Comparative analysis of chloroplast genomes for fiveDiclipteraspecies (Acanthaceae): molecular structure, phylogenetic relationships, and adaptive evolution

Author:

Huang Sunan12,Ge Xuejun1,Cano Asunción3,Salazar Betty Gaby Millán3,Deng Yunfei1

Affiliation:

1. Key Laboratory of Plant Resources Conservation & Sustainable Utilization, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou, Guangdong, China

2. University of Chinese Academy of Sciences, Beijing, China

3. Facultad de Ciencias Biológicas y Museo de Historia Natural, Universidad Nacional Mayor de San Marcos, Lima, Peru

Abstract

The genusDicliptera(Justicieae, Acanthaceae) consists of approximately 150 species distributed throughout the tropical and subtropical regions of the world. Newly obtained chloroplast genomes (cp genomes) are reported for five species ofDilciptera(D. acuminata,D. peruviana,D. montana,D. ruizianaandD. mucronata) in this study. These cp genomes have circular structures of 150,689–150,811 bp and exhibit quadripartite organizations made up of a large single copy region (LSC, 82,796–82,919 bp), a small single copy region (SSC, 17,084–17,092 bp), and a pair of inverted repeat regions (IRs, 25,401–25,408 bp). Guanine-Cytosine (GC) content makes up 37.9%–38.0% of the total content. The complete cp genomes contain 114 unique genes, including 80 protein-coding genes, 30 transfer RNA (tRNA) genes, and four ribosomal RNA (rRNA) genes. Comparative analyses of nucleotide variability (Pi) reveal the five most variable regions (trnY-GUA-trnE-UUC, trnG-GCC, psbZ-trnG-GCC, petN-psbM,andrps4-trnL-UUA), which may be used as molecular markers in future taxonomic identification and phylogenetic analyses ofDicliptera. A total of 55-58 simple sequence repeats (SSRs) and 229 long repeats were identified in the cp genomes of the fiveDiclipteraspecies. Phylogenetic analysis identified a close relationship betweenD. ruizianaandD. montana, followed byD. acuminata,D. peruviana, andD. mucronata. Evolutionary analysis of orthologous protein-coding genes within the family Acanthaceae revealed only one gene,ycf15,to be under positive selection, which may contribute to future studies of its adaptive evolution. The completed genomes are useful for future research on species identification, phylogenetic relationships, and the adaptive evolution of theDiclipteraspecies.

Funder

International Partnership Program of Chinese Academy of Sciences

National Natural Science Foundation of China

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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