perp V3 Kit (Illumina® Inc., San Diego, CA, USA) according to the manufacturer's instructions. Cluster generation and sequencing of the DNA-library were executed on Illumina® MiSeq chemistry according to the manufacturer’s instructions, which was generated approximately 10.98 million reads. The raw datasets were trimmed to pass the quality control based on PHRED score or per base sequence quality score, and the assembly of the mitochondrial genome was conducted using SPAdes assembler (version 3.10.0) (Bankevich et al. 2012) in Geneious. Annotation was performed using default parameter under Genetic code of vertebrate mitochondrial (transl_table 2) in Geneious (version 10.2.2). The complete mitogenome sequence of C. sanguinea had a circular genome of 16,695 bp, containing 13 protein-coding genes (PCGs), 2 rRNA genes, and 22 tRNA genes. The contents of A, T, C, and G were 30.9, 22.1, 32.9, and 14.1, respectively. AT and GC contents of this complete mitogenome were 53.0 and 47.0%, respectively. The proportion of coding sequences with a total length of 11,278 bp (67.55%), which encodes 3748 amino acids, and all protein-coding genes started with Met. The lengths of 12S and 16S ribosomal RNA were 975 bp and 1582 bp, respectively. The gene arrangement was similar to the complete mitochondrial genome of other Psittaciformes species. The complete mitogenome sequence of a C. sanguinea determined in this study, and other selected mitogenome sequences belong to the order Psittaciformes were retrieved from NCBI database and were aligned using the MAFFT L-INS-i algorithm in Geneious (Katoh et al. 2002). A maximum likelihood (ML) phylogenetic tree with 1000 non-parametric bootstrap resamplings was generated using Geneious (version 10.2.2). As highlighted in Figure 1, the mitogenome sequence of C. sanguinea produced a sub-clade with Indian ringneck parrot (Psittacula krameri; GenBank accession no. MN065674) (Sarker et al. 2019) and demonstrated a >91% pairwise nucleotide identity between them. We concluded that the complete mitogenome of C. sanguinea will be a useful database among the genus Cacatua to study the further host-phylogenetic relationship of Cacatua species, and suggests that this may be an implication for the conservation and management of the species. Figure 1. Maximum-likelihood phylogenetic tree to infer host-phylogeny relationship using mitochondrial genome sequenced from C. sanguinea along with others selected species under the order of Psittaciformes. The new complete mitogenome of C. sanguinea was highlighted by bold font. Disclosure statement The authors declare no conflicts of interest. The authors alone are responsible for the content and writing of the manuscript. The sequence has been submitted to NCBI under the accession number of MN126573. ==== Refs References Astuti D , Azuma N , Suzuki H , Higashi S 2006 Phylogenetic relationships within parrots (Psittacidae) inferred from mitochondrial cytochrome-b gene sequences . Zoolog Sci . 23 :191 –198 .16603811 Bankevich A , Nurk S , Antipov D , Gurevich AA , Dvorkin M , Kulikov AS , Lesin VM , Nikolenko SI , Pham S , Prjibelski AD , et al. 2012 SPAdes: a new genome assembly algorithm and its applications to single-cell sequencing . J Comput Biol . 19 :455 –477 .22506599 Cameron M , Cunningham RB 2006 Habitat selection at multiple spatial scales by foraging Glossy Black-cockatoos . Austral Ecol . 31 :597 –607 . Higgins PJ 1999 In: Handbook of Australian, New Zealand & antarctic birds. Vol. 4, Parrots to Dollarbird . Oxford : Oxford University Press. Katoh K , Misawa K , Kuma K , Miyata T 2002 MAFFT: a novel method for rapid multiple sequence alignment based on fast Fourier transform . Nucleic Acids Res . 30 :3059 –3066 .12136088 Sarker S , Das S , Helbig K , Peters A , Raidal SR 2018 Genome sequence of an Australian strain of Canid alphaherpesvirus 1 . Aust Vet J . 96 :24 –27 .29265176 Sarker S , Das S , Lavers JL , Hutton I , Helbig K , Imbery J , Upton C , Raidal SR 2017 Genomic characterization of two novel pathogenic avipoxviruses isolated from pacific shearwaters (Ardenna spp.) . BMC Genomics . 18 :298 .28407753 Sarker S , Isberg SR , Milic NL , Lock P , Helbig KJ 2018 Molecular characterization of the first saltwater crocodilepox virus genome sequences from the world’s largest living member of the Crocodylia . Sci Rep . 8 :5623 .29618766 Sarker S , Roberts HK , Tidd N , Ault S , Ladmore G , Peters A , Forwood JK , Helbig K , Raidal SR 2017 Molecular and microscopic characterization of a novel Eastern grey kangaroopox virus genome directly from a clinical sample . Sci Rep . 7 :16472 .29184134 Sarker S , Sutherland M , Talukder S , Das S , Forwood JK , Helbig K , Raidal SR 2019 The first complete mitogenome of Indian ringneck (Psittacula krameri) demonstrates close phylogenetic relationship with Eclectus parrot . J Mitochondrial DNA Part B . 4 :3579 . Sutherland M , Sarker S , Vaz PK , Legione AR , Devlin JM , Macwhirter PL , Whiteley PL , Raidal SR 2019 Disease surveillance in wild Victorian cacatuids reveals co-infection with multiple agents and detection of novel avian viruses . Vet Microbiol . 235 :257 –264 .31383310 White NE , Phillips MJ , Gilbert MTP , Alfaro-Núñez A , Willerslev E , Mawson PR , Spencer PBS , Bunce M 2011 The evolutionary history of cockatoos (Aves: Psittaciformes: Cacatuidae) . Mol Phylogenet Evol . 59 :615 –622 .21419232