Genomic Characterization of Bradyrhizobium Strains Used As Inoculants for the Neotropical Legume Arachis pintoi and the description of Bradyrhizobium boddeyi sp. nov

Abstract Purpose The objective of this study was to characterize Bradyrhizobium strains currently recommended as inoculants for Arachis pintoi in Brazil using comparative genomic and symbiotic analyses. In addition, this study aimed to expand current knowledge on the diversity, evolution, and bacterial symbiotic traits of Arachis -associated Bradyrhizobium while providing robust taxonomic evidence to support the description of a novel Bradyrhizobium species isolated from root nodules of Arachis . Methods Phylogenetic reconstruction was performed based on the 16S rRNA gene and by phylogenomics using 116 single- copy core gene sequences. Average Nucleotide Identity (ANI) analyses were conducted to evaluate the genomic relatedness of strains BR 1432ᵀ, BR 1433 and BR 14999 to 1,301 reference Bradyrhizobium genomes, including all available type strain strains. The results were validated using digital DNA–DNA hybridization (dDDH). Additional analyses included phylogenetic reconstruction of symbiotic genes ( nodC and nifH ) and, assessment of the denitrification pathway, and phenotypic characterization. Results Phylogenetic analyses based on 16S rRNA gene sequences and whole-genome data indicated that strains BR 1432ᵀ and BR 14999 form a distinct lineage within the genus Bradyrhizobium , clearly separated from BR 1433, which clustered with Bradyrhizobium brasilense . ANI and dDDH values between BR 1432ᵀ and BR 14999 and their closest related type strains, including B. zhanjiangense LMG 29279ᵀ, were below the species delineation thresholds of 96% and 70%, respectively, supporting the proposal of a novel species. In addition, the publicly available RefSeq genomes Bradyrhizobium sp. DN5 and Rc2d were found to be closely related to BR 1432ᵀ. Phylogenetic analyses of the nodC and nifH genes revealed distinct evolutionary patterns, while genomic analyses showed that the proposed novel species harbors a complete denitrification pathway, unlike strain BR 1433. Furthermore, phenotypic characterization revealed differences in carbon source utilization and enzymatic activities. Conclusion Based on genomic, phylogenetic, and phenotypic evidence, strain BR 1433 was identified as a member of B. brasilense , whereas strains BR 1432ᵀ (= UCCC 277ᵀ = LMG 34120ᵀ = CCP577ᵀ), BR 14999, DN5 and Rc2d represent a novel species within the genus Bradyrhizobium , for which the name Bradyrhizobium boddeyi sp. nov. is proposed.

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Publication Details

Journal
Journal of soil science and plant nutrition
Published
2026-09-29
DOI
https://doi.org/10.1007/s42729-026-03591-0
Primary Topic
Legume Nitrogen Fixing Symbiosis
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article
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article

Genomic Characterization of Bradyrhizobium Strains Used As Inoculants for the Neotropical Legume Arachis pintoi and the description of Bradyrhizobium boddeyi sp. nov

Verônica Massena Reis, Jean Luiz Simões‐Araújo, Alberto Oliveira, Bruno José Rodrígues Alves et al.
Journal of soil science and plant nutrition
Legume Nitrogen Fixing Symbiosis
article

Genomic Characterization of Bradyrhizobium Strains Used As Inoculants for the Neotropical Legume Arachis pintoi and the description of Bradyrhizobium boddeyi sp. nov

Verônica Massena Reis, Jean Luiz Simões‐Araújo, Alberto Oliveira, Bruno José Rodrígues Alves, Peter S. Medeiros, Luc Felicianus Marie Rouws, Stefan Schwab, Fábio Bueno dos Reis, Cláudia Pozzi Jantalia, Jerri Édson Zilli, Guilherme Oliveira Do Carmo, Segundo Sacramento Urquiaga
article en

Abstract

Abstract Purpose The objective of this study was to characterize Bradyrhizobium strains currently recommended as inoculants for Arachis pintoi in Brazil using comparative genomic and symbiotic analyses. In addition, this study aimed to expand current knowledge on the diversity, evolution, and bacterial symbiotic traits of Arachis -associated Bradyrhizobium while providing robust taxonomic evidence to support the description of a novel Bradyrhizobium species isolated from root nodules of Arachis . Methods Phylogenetic reconstruction was performed based on the 16S rRNA gene and by phylogenomics using 116 single- copy core gene sequences. Average Nucleotide Identity (ANI) analyses were conducted to evaluate the genomic relatedness of strains BR 1432ᵀ, BR 1433 and BR 14999 to 1,301 reference Bradyrhizobium genomes, including all available type strain strains. The results were validated using digital DNA–DNA hybridization (dDDH). Additional analyses included phylogenetic reconstruction of symbiotic genes ( nodC and nifH ) and, assessment of the denitrification pathway, and phenotypic characterization. Results Phylogenetic analyses based on 16S rRNA gene sequences and whole-genome data indicated that strains BR 1432ᵀ and BR 14999 form a distinct lineage within the genus Bradyrhizobium , clearly separated from BR 1433, which clustered with Bradyrhizobium brasilense . ANI and dDDH values between BR 1432ᵀ and BR 14999 and their closest related type strains, including B. zhanjiangense LMG 29279ᵀ, were below the species delineation thresholds of 96% and 70%, respectively, supporting the proposal of a novel species. In addition, the publicly available RefSeq genomes Bradyrhizobium sp. DN5 and Rc2d were found to be closely related to BR 1432ᵀ. Phylogenetic analyses of the nodC and nifH genes revealed distinct evolutionary patterns, while genomic analyses showed that the proposed novel species harbors a complete denitrification pathway, unlike strain BR 1433. Furthermore, phenotypic characterization revealed differences in carbon source utilization and enzymatic activities. Conclusion Based on genomic, phylogenetic, and phenotypic evidence, strain BR 1433 was identified as a member of B. brasilense , whereas strains BR 1432ᵀ (= UCCC 277ᵀ = LMG 34120ᵀ = CCP577ᵀ), BR 14999, DN5 and Rc2d represent a novel species within the genus Bradyrhizobium , for which the name Bradyrhizobium boddeyi sp. nov. is proposed.

Journal of soil science and plant nutrition
Openalex Percentile: Top 13%
Legume Nitrogen Fixing Symbiosis
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