Characterization and Comparison of Two Complete Plastomes of Rosaceae Species (Potentilla dickinsii var. glabrata and Spiraea insularis) Endemic to Ulleung Island, Korea

Int J Mol Sci. 2020 Jul 13;21(14):4933. doi: 10.3390/ijms21144933.

Abstract

Potentilla dickinsii var. glabrata and Spiraea insularis in the family Rosaceae are species endemic to Ulleung Island, Korea, the latter of which is listed as endangered. In this study, we characterized the complete plastomes of these two species and compared these with previously reported plastomes of other Ulleung Island endemic species of Rosaceae (Cotoneaster wilsonii, Prunus takesimensis, Rubus takesimensis, and Sorbus ulleungensis). The highly conserved complete plastomes of P. dickinsii var. glabrata and S. insularis are 158,637 and 155,524 base pairs with GC contents of 37% and 36.9%, respectively. Comparative phylogenomic analysis identified three highly variable intergenic regions (trnT-UGU/trnL-UAA, rpl32/trnL-UAG, and ndhF/rpl32) and one variable genic region (ycf1). Only 14 of the 75 protein-coding genes have been subject to strong purifying selection. Phylogenetic analysis of 23 representative plastomes within the Rosaceae supported the monophyly of Potentilla and the sister relationship between Potentilla and Fragaria and indicated that S. insularis is sister to a clade containing Cotoneaster, Malus, Pyrus, and Sorbus. The plastome resources generated in this study will contribute to elucidating the plastome evolution of insular endemic Rosaceae on Ulleung Island and also in assessing the genetic consequences of anagenetic speciation for various endemic lineages on the island.

Keywords: Potentilla dickinsii var. glabrata; Rosaceae; Spiraea insularis; Ulleung Island; anagenetic speciation; plastome.

Publication types

  • Comparative Study

MeSH terms

  • Chloroplasts / genetics*
  • Codon Usage
  • Conserved Sequence
  • Genetic Speciation
  • Genome, Plastid*
  • Islands
  • Korea
  • Likelihood Functions
  • Phylogeny
  • Potentilla / genetics*
  • Rosaceae / genetics
  • Selection, Genetic
  • Species Specificity
  • Spiraea / genetics*