Yang Genlin, Liu Weiwei, Mo Xinchun, Mei Zhinan
School of Pharmaceutical Sciences, South-Central Minzu University, Wuhan 430074, China.
Forestry Institution of Science of Yunnan Lijiang, Lijiang 674199, China.
Biology (Basel). 2025 Mar 27;14(4):345. doi: 10.3390/biology14040345.
The accumulation of secondary metabolites in medicinal plants is often influenced by a variety of factors, and rhizosphere microorganisms typically engage in complex interactions with their host plants. (Franch.) Babc., a regionally significant medicinal plant, contains a diverse array of terpenoids and demonstrates substantial potential for resource development and utilization. Transcriptome sequencing, metabolomic profiling, and 16S rRNA gene amplicon sequencing were employed to assess the transcriptional expression patterns, metabolic variations, and rhizosphere microbial community composition of (Franch.) Babc. roots distributed across various regions. A total of 3679, 8615, and 11,333 differentially expressed genes (DEGs) were identified in the pairwise comparisons between H1 vs. H2, H2 vs. H3, and H1 vs. H3, respectively. Notably, 497 DEGs were consistently detected across all three comparisons. Additionally, Weighted Gene Co-expression Network Analysis (WGCNA) revealed that the expression levels of genes within the turquoise and yellow modules exhibited a significant positive correlation with elevation. In total, 462 differentially expressed metabolites (DEMs) were identified across the same comparisons. Among these compounds, terpenoids, phenolic acids, amino acids and their derivatives, lipids, and alkaloids accounted for 62.98% of the total differential metabolite content. The accumulation patterns of DEMs varied significantly across different regions in the roots of (Franch.) Babc. under the three altitude conditions. In response to environmental conditions and the survival strategy of (Franch.) Babc. in alpine areas, an investigation into the rhizosphere microbial community was conducted. Four key microbial genera were identified as being correlated with terpenoid biosynthesis and plant nutritional metabolism. Specifically, , , and exhibited terpene biosynthesis capabilities. Additionally, , a common microorganism involved in plant nitrogen fixation, respiration, carbon metabolism, and cell wall metabolism, was also enriched in the rhizosphere of (Franch.) Babc. These findings suggested that (Franch.) Babc. might recruit these microorganisms to enhance its resistance to environmental stress in alpine areas. The accumulation of terpene in (Franch.) Babc. across different regions was influenced by transcriptional changes. The rhizosphere microbial communities also changed during this process, showing a recruitment effect that enhances plant growth and offers potential value.
药用植物中次生代谢产物的积累通常受多种因素影响,根际微生物通常与其宿主植物进行复杂的相互作用。( Franch.)Babc.是一种具有区域重要性的药用植物,含有多种萜类化合物,具有巨大的资源开发利用潜力。采用转录组测序、代谢组分析和16S rRNA基因扩增子测序来评估分布在不同区域的(Franch.)Babc.根的转录表达模式、代谢变化和根际微生物群落组成。在H1与H2、H2与H3以及H1与H3的两两比较中,分别鉴定出3679、8615和11333个差异表达基因(DEG)。值得注意的是,在所有三个比较中均一致检测到497个DEG。此外,加权基因共表达网络分析(WGCNA)表明,绿松石模块和黄色模块内基因的表达水平与海拔高度呈显著正相关。在相同的比较中总共鉴定出462种差异表达代谢物(DEM)。在这些化合物中,萜类化合物、酚酸、氨基酸及其衍生物、脂质和生物碱占总差异代谢物含量的62.98%。在三种海拔条件下,(Franch.)Babc.根中不同区域的DEM积累模式差异显著。针对(Franch.)Babc.在高寒地区的环境条件和生存策略,对其根际微生物群落进行了调查。确定了四个与萜类生物合成和植物营养代谢相关的关键微生物属。具体而言, 、 和 具有萜类生物合成能力。此外, 是一种参与植物固氮、呼吸、碳代谢和细胞壁代谢的常见微生物,在(Franch.)Babc.根际中也有富集。这些发现表明,(Franch.)Babc.可能招募这些微生物来增强其在高寒地区对环境胁迫的抗性。(Franch.)Babc.中萜类化合物在不同区域的积累受转录变化影响。在此过程中根际微生物群落也发生了变化,表现出促进植物生长的招募效应并具有潜在价值。