College of Tropical Crops, Yunnan Agricultural University, Pu'er 665099, China.
Int J Mol Sci. 2024 Jul 16;25(14):7786. doi: 10.3390/ijms25147786.
The interactions between plants and rhizosphere microbes mediated by plant root exudates are increasingly being investigated. The root-derived metabolites of medicinal plants are relatively diverse and have unique characteristics. However, whether medicinal plants influence their rhizosphere microbial community remains unknown. How medicinal plant species drive rhizosphere microbial community changes should be clarified. In this study involving high-throughput sequencing of rhizosphere microbes and an analysis of root exudates using a gas chromatograph coupled with a time-of-flight mass spectrometer, we revealed that the root exudate metabolites and microorganisms differed among the rhizosphere soils of five medicinal plants. Moreover, the results of a correlation analysis indicated that bacterial and fungal profiles in the rhizosphere soils of the five medicinal plants were extremely significantly or significantly affected by 10 root-associated metabolites. Furthermore, among the 10 root exudate metabolites, two (carvone and zymosterol) had opposite effects on rhizosphere bacteria and fungi. Our study findings suggest that plant-derived exudates modulate changes to rhizosphere microbial communities.
植物与根际微生物之间的相互作用受植物根系分泌物的介导,这一现象越来越受到关注。药用植物的根系衍生代谢物相对多样,具有独特的特征。然而,药用植物是否会影响其根际微生物群落尚不清楚。药用植物物种如何驱动根际微生物群落的变化,这一点需要加以阐明。在本研究中,我们通过高通量测序分析根际微生物,并使用气相色谱-飞行时间质谱联用仪分析根系分泌物,结果表明五种药用植物的根际土壤中,根系分泌物代谢物和微生物存在差异。此外,相关分析的结果表明,五种药用植物根际土壤中的细菌和真菌分布受到 10 种与根系相关代谢物的极显著或显著影响。此外,在 10 种根系分泌物代谢物中,有两种(香芹酮和麦角甾醇)对根际细菌和真菌有相反的影响。我们的研究结果表明,植物来源的分泌物调节根际微生物群落的变化。