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The highly rearranged mitochondrial genomes of the crabs Maja crispata and Maja squinado (Majidae) and gene order evolution in Brachyura

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AbstractWe sequenced the mitochondrial genomes of the spider crabsMaja crispataandMaja squinado(Majidae, Brachyura). Both genomes contain the whole set of 37 genes characteristic of Bilaterian genomes, encoded on both α- and β-strands. Both species exhibit the same gene order, which is unique among known animal genomes. In particular, all the genes located on the β-strand form a single block. This gene order was analysed together with the other nine gene orders known for the Brachyura. Our study confirms that the most widespread gene order (BraGO) represents the plesiomorphic condition for Brachyura and was established at the onset of this clade. All other gene orders are the result of transformational pathways originating from BraGO. The different gene orders exhibit variable levels of genes rearrangements, which involve only tRNAs or all types of genes. Local homoplastic arrangements were identified, while complete gene orders remain unique and represent signatures that can have a diagnostic value. Brachyura appear to be a hot-spot of gene order diversity within the phylum Arthropoda. Our analysis, allowed to track, for the first time, the fully evolutionary pathways producing the Brachyuran gene orders. This goal was achieved by coupling sophisticated bioinformatic tools with phylogenetic analysis.
Title: The highly rearranged mitochondrial genomes of the crabs Maja crispata and Maja squinado (Majidae) and gene order evolution in Brachyura
Description:
AbstractWe sequenced the mitochondrial genomes of the spider crabsMaja crispataandMaja squinado(Majidae, Brachyura).
Both genomes contain the whole set of 37 genes characteristic of Bilaterian genomes, encoded on both α- and β-strands.
Both species exhibit the same gene order, which is unique among known animal genomes.
In particular, all the genes located on the β-strand form a single block.
This gene order was analysed together with the other nine gene orders known for the Brachyura.
Our study confirms that the most widespread gene order (BraGO) represents the plesiomorphic condition for Brachyura and was established at the onset of this clade.
All other gene orders are the result of transformational pathways originating from BraGO.
The different gene orders exhibit variable levels of genes rearrangements, which involve only tRNAs or all types of genes.
Local homoplastic arrangements were identified, while complete gene orders remain unique and represent signatures that can have a diagnostic value.
Brachyura appear to be a hot-spot of gene order diversity within the phylum Arthropoda.
Our analysis, allowed to track, for the first time, the fully evolutionary pathways producing the Brachyuran gene orders.
This goal was achieved by coupling sophisticated bioinformatic tools with phylogenetic analysis.

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