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Pangenome analyses of Bacillus pumilus, Bacillus safensis, and Priestia megaterium exploring the plant-associated features of bacilli strains isolated from canola

机译:对 Bacillus pumilus、Bacillus safensis 和 Priestia megaterium 进行泛基因组分析,探索从油菜中分离的芽孢杆菌菌株的植物相关特征

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Previous genome mining of the strains Bacillus pumilus 7PB, Bacillus safensis 1TAz, 8Taz, and 32PB, and Priestia megaterium 16PB isolated from canola revealed differences in the profile of antimicrobial biosynthetic genes when compared to the species type strains. To evaluate not only the similarities among B. pumilus, B. safensis, and P. megaterium genomes but also the specificities found in the canola bacilli, we performed comparative genomic analyses through the pangenome evaluation of each species. Besides that, other genome features were explored, especially focusing on plant-associated and biotechnological characteristics. The combination of the genome metrics Average Nucleotide Identity and digital DNA-DNA hybridization formulas 1 and 3 adopting the universal thresholds of 95 and 70, respectively, was suitable to verify the identification of strains from these groups. On average, core genes corresponded to 45, 52, and 34 of B. pumilus, B. safensis, and P. megaterium open pangenomes, respectively. Many genes related to adaptations to plant-associated lifestyles were predicted, especially in the Bacillus genomes. These included genes for acetoin production, polyamines utilization, root exudate chemoreceptors, biofilm formation, and plant cell-wall degrading enzymes. Overall, we could observe that strains of these species exhibit many features in common, whereas most of their variable genome portions have features yet to be uncovered. The observed antifungal activity of canola bacilli might be a result of the synergistic action of secondary metabolites, siderophores, and chitinases. Genome analysis confirmed that these species and strains have biotechnological potential to be used both as agricultural inoculants or hydrolases producers. Up to our knowledge, this is the first work that evaluates the pangenome features of P. megaterium.
机译:先前对从油菜中分离的菌株 Bacillus pumilus 7PB、Bacillus safensis 1TAz、8Taz 和 32PB 以及 Priestia megaterium 16PB 的基因组挖掘揭示了与物种类型菌株相比抗菌生物合成基因谱的差异。为了评估 B. pumilus、B. safensis 和 P. megaterium 基因组之间的相似性,以及在油菜杆菌中发现的特异性,我们通过对每个物种的泛基因组评估进行了比较基因组分析。除此之外,还探索了其他基因组特征,特别是植物相关和生物技术特征。基因组指标平均核苷酸身份和数字DNA-DNA杂交公式1和3的组合分别采用95%和70%的通用阈值,适用于验证这些组菌株的鉴定。平均而言,核心基因分别对应于45%、52%和34%的B. pumilus、B. safensis和P. megaterium开放泛基因组。预测了许多与适应植物相关生活方式相关的基因,特别是在芽孢杆菌基因组中。这些包括乙妥因产生基因、多胺利用、根渗出物化学感受器、生物膜形成和植物细胞壁降解酶。总体而言,我们可以观察到这些物种的菌株表现出许多共同的特征,而它们的大多数可变基因组部分具有尚未发现的特征。观察到的油菜芽孢杆菌的抗真菌活性可能是次生代谢物、铁载体和几丁质酶协同作用的结果。基因组分析证实,这些物种和菌株具有生物技术潜力,既可用作农业接种剂,也可用作水解酶生产者。据我们所知,这是第一项评估 P. megaterium 泛基因组特征的工作。

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