Analysis of complete chloroplast genome sequences and insight into the phylogenetic relationships of Ferula L.
BACKGROUND
Ferula L. is one of the largest and most taxonomically complicated genera as well as being an important medicinal plant resource in the family Apiaceae. To investigate the plastome features and phylogenetic relationships of Ferula and its neighboring genera Soranthus Ledeb., Schumannia Kuntze., and Talassia Korovin, we sequenced 14 complete plastomes of 12 species. RESULTS: The size of the 14 complete chloroplast genomes ranged from 165,607 to 167,013 base pairs (bp) encoding 132 distinct genes (87 protein-coding, 37 tRNA, and 8 rRNA genes), and showed a typical quadripartite structure with a pair of inverted repeats (IR) regions. Based on comparative analysis, we found that the 14 plastomes were similar in codon usage, repeat sequence, simple sequence repeats (SSRs), and IR borders, and had significant collinearity. Based on our phylogenetic analyses, Soranthus, Schumannia, and Talassia should be considered synonymous with Ferula. Six highly divergent regions (rps16/trnQ-UUG, trnS-UGA/psbZ, psbH/petB, ycf1/ndhF, rpl32, and ycf1) were also detected, which may represent potential molecular markers, and combined with selective pressure analysis, the weak positive selection gene ccsA may be a discriminating DNA barcode for Ferula species.CONCLUSION
Plastids contain abundant informative sites for resolving phylogenetic relationships. Combined with previous studies, we suggest that there is still much room for improvement in the classification of Ferula. Overall, our study provides new insights into the plastome evolution, phylogeny, and taxonomy of this genus.
BACKGROUND
Ferula L. is one of the largest and most taxonomically complicated genera as well as being an important medicinal plant resource in the family Apiaceae. To investigate the plastome features and phylogenetic relationships of Ferula and its neighboring genera Soranthus Ledeb., Schumannia Kuntze., and Talassia Korovin, we sequenced 14 complete plastomes of 12 species. RESULTS: The size of the 14 complete chloroplast genomes ranged from 165,607 to 167,013 base pairs (bp) encoding 132 distinct genes (87 protein-coding, 37 tRNA, and 8 rRNA genes), and showed a typical quadripartite structure with a pair of inverted repeats (IR) regions. Based on comparative analysis, we found that the 14 plastomes were similar in codon usage, repeat sequence, simple sequence repeats (SSRs), and IR borders, and had significant collinearity. Based on our phylogenetic analyses, Soranthus, Schumannia, and Talassia should be considered synonymous with Ferula. Six highly divergent regions (rps16/trnQ-UUG, trnS-UGA/psbZ, psbH/petB, ycf1/ndhF, rpl32, and ycf1) were also detected, which may represent potential molecular markers, and combined with selective pressure analysis, the weak positive selection gene ccsA may be a discriminating DNA barcode for Ferula species.
CONCLUSION
Plastids contain abundant informative sites for resolving phylogenetic relationships. Combined with previous studies, we suggest that there is still much room for improvement in the classification of Ferula. Overall, our study provides new insights into the plastome evolution, phylogeny, and taxonomy of this genus.
- NCBI accession OM993535; Ferula equisetacea chloroplast, complete genome.
- NCBI accession ON324036; Ferula ovina chloroplast, complete genome.
- NCBI accession ON324037; Schumannia karelinii chloroplast, complete genome.
- NCBI accession ON324038; Ferula sibirica chloroplast, complete genome.
- NCBI accession ON324039; Ferula sibirica chloroplast, complete genome.
- NCBI accession ON324040; Ferula transiliensis chloroplast, complete genome.
- NCBI accession ON324041; Ferula transiliensis chloroplast, complete genome.
- NCBI accession ON324042; Ferula gigantea chloroplast, complete genome.
- NCBI accession ON324043; Ferula fedtschenkoana chloroplast, complete genome.
- NCBI accession ON324044; Ferula kelifi chloroplast, complete genome.
- NCBI accession ON324045; Ferula litwinowiana chloroplast, complete genome.
- NCBI accession ON324046; Ferula olivacea chloroplast, complete genome.
- NCBI accession ON324047; Ferula oopoda chloroplast, complete genome.
- NCBI accession ON324048; Ferula renardii chloroplast, complete genome.