Chen Chaoyun, Zhong Chaofang, Gao Xi, Tan Chongyang, Bai Hong, Ning Kang
Key Laboratory of Molecular Biophysics of the Ministry of Education, Hubei Key Laboratory of Bioinformatics and Molecular-Imaging, Center of AI Biology, Department of Bioinformatics and Systems Biology, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, 430074, Hubei, China.
Environ Microbiome. 2022 May 7;17(1):23. doi: 10.1186/s40793-022-00418-0.
Glycyrrhiza uralensis Fisch. is an important, perennial medicinal plant whose root microbiome is considered to play an important role in promoting accumulation of effective medicinal ingredients (liquiritin and glycrrhizic acid). Here, we report a comprehensive analysis of the microbial community structural composition and metabolite-plant-microbes association of G. uralensis Fisch. We collected both soil and rhizosphere samples of G. uralensis from different environmental conditions (cultivated and wild) and growth years (grown for one year and three years). Our data revealed higher species diversity in the wild group than in the cultivated group. The core rhizosphere microbiome of G. uralensis comprised 78 genera, including Bacillus, Pseudomonas, Rhizobium, some of which were potential plant beneficial microbes. Our results suggest that the growth of G. uralensis has a correlation with the root-associated microbiota assemblage. Integrated analysis among rhizosphere microbial taxa, plant gene expressions, and liquiritin and glycrrhizic acid accumulation showed that the liquiritin and glycrrhizic acid accumulation exhibited associations with the rhizosphere microbial composition at the genus level. The results provide valuable information to guide cultivation of G. uralensis, and potentially to harness the power of the root-associated microbiota to improve medicinal plant production.
甘草是一种重要的多年生药用植物,其根部微生物群被认为在促进有效药用成分(甘草苷和甘草酸)积累方面发挥着重要作用。在此,我们报告了对甘草微生物群落结构组成以及代谢物 - 植物 - 微生物关联的全面分析。我们从不同环境条件(栽培和野生)以及生长年份(生长一年和三年)收集了甘草的土壤和根际样本。我们的数据显示,野生组的物种多样性高于栽培组。甘草的核心根际微生物群包括78个属,其中有芽孢杆菌属、假单胞菌属、根瘤菌属等,其中一些是潜在的对植物有益的微生物。我们的结果表明,甘草的生长与根际微生物群落组合存在相关性。根际微生物分类群、植物基因表达以及甘草苷和甘草酸积累之间的综合分析表明,甘草苷和甘草酸的积累在属水平上与根际微生物组成存在关联。这些结果为指导甘草栽培提供了有价值的信息,并有可能利用根际微生物群的力量来提高药用植物产量。