| Literature DB >> 26370465 |
Marta Alonso1, Rafael Medina2, María Jesús Cano1, Juan Antonio Jiménez1, Bernard Goffinet2.
Abstract
The mitochondrial genome of mosses is characterized by a highly conserved structure and genic content. This is confirmed here through the assembly and annotation of the mt genome of the moss Oxystegus tenuirostris, family Pottiaceae, for which it is assembled. A phylogenetic tree is inferred from the whole genome of 16 species of mosses to validate the sequence of O. tenuirostris by confirming its shared ancestry with Syntrichia. The genome is 105 001 bp long, with a GC content of 39.2%, comprising 40 protein coding, 24 tRNA, and 3 rRNA genes. All introns reported from the mt genome of all but one peristomate moss are present, whereas no region of 50 bp or more is repeated within the genome. The genic content and order is identical to that of most mosses, highlighting that the mt genome is static not only across the phylogenetic depth but also breadth of the moss tree of life.Entities:
Keywords: Bryophytes; Pottiales; complete mitogenome
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Year: 2015 PMID: 26370465 DOI: 10.3109/19401736.2015.1082087
Source DB: PubMed Journal: Mitochondrial DNA A DNA Mapp Seq Anal ISSN: 2470-1394 Impact factor: 1.514