Key Laboratory of Coarse Cereal Processing, Ministry of Agriculture and Rural Affairs, Sichuan Engineering & Technology Research Center of Coarse Cereal Industrialization, School of Food and Biological Engineering, Chengdu University, Chengdu 610106, China.
Genes (Basel). 2024 Apr 23;15(5):526. doi: 10.3390/genes15050526.
This study utilized 16S rRNA high-throughput sequencing technology to analyze the community structure and function of endophytic bacteria within the roots of three plant species in the vanadium-titanium-magnetite (VTM) mining area. The findings indicated that mining activities of VTM led to a notable decrease in both the biodiversity and abundance of endophytic bacteria within the root systems of and ( < 0.05). Significant reductions were observed in the populations of , concurrently with substantial increments in the populations of ( < 0.05), indicating that has a strong adaptability to this environmental stress. In addition, β diversity analysis revealed divergence in the endophytic bacterial communities within the roots of and from the VTM mining area, which had diverged to adapt to the environmental stress caused by mining activity. Functional enrichment analysis revealed that VTM mining led to an increase in polymyxin resistance, nicotinate degradation I, and glucose degradation (oxidative) ( < 0.05). Interestingly, we found that VTM mining did not notably alter the endophytic bacterial communities or functions in the root systems of , indicating that this plant can adapt well to environmental stress. This study represents the primary investigation into the influence of VTM mining activities on endophytic bacterial communities and the functions of nearby plant roots, providing further insight into the impact of VTM mining activities on the ecological environment.
本研究利用 16S rRNA 高通量测序技术分析了钒钛磁铁矿(VTM)矿区三种植物根内内生细菌的群落结构和功能。研究结果表明,VTM 的开采活动显著降低了 和 ( < 0.05)根系内生细菌的生物多样性和丰度。观察到种群数量显著减少,而种群数量显著增加( < 0.05),表明 对这种环境压力具有很强的适应性。此外,β多样性分析表明, 和 根内生细菌群落与 VTM 矿区分离,为了适应采矿活动引起的环境压力而发生了分化。功能富集分析表明,VTM 开采导致多粘菌素耐药性、烟酸降解 I 和葡萄糖降解(氧化)增加( < 0.05)。有趣的是,我们发现 VTM 开采并没有明显改变 的根内生细菌群落或功能,表明该植物能很好地适应环境压力。本研究首次探讨了 VTM 开采活动对附近植物根内生细菌群落和功能的影响,为 VTM 开采活动对生态环境的影响提供了更深入的了解。