The complete chloroplast genome sequence of Eugenia klotzschiana O. Berg unveils the evolutionary dynamics in plastomes of Myrteae DC. Tribe (Myrtaceae).

Data de publicação: Data Ahead of Print:

Autores da FMUP

  • Rui Manuel Lopes Nunes

    Autor

Participantes de fora da FMUP

  • Carvalho LR
  • Sobreiro MB
  • Dias RO
  • Corvalán LCJ
  • Braga-Ferreira RS
  • Targueta CP
  • Telles MPC

Unidades de investigação

Abstract

Myrteae is the most diversified tribe in the Myrtaceae family and has great ecological and economic importance. Here, we performed the assembly and annotation of the chloroplast genome of Eugenia klotzschiana O. Berg and used this in a comparative analysis with other 13 species from the Myrteae tribe. The E. klotzschiana plastome exhibited a length of 158,977 bp and a very conserved structure and gene composition when compared with other Myrteae genomes. We identified 34 large repetitive sequences and 94 SSR repeats in E. klotzschiana plastome. The trnT-trnL, rpl32-trnL, ndhF-rpl32, psbE-petL, and ycf1 regions were identified as mutational hotspots. A negative selection signal was detected in 74 protein-coding genes while neutral evolution was detected in two genes (rps12 and psaI). Furthermore, 222 RNA editing sites were identified in the E. klotzschiana plastome. We also obtained a plastome-based Myrtales phylogenetic tree, including E. klotzschiana for the first time in a molecular phylogeny, recovering its sister relationship for all other Eugenia species. Our results illuminate how evolution shaped the chloroplast genome structure and composition in the Myrteae tribe, especially in the E. klotzschiana plastome.

Copyright © 2023 Elsevier B.V. All rights reserved.

Dados da publicação

ISSN/ISSNe:
1879-0038, 0378-1119

Gene  Elsevier

Tipo:
Article
Páginas:
147488-147488

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Keywords

  • Comparative genomics; Genome evolution; Molecular evolution; cpDNA

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