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Insights into chloroplast genome structure and phylogenetic relationships within the Sesamum species complex (Pedaliaceae)

  • Yedomon Ange Bovys Zoclanclounon
  • , Senthil Kumar Thamilarasan
  • , Youngjun Mo
  • , Byoung Ohg Ahn
  • , Jeong Gu Kim*
  • , Keunpyo Lee*
  • *Corresponding author for this work
  • Rural Development Administration
  • Jeonbuk National University

Research output: Contribution to journalJournal articlepeer-review

Abstract

Background: In the Sesamum species complex, the lack of wild species genomic resources hinders the evolutionary comprehension of phylogenetic relationships. Results: In the present study, we generated complete chloroplast genomes of six wild relatives (Sesamum alatum, Sesamum angolense, Sesamum pedaloides, Ceratotheca sesamoides (syn. Sesamum sesamoides), Ceratotheca triloba (syn. Sesamum trilobum), and Sesamum radiatum) and a Korean cultivar, Sesamum indicum cv. Goenbaek. A typical quadripartite chloroplast structure, including two inverted repeats (IR), a large single copy (LSC), and a small single copy (SSC), was observed. A total of 114 unique genes encompassing 80 coding genes, four ribosomal RNAs, and 30 transfer RNAs were counted. The chloroplast genomes (152, 863–153, 338 bp) exhibited the IR contraction/expansion phenomenon and were quite conserved in both coding and non-coding regions. However, high values of the nucleotide diversity index were found in several genes, including ndhA, ndhE, ndhF, ycf1, and psaC–ndhD. Concordant tree topologies suggest ndhF as a useful marker for taxon discrimination. The phylogenetic inference and time divergence dating indicate that S. radiatum (2n = 64) occurred concomitantly with the sister species C. sesamoides (2n = 32) approximately 0.05 million years ago (Mya). In addition, S. alatum was clearly discriminated by forming a single clade, showing its long genetic distance and potential early speciation event in regards to the others. Conclusion: Altogether, we propose to rename C. sesamoides and C. triloba as S. sesamoides and S. trilobum, respectively, as suggested previously based on the morphological description. This study provides the first insight into the phylogenetic relationships among the cultivated and wild African native relatives. The chloroplast genome data lay a foundation for speciation genomics in the Sesamum species complex.

Original languageEnglish
Article number1207306
JournalFrontiers in Genetics
Volume14
DOIs
StatePublished - 2023

Keywords

  • Ceratotheca
  • chloroplast genome
  • phylogeny
  • Sesamum
  • species complex
  • wild relatives

Quacquarelli Symonds(QS) Subject Topics

  • Medicine
  • Biological Sciences

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