Jul 2026· Korean Journal of Plant Taxonomy· 0 citations· 99 references
TL;DR
These results provide the first comprehensive plastome dataset for Limeum and a valuable genomic resource for species identification, genetic diversity assessment, phylogenetic reconstruction, and evolution studies of Limeum and the family Limeaceae.
Abstract
Limeum is the sole genus of Limeaceae, comprising approximately 20 species distributed across Africa, Southwest Asia, and India. However, genomic resources for the family are limited, and phylogenetic relationships within the genus remain poorly understood. In this study, we sequenced, assembled, and analyzed the complete chloroplast genomes of six Limeum species to investigate their genomic characteristics and phylogenetic relationships. The chloroplast genomes ranged from 156,354 bp to 160,377 bp in length and exhibited the typical quadripartite structure. Each genome contained 131 genes, consisting of 86 protein-coding genes, 37 tRNA genes, and eight rRNA genes. Comparative analyses identified 455 tandem repeats and 616 simple sequence repeats, revealing 16 highly variable regions that may serve as potential molecular markers for future studies. Phylogenetic analyses based on complete chloroplast genome sequences strongly supported the monophyly of Limeum and robustly resolved interspecific relationships within the genus. These results provide the first comprehensive plastome dataset for Limeum and a valuable genomic resource for species identification, genetic diversity assessment, phylogenetic reconstruction, and evolution studies of Limeum and the family Limeaceae.
Fraxinus mandshurica (Manchurian ash) is an ecologically and economically valuable hardwood tree native to Northeast Asia, yet its genomic resources remain limited. We assembled its complete chloroplast (cp) genome (155,559 bp) using hybrid PacBio and Illumina sequencing and performed comparative, phylogenetic, and evolutionary analyses. The cp genome exhibits a typical quadripartite structure encoding 132 gene copies, comprising 114 unique genes (80 protein-coding, 30 tRNA, and 4 rRNA genes), with 18 genes duplicated in the inverted repeat (IR) regions. Simple sequence repeat analysis revealed dominance of mononucleotide A/T repeats. Phylogenetic analysis of 53 complete cp genomes strongly supported the monophyly of Oleaceae and resolved F. mandshurica as sister to the North American F. nigra, consistent with previously proposed Miocene intercontinental dispersal scenarios between East Asia and North America. Most protein-coding genes were under strong purifying selection (Ka/Ks << 1), whereas petB, rpl2, and several ndh genes showed elevated Ka/Ks values that are suggestive of altered selective constraint but are based on very few substitutions and are therefore not, on their own, evidence of positive selection. Nucleotide diversity (Pi) analysis identified 15 hypervariable intergenic spacers (mean Pi = 0.067), among which trnM-CAU-rps14, ndhJ-ndhK, and petL-petG represent promising candidate barcode regions requiring further validation. This study provides a high-quality, fully annotated cp genome of F. mandshurica and a valuable genomic resource for future phylogenetic, population genetic, and conservation studies of this important genus.
Wen-Xuan Liu, Jia-Wei Wu, Hao-Nan Zheng et al.· International Journal of Mol...· 0 citations
This work offers novel insights into genomic diversity and evolutionary history of sampled Zehneria species, providing a critical molecular resource for future taxonomic and phylogenetic studies within Cucurbitaceae.
Michael Gichuru Karendi, Caroline Njambi Ndungu, Elijah Mkala Mbadi et al.· Genetica· 0 citations
Phylogenetic analyses recovered Veronica as a well-supported monophyletic lineage and clarified the plastid positions of the three newly sequenced species, providing plastome resources and molecular evidence for taxonomy, species identification, and future evolutionary studies of Veronica.
Ying Huang, Shi-Hao Jiang, Yan-Ru Zhang et al.· Frontiers in Plant Science· 0 citations
The genus Abutilon Mill. (Malvaceae) comprises approximately 178 species distributed across tropical and subtropical regions, many of which hold significant ornamental, economic, and medicinal value; yet its taxonomic classification remains challenging. In this study, six species were sequenced from herbarium specimens, and the chloroplast (cp.) genomes of ten additional species were assembled de novo from publicly available raw data. Three previously reported cp. genomes were also incorporated to characterise cp. genome structure, identify polymorphic loci, and perform phylogenetic analyses. The cp. genomes ranged from 159,458 to 160,454 bp and exhibited the typical quadripartite structure, with each genome containing 112 unique genes (78 protein-coding, 30 tRNA, and 4 rRNA) that showed conserved content and organisation. These genomes exhibited high similarity in GC content, inverted repeat boundaries, relative synonymous codon usage, amino acid frequencies, and substitution patterns. However, notable variation was observed in the total number of simple sequence repeats, ranging from 70 to 97 per genome. Selection analyses indicated predominant purifying selection, with evidence of episodic positive selection detected in rpoC2, rbcL, and ycf1. Two codons in rbcL were clade-specific and provided phylogenetic signal distinguishing Australian and Old World pantropical species. Nucleotide diversity analysis identified six highly polymorphic intergenic spacers (trnH-psbA, rps19-rpl2, psbT-pbf1, psaC-ndhD, trnR-atpA, and ndhJ-ndhK) that may be suitable for taxonomic studies. The phylogeny from maximum likelihood (ML) and Bayesian inference (BI) resolved two major clades: one comprising an exclusively Australian lineage occurring predominantly in arid and semi-arid environments, and the other a pantropical lineage spanning multiple continents. Abutilon grandifolium was recovered as sister to the remaining sampled Abutilon taxa in both ML and BI analyses, although no biogeographic origin inference can be drawn from this placement pending broader taxon sampling and integration of nuclear genomic data. These findings provide insights into the evolutionary dynamics of the cp. genome in Abutilon and offer a foundational genomic framework for refining Abutilon taxonomy.
Abdullah, Ru-Shan Yan, A. Sammad et al.· BMC Plant Biology· 0 citations
This study employed Sequencing by Synthesis (SBS) technology to achieve the first complete sequencing, assembly, and annotation of the R. platyacantha chloroplast genome, providing new insights into the evolutionary and dispersal pathways of Rosa species within the unique habitats of northwest China.
Gang Lu, Mengmeng Yu, Fazu Xu et al.· PeerJ· 0 citations
The utility of plastid genome data for resolving deep-level phylogenetic relationships within Hamamelidaceae is highlighted, providing a robust framework for future taxonomic and evolutionary studies of this globally distributed and taxonomically complex family.
Sadaf Habib, Yong Shi, Jie Zhang et al.· Frontiers in Plant Science· 0 citations
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