Evidence map›Paper›PMID 42056870›Full record

ArticleBMC plant biology2026

Complete mitochondrial genome assembly and analysis of Astragalus (Papilionoideae: Fabaceae) species revealed its RNA editing and phylogenetic implications.

Chunyu Tian, Yanting Yang, Wenlong Gong, Lemeng Liu, Zhiyong Li, Yumei Feng, Jianjiang Niu, Zinian Wu

Abstract read
In one paragraph

Article in BMC plant biology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

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2 · The registry

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4 · The record

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5 · Who and what money

Authors and funding

8 authors.

Chunyu TianInstitute of Grassland Research, Chinese Academy of Agricultural Sciences, Hohhot, China.
Yanting YangInstitute of Grassland Research, Chinese Academy of Agricultural Sciences, Hohhot, China.
Wenlong GongInstitute of Grassland Research, Chinese Academy of Agricultural Sciences, Hohhot, China.
Lemeng LiuInstitute of Grassland Research, Chinese Academy of Agricultural Sciences, Hohhot, China.
Zhiyong LiInstitute of Grassland Research, Chinese Academy of Agricultural Sciences, Hohhot, China.
Yumei FengInstitute of Grassland Research, Chinese Academy of Agricultural Sciences, Hohhot, China.
Jianjiang NiuInstitute of Grassland Research, Chinese Academy of Agricultural Sciences, Hohhot, China.
Zinian WuInstitute of Grassland Research, Chinese Academy of Agricultural Sciences, Hohhot, China. wuzinian@caas.cn.

Funding

Agricultural Science and Technology Innovation Program of CAAS No. 27-GRI-01Central Public-interest Scientific Institution Basal Research Fund No. Y2026YC67National Key Research and Development Program of China 2023YFD1200300Science & Technology Fundamental Resources Investigation Program 2024FY100302
6 · The paper itself

Abstract

backgroundAstragalus (Fabaceae), the largest genus of flowering plants with its phytogeographic center in Southwest Asia, is ecologically and medicinally vital, as high-quality forage and a source of traditional medicine. However, its ambiguous morphological traits hinder taxonomic clarity, prompting increased reliance on molecular phylogenetic approaches to resolve relationships.

resultIn the research, we assembled and annotated mitochondrial genomes of three Astragalus species, integrating them with two published mitochondrial genomes for comparative analysis. Newly sequenced genomes (269,019-364,431 bp) encoded 55-59 genes (31-34 protein-coding, 22-25 tRNAs, 3 rRNAs). Comparative analysis identified four genes (cox2, rps4, atp8, rps12) with high nucleotide variability, establishing them as reliable molecular markers for Astragalus phylogenetics, critical for future taxonomic and evolutionary studies. Mitochondrial plastid sequences were widespread across all five species, with petG and trnW-CCA conserved as chloroplast-derived fragments. Phylogenetic trees based on concatenated mitochondrial genes revealed Astragalus species shared close affinities with A. cicer and A.laxmanii, refining subgeneric classification frameworks.

conclusionOur study confirms mitochondrial genomes as powerful tools for resolving relationships in morphologically cryptic genera. The novel genomic resources, including repeats and RNA editing sites, and validated markers, lay a foundation for future research into Astragalus biogeography, adaptive evolution, and medicinal resource development-thereby, enhancing the genus' ecological and economic value.

Indexed as

Astragalus PlantGenome, MitochondrialPhylogenyRNA EditingAstragalusGene transferMitochondrial genomePhylogenetic analysisRNA editing

Identifiers

PMID42056870
PMCPMC13267355

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