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Mitochondrial Genomes of Kinorhyncha: trnM Duplication and New Gene Orders within Animals
- Source :
- PLoS ONE, Vol 11, Iss 10, p e0165072 (2016), PLoS ONE
- Publication Year :
- 2016
- Publisher :
- Public Library of Science (PLoS), 2016.
-
Abstract
- Many features of mitochondrial genomes of animals, such as patterns of gene arrangement, nucleotide content and substitution rate variation are extensively used in evolutionary and phylogenetic studies. Nearly 6,000 mitochondrial genomes of animals have already been sequenced, covering the majority of animal phyla. One of the groups that escaped mitogenome sequencing is phylum Kinorhyncha-an isolated taxon of microscopic worm-like ecdysozoans. The kinorhynchs are thought to be one of the early-branching lineages of Ecdysozoa, and their mitochondrial genomes may be important for resolving evolutionary relations between major animal taxa. Here we present the results of sequencing and analysis of mitochondrial genomes from two members of Kinorhyncha, Echinoderes svetlanae (Cyclorhagida) and Pycnophyes kielensis (Allomalorhagida). Their mitochondrial genomes are circular molecules approximately 15 Kbp in size. The kinorhynch mitochondrial gene sequences are highly divergent, which precludes accurate phylogenetic inference. The mitogenomes of both species encode a typical metazoan complement of 37 genes, which are all positioned on the major strand, but the gene order is distinct and unique among Ecdysozoa or animals as a whole. We predict four types of start codons for protein-coding genes in E. svetlanae and five in P. kielensis with a consensus DTD in single letter code. The mitochondrial genomes of E. svetlanae and P. kielensis encode duplicated methionine tRNA genes that display compensatory nucleotide substitutions. Two distant species of Kinorhyncha demonstrate similar patterns of gene arrangements in their mitogenomes. Both genomes have duplicated methionine tRNA genes; the duplication predates the divergence of two species. The kinorhynchs share a few features pertaining to gene order that align them with Priapulida. Gene order analysis reveals that gene arrangement specific of Priapulida may be ancestral for Scalidophora, Ecdysozoa, and even Protostomia.
- Subjects :
- 0106 biological sciences
0301 basic medicine
lcsh:Medicine
Biochemistry
01 natural sciences
Genome
Methionine
Gene Duplication
Invertebrate Genomics
Gene Order
Gene orders
Amino Acids
lcsh:Science
Genome Evolution
Energy-Producing Organelles
Gene Rearrangement
Genetics
Multidisciplinary
Organic Compounds
Phylogenetic Analysis
Genomics
Mitochondria
Nucleic acids
Chemistry
Physical Sciences
Cellular Structures and Organelles
Transfer RNA
Sequence Analysis
Research Article
Genome evolution
Mitochondrial DNA
RNA, Transfer, Met
Bioenergetics
Biology
Research and Analysis Methods
DNA, Mitochondrial
010603 evolutionary biology
Molecular Evolution
03 medical and health sciences
Priapulida
Sulfur Containing Amino Acids
Animals
Non-coding RNA
Molecular Biology Techniques
Sequencing Techniques
Codon
Molecular Biology
Gene
Molecular Biology Assays and Analysis Techniques
Evolutionary Biology
Base Sequence
Organic Chemistry
lcsh:R
Chemical Compounds
Biology and Life Sciences
Proteins
Computational Biology
Bayes Theorem
Cell Biology
Sequence Analysis, DNA
Genome Analysis
biology.organism_classification
030104 developmental biology
Scalidophora
Animal Genomics
Genome, Mitochondrial
RNA
Nucleic Acid Conformation
lcsh:Q
Sequence Alignment
Ecdysozoa
Subjects
Details
- Language :
- English
- ISSN :
- 19326203
- Volume :
- 11
- Issue :
- 10
- Database :
- OpenAIRE
- Journal :
- PLoS ONE
- Accession number :
- edsair.doi.dedup.....e963b131a1996fb5094ec64c8ee4029a