AI Article Synopsis

  • The plastid genome of flowering plants is mostly consistent in structure and gene content, although there are some documented exceptions.
  • An extensive study assembled the plastome of a specific species, revealing it to be 183,052 bp long, with unusually large inverted repeat regions contributing to its length.
  • This plastome was identified as the longest among Lamiid plants when compared to other known plastomes, and its genes were used to establish a phylogenetic relationship within the Bignoniaceae family.

Article Abstract

The plastid genome of flowering plants generally shows conserved structural organization, gene arrangement, and gene content. While structural reorganizations are uncommon, examples have been documented in the literature during the past years. Here we assembled the entire plastome of and compared its structure and gene content with nine other Lamiid plastomes. The plastome of is composed of 183,052 bp and follows the canonical quadripartite structure, synteny, and gene composition of other angiosperms. Exceptionally large inverted repeat (IR) regions are responsible for the uncommon length of the genome. At least four events of IR expansion were observed among the seven Bignoniaceae species compared, suggesting multiple expansions of the IRs over the SC regions in the family. A comparison with 6,231 other complete plastomes of flowering plants available on GenBank revealed that the plastome of is the longest Lamiid plastome described to date. The newly generated plastid genome was used as a source of selected genes. These genes were combined with orthologous regions sampled from other species of Bignoniaceae and all gene alignments concatenated to infer a phylogeny of the family. The tree recovered is consistent with known relationships within the Bignoniaceae.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8995027PMC
http://dx.doi.org/10.7717/peerj.13207DOI Listing

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