ArticleBMC genomics2021
A complete mitochondrial genome for fragrant Chinese rosewood (Dalbergia odorifera, Fabaceae) with comparative analyses of genome structure and intergenomic sequence transfers.
Article in BMC genomics, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 41 papers.
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41 citing papers in PubMed.
- Exploring the Mitochondrial Genomes ofEcology and evolution · 2026Article
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- Complete mitochondrial genome assembly and analysis of Astragalus (Papilionoideae: Fabaceae) species revealed its RNA editing and phylogenetic implications.BMC plant biology · 2026Article
- The complete mitochondrial genome of Prinsepia uniflora (Rosaceae): De novo assembly, characterization, and phylogenetic analysis.BMC genomics · 2026Article
- Structural characterization of the plastid genome and comparative mitochondrial genomics of Eupatorium lindleyanum (Asteraceae): evolutionary dynamics and phylogenetic insights.BMC plant biology · 2026Article
- Newly assembled mitochondrial genomes ofFrontiers in plant science · 2026Article
- Complete mitochondrial genome assembly and structural feature analysis of Thinopyrum elongatum (Poaceae).Planta · 2025Article
- Pan-mitogenome in Dipterocarpoideae: mitochondrial plastid DNAs and repeats shape the dynamic evolution of mitogenomes.BMC plant biology · 2025Article
- Complete mitochondrial genome assembly and comparative analysis of Fagopyrum dibotrys (Golden Buckwheat).BMC plant biology · 2025Article
- Assembly and analysis of the complete mitochondrial genome of Leonurus japonicus (Lamiaceae).Scientific reports · 2025Article
- Comprehensive analysis of the multi-rings mitochondrial genome of Populus tomentosa.BMC genomics · 2025Article
- Comparative analysis of mitochondrial genomes of Stemona tuberosa lour. reveals heterogeneity in structure, synteny, intercellular gene transfer, and RNA editing.BMC plant biology · 2025Article
- Complete plastome and mitogenome assembly of endangered treeFrontiers in plant science · 2025Article
- Analysis of the mitochondrial genome of theFrontiers in plant science · 2025Article
- Assembly and comparative analysis of the complete mitochondrial genome ofFrontiers in plant science · 2025Article
- The complete mitochondrial genome and phylogenetic analysis ofFrontiers in plant science · 2025Article
- Characterization of the complete mitochondrial genome of the rice bean (Vigna umbellata).BMC plant biology · 2024Article
- Comprehensive analysis of the first complete mitogenome and plastome of a traditional Chinese medicine Viola diffusa.BMC genomics · 2024Article
- Complete Mitogenome Assembly and Comparative Analysis ofInternational journal of molecular sciences · 2024Article
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11 authors.
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No grant is acknowledged in the PubMed record.
Abstract
backgroundDalbergia odorifera is an economically and culturally important species in the Fabaceae because of the high-quality lumber and traditional Chinese medicines made from this plant, however, overexploitation has increased the scarcity of D. odorifera. Given the rarity and the multiple uses of this species, it is important to expand the genomic resources for utilizing in applications such as tracking illegal logging, determining effective population size of wild stands, delineating pedigrees in marker assisted breeding programs, and resolving gene networks in functional genomics studies. Even the nuclear and chloroplast genomes have been published for D. odorifera, the complete mitochondrial genome has not been assembled or assessed for sequence transfer to other genomic compartments until now. Such work is essential in understanding structural and functional genome evolution in a lineage (Fabaceae) with frequent intergenomic sequence transfers.
resultsWe integrated Illumina short-reads and PacBio CLR long-reads to assemble and annotate the complete mitochondrial genome of D. odorifera. The mitochondrial genome was organized as a single circular structure of 435 Kb in length containing 33 protein coding genes, 4 rRNA and 17 tRNA genes. Nearly 4.0% (17,386 bp) of the genome was annotated as repetitive DNA. From the sequence transfer analysis, it was found that 114 Kb of DNA originating from the mitochondrial genome has been transferred to the nuclear genome, with most of the transfer events having taken place relatively recently. The high frequency of sequence transfers from the mitochondria to the nuclear genome was similar to that of sequence transfer from the chloroplast to the nuclear genome.
conclusionFor the first-time, the complete mitochondrial genome of D. odorifera was assembled in this study, which will provide a baseline resource in understanding genomic evolution in the highly specious Fabaceae. In particular, the assessment of intergenomic sequence transfer suggests that transfers have been common and recent indicating a possible role in environmental adaptation as has been found in other lineages. The high turnover rate of genomic colinearly and large differences in mitochondrial genome size found in the comparative analyses herein providing evidence for the rapid evolution of mitochondrial genome structure compared to chloroplasts in Faboideae. While phylogenetic analyses using functional genes indicate that mitochondrial genes are very slowly evolving compared to chloroplast genes.
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