The Linum usitatissimum L. plastome reveals atypical structural evolution, new editing sites, and the phylogenetic position of Linaceae within Malpighiales

Plant Cell Rep. 2018 Feb;37(2):307-328. doi: 10.1007/s00299-017-2231-z. Epub 2017 Oct 30.

Abstract

The plastome of Linum usitatissimum was completely sequenced allowing analyses of evolution of genome structure, RNA editing sites, molecular markers, and indicating the position of Linaceae within Malpighiales. Flax (Linum usitatissimum L.) is an economically important crop used as food, feed, and industrial feedstock. It belongs to the Linaceae family, which is noted by high morphological and ecological diversity. Here, we reported the complete sequence of flax plastome, the first species within Linaceae family to have the plastome sequenced, assembled and characterized in detail. The plastome of flax is a circular DNA molecule of 156,721 bp with a typical quadripartite structure including two IRs of 31,990 bp separating the LSC of 81,767 bp and the SSC of 10,974 bp. It shows two expansion events from IRB to LSC and from IRB to SSC, and a contraction event in the IRA-LSC junction, which changed significantly the size and the gene content of LSC, SSC and IRs. We identified 109 unique genes and 2 pseudogenes (rpl23 and ndhF). The plastome lost the conserved introns of clpP gene and the complete sequence of rps16 gene. The clpP, ycf1, and ycf2 genes show high nucleotide and aminoacid divergence, but they still possibly retain the functionality. Moreover, we also identified 176 SSRs, 20 tandem repeats, and 39 dispersed repeats. We predicted in 18 genes a total of 53 RNA editing sites of which 32 were not found before in other species. The phylogenetic inference based on 63 plastid protein-coding genes of 38 taxa supports three major clades within Malpighiales order. One of these clades has flax (Linaceae) sister to Chrysobalanaceae family, differing from earlier studies that included Linaceae into the euphorbioid clade.

Keywords: Extranuclear inheritance; Gene duplication; Plastid evolution; Plastid microsatellites; Rearrangements.

MeSH terms

  • Binding Sites / genetics
  • Chloroplast Proteins / genetics
  • DNA, Chloroplast / chemistry
  • DNA, Chloroplast / genetics
  • Evolution, Molecular
  • Flax / genetics*
  • Genes, Chloroplast / genetics
  • Genome, Plastid / genetics*
  • Linaceae / classification
  • Linaceae / genetics*
  • Phylogeny
  • Plastids / genetics*
  • RNA Editing*
  • Sequence Analysis, DNA

Substances

  • Chloroplast Proteins
  • DNA, Chloroplast