Comparative chloroplast genomics of six Bupleurum (Apiaceae) accessions: candidate barcodes, phylogeny based on available plastomes, and candidate RNA-editing sites
Aug 2026· Frontiers in Plant Science· 0 citations· 53 references
TL;DR
The whole-plastome phylogeny recovered Bupleurum as monophyletic relative to Chamaesium, and only one of seven multi-accession operational binomial groups was monophyletic, and only one showed a positive local barcode gap.
Abstract
Bupleurum L
. (Apiaceae), a taxonomically intricate genus of about 190 species and a source of Radix Bupleuri (Chai Hu), is difficult to discriminate because of convergent morphology, infraspecific variation, and limited genomic sampling. This study aimed to characterize plastome variation, identify and validate candidate molecular markers, reconstruct plastid phylogenetic relationships, and assess candidate plastid RNA-editing sites in
Bupleurum
.
We assembled six plastomes from subgenus
Bupleurum
, screened 51
Bupleurum
plastomes for diagnostic loci, reconstructed whole-plastome and partitioned protein-coding-sequence phylogenies, and predicted plastid C-to-U RNA-editing candidates across the six newly assembled plastomes using a PREP-Cp-compatible workflow. Candidate barcode performance was evaluated against the reference plastome phylogenies, and codon-based models were used to test for positive selection.
The plastomes were 154,496–155,778 bp with the canonical quadripartite structure and GC contents of 37.67–37.73%. Gene content was stable (131–132 genes; 86–87 protein-coding genes);
B. falcatum
subsp.
cernuum
lacked
ycf15
but contained an additional inverted-repeat-associated
ycf1
annotation. A/U-ending synonymous codons were favoured. Finite pairwise Ka/Ks estimates were below 1 for most genes, and site-specific codon models detected no positive selection. Each plastome contained 55–61 pure microsatellites, dominated by A/T mononucleotide motifs. MarkerSeek ranked 265 features and identified
atpF–atpH
,
petA–psbJ
,
rpl32–trnL-UAG
, and
ycf1
as leading candidate barcodes.
ycf1
recovered 38 of 41 nodes strongly supported by both reference trees, whereas a partitioned four-locus analysis recovered 40 of 41 and distinguished all 51 accession sequences. However, only one of seven multi-accession operational binomial groups was monophyletic, and only one showed a positive local barcode gap. The whole-plastome phylogeny recovered
Bupleurum
as monophyletic relative to
Chamaesium
. The two sampled
Penninervia
accessions occupied early-diverging positions without forming an exclusive clade.
B. falcatum
subsp.
cernuum
was sister to
B. ranunculoides
, with
B. ranunculoides
subsp. telonense sister to that pair. A partitioned 74-CDS analysis recovered the same key relationships and 45 of 50 internal bipartitions. Across the six newly assembled plastomes, 57–63 nonsynonymous C-to-U candidates were predicted per accession (367 total) in 21–22 genes; 269 affected the second codon position and 98 the first.
Bupleurum
plastomes are structurally conservative but retain localised divergence useful for marker development. Concordant whole-plastome and CDS genealogies support genus monophyly, whereas sparse
Penninervia
sampling and maternal plastid inheritance preclude rejecting traditional subgeneric classification. The predicted RNA-editing sites represent candidates for future experimental validation rather than an established
Bupleurum
editome. These genomic resources support authentication, conservation, and evolutionary research in
Bupleurum
.
Phylogenetic reconstruction based on complete plastome sequences strongly supported the monophyly of all seven recognized tribes of Moraceae, recovered the non-monophyly of Streblus, and placed Maclura within Chlorophoreae, consistent with recent nuclear and plastid phylogenomic frameworks.
Hui-Long Li, Wen Deng, Chen-Xuan Yang et al.· BMC Plant Biology· 0 citations
The newly assembled Lewinskya plastomes expand genomic resources for Orthotrichaceae and show that chloroplast genome evolution in the sampled species is structurally conservative but contains informative localized variation.
Wei Han, Kai Zhang, Yuanjin Zhao et al.· BMC Plant Biology· 0 citations
This study characterized six Pachypleurum plastomes and highlighted the power of plastome data to significantly improve the phylogenetic supports and resolutions, and provided a framework for Pachypleurum and improved the taxonomic system of the Apiaceae family.
This plastome provides a valuable genomic resource and reveals robust discordance between morphology-based classification and plastid phylogenetic placement in F. gasparriniana, providing a foundation for future nuclear-genomic and population-level tests of the alternative evolutionary scenarios underlying this discordance.
Yong Shi, Jie-Jun Liu, Lei Ren et al.· Genes· 0 citations
Begonia
, a hyperdiverse genus with ecological and medicinal values, confronts challenges in species identification and phylogenetic resolution due to remarkable morphological plasticity and ambiguous taxonomic boundaries. Chloroplast genomes (plastomes) serve as powerful molecular tools for addressing these issues, yet comprehensive plastomic data for Chinese
Begonia
species remain insufficient. This study presents the largest plastome dataset for Chinese
Begonia
(76 plastomes total), identifies hypervariable markers, and resolves a specific taxonomic issue, clarifying the phylogenetic position.
We sequenced and assembled plastomes of 25 Chinese
Begonia
species, integrating 51 public plastomes for comparative analyses, including plastome structure, repeat dynamics, codon usage, nucleotide polymorphism, phylogenetics (ML/BI), and positive selection (
Ka/Ks
, BEB tests).
All 25 assembled plastomes exhibited a conserved quadripartite structures (167,365 − 169,901 bp) with 142–143 genes. Eleven hypervariable regions (e.g.,
ycf1
,
petB
,
ndhF-rpl32
) were identified as potential DNA barcodes. Phylogenetic tree aligned with geographic distributions, clarifying taxonomic positions (e.g.,
B. mashanica
). Five genes (
matK
,
ndhB
,
ndhD
,
rps8
, and
rps15
) showed candidate signals of positive selection, suggesting candidate loci for shade adaptation that require functional validation.
This study enriches
Begonia
plastome resources, provides reliable molecular markers for species authentication, and sheds light on adaptive evolution. The findings support sustainable utilization of medicinal
Begonia
and advancing genus-level evolutionary and taxonomic research.
Yang Huang, Wenxiu Tang, Secai Huang et al.· BMC Genomics· 0 citations
This population-scale plastome dataset provides a practical reference for phylogeographic analysis, marker development, and conservation genomic studies in Cypripedium.
Huiying Shang, Yang Huyan, Yuan Lu et al.· Scientific Data· 0 citations
A new method for surgically removing training examples from a model reveals that as datasets grow, the link between what a model learns and what it produces dissolves.