ArticleBMC genomics2022
Structural characterization of Platanthera ussuriensis chloroplast genome and comparative analyses with other species of Orchidaceae.
Article in BMC genomics, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 19 papers.
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19 citing papers in PubMed, 43 citations in OpenAlex.
- Comparative analysis of six new chloroplast genomes in Platanthera (Orchidaceae) enhances understanding of its diversification.Scientific reports · 2026Article
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- Comparative and Phylogenetic Analysis of the Chloroplast Genomes of Four Wild Species of the GenusGenes · 2025Article
- Complete chloroplast genome of eight Phaius (Orchidaceae) species from China: comparative analysis and phylogenetic relationship.BMC plant biology · 2025Article
- Comparative chloroplast genomes and phylogenetic analysis of sixFrontiers in plant science · 2025Article
- Comparative chloroplast genome analysis of Ardisia (Myrsinoideae, Primulaceae) in China and implications for phylogenetic relationships and adaptive evolution.BMC plant biology · 2024Article
- Comparative analysis of 12 water lily plastid genomes reveals genomic divergence and evolutionary relationships in early flowering plants.Marine life science & technology · 2024Article
- Complete chloroplast genome structural characterization of two Aerides (Orchidaceae) species with a focus on phylogenetic position of Aerides flabellata.BMC genomics · 2024Article
- Thirteen complete chloroplast genomes of the costaceae family: insights into genome structure, selective pressure and phylogenetic relationships.BMC genomics · 2024Article
- Phylogenetic position and plastid genome structure ofFrontiers in plant science · 2024Article
- Phylogeny, biogeography, and character evolution ofFrontiers in plant science · 2024Article
- Complete Chloroplast Genomes and Comparative Analyses of ThreeInternational journal of molecular sciences · 2023Article
- Complete chloroplast genome structural characterization of two Phalaenopsis (Orchidaceae) species and comparative analysis with their alliance.BMC genomics · 2023Article
- The Complete Chloroplast Genomes ofGenes · 2023Article
- Phylogenomics and plastome evolution ofFrontiers in plant science · 2023Article
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- The complete chloroplast genome ofMitochondrial DNA. Part B, Resources · 2022Article
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6 authors at 1 institution in 1 country.
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Abstract
backgroundThe genus Tulotis has been classified into the genus Platanthera in the present taxonomic studies since the morphological characteristics of this genus is very similar to that of Platanthera. Platanthera ussuriensis, formerly named as Tulotis ussuriensis, is a small terrestrial orchid species and has been listed as wild plant under State protection (category II) in China. An improved understanding of the genomic information will enable future applications of conservation strategy as well as phylogenetic studies for this rare orchid species. The objective of this research was to characterize and compare the chloroplast genome of P. ussuriensis with other closely related species of Orchidaceae.
resultsThe chloroplast genome sequence of P. ussuriensis is 155,016 bp in length, which included a pair of inverted repeats (IRs) of 26,548 bp that separated a large single copy (LSC) region of 83,984 bp and a small single copy (SSC) region of 17,936 bp. The annotation contained a total of 132 genes, including 86 protein-coding genes, 38 tRNA genes and 8 rRNA genes. The simple sequence repeat (SSR) analysis showed that there were 104 SSRs in the chloroplast genome of P. ussuriensis. RNA editing sites recognition indicated 72 RNA editing events occurred, and all codon changes were C to T conversions. Comparative genomics showed that the chloroplast sequence of Platanthera related species were relatively conserved, while there were still some high variation regions that could be used as molecular markers. Moreover, Platanthera related species showed similar IR/SSC and IR/LSC borders. The phylogenetic analysis suggested that P. ussuriensis had a closer evolutionary relationship with P. japonica followed by the remaining Platanthera species.
conclusionOrchidaceae is a key group of biodiversity protection and also a hot spot group in the plant taxonomy and evolution studies due to their characteristics of high specialization and rapid evolution. This research determined the complete chloroplast genome of P. ussuriensis for the first time, and compared the sequence with other closely related orchid species. These results provide a foundation for future genomic and molecular evolution of the Orchidaceae species, and provide insights into the development of conservation strategy for Platanthera species.
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