Author:
Kobayashi Genki,Itoh Hajime,Kojima Shigeaki
Abstract
AbstractMitogenomes are useful for inferring phylogenetic relationships between organisms. Although the mitogenomes of Annelida, one of the most morphologically and ecologically diverse metazoan groups have been well sequenced, those of several families remain unexamined. This study determined the first mitogenome from the family Travisiidae (Travisia sanrikuensis), analyzed its mitogenomic features, and reconstructed a phylogeny of Sedentaria. The monophyly of the Terebellida + Arenicolida + Travisiidae clade is supported by molecular phylogenetic analysis. The placement of Travisiidae is unclear because of the lack of mitogenomes from closely related lineages. An unexpected intron appeared within the cox1 gene of T. sanrikuensis and in the same positions of five undescribed Travisia spp. Although the introns are shorter (790–1386 bp) than other group II introns, they can be considered degenerate group II introns due to type II intron maturase open reading frames, found in two of the examined species, and motifs characteristic of group II introns. This is likely the first known case in metazoans where mitochondrial group II introns obtained by a common ancestor are conserved in several descendants. Insufficient evolutionary time for intron loss in Travisiidae, or undetermined mechanisms may have helped maintain the degenerate introns.
Publisher
Springer Science and Business Media LLC
Reference92 articles.
1. Tan, M. H. et al. Comparative mitogenomics of the Decapoda reveals evolutionary heterogeneity in architecture and composition. Sci. Rep. 9, 1–16 (2019).
2. Zhang, Y. et al. Phylogeny, evolution and mitochondrial gene order rearrangement in scale worms (Aphroditiformia, Annelida). Mol. Phylogenet. Evol. 125, 220–231 (2018).
3. Weigert, A. et al. Evolution of mitochondrial gene order in Annelida. Mol. Phylogenet. Evol. 94, 196–206 (2016).
4. Boore, J. L., Collins, T. M., Stanton, D., Daehler, L. L. & Boore, W. M. Deducing the pattern of arthropod phylogeny from mitochondrial DNA rearrangements. Nature 376, 163–165 (1995).
5. Aguado, M. T., Glasby, C. J., Schroeder, P. C., Weigert, A. & Bleidorn, C. The making of a branching annelid: An analysis of complete mitochondrial genome and ribosomal data of Ramisyllis multicaudata. Sci. Rep. 5, 1–13 (2015).
Cited by
7 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献