Hou Jianming, Yin Haibo, Wang Dan, Luo Jiayi, Yang Wenqi, Kang Tingguo
College of Pharmacy, Liaoning University of Traditional Chinese Medicine, Dalian, Liaoning, China.
State Key Laboratory for Quality Ensurance and Sustainable Use of Dao - di Herbs, Beijing, China.
Front Microbiol. 2025 Mar 13;16:1554981. doi: 10.3389/fmicb.2025.1554981. eCollection 2025.
Rhizosphere soil microorganisms, as the second genome of plants, play an important role in the formation of secondary metabolites of medicinal plants and are one of the key factors in the formation of the authenticity of medicinal materials.
In this paper, the rhizosphere soils of Bunge from six producing areas in Liaoning Province were taken as the research objects. Through high-throughput sequencing technology, and with the help of PLS-DA and RDA, the impacts of rhizosphere soil microorganisms and environmental factors on the quality of were explored in depth.
Alpha diversity shows that the diversity of bacterial communities varies significantly, while the regularity of fungi is weak; beta diversity shows that samples from different producing areas can be effectively grouped according to community structure. LDA effect shows that the differential species of bacteria and fungi vary among different producing areas. Indicator and random forest analysis show that and are the main indicator species of the bacterial communities in the high-content group, which can increase the evenness of microbial communities and maintain or enhance species diversity. The regularity of fungal communities is relatively weak. Functional metagenomic analysis shows that the functions of soil microorganisms in the six producing areas are similar but the relative abundances are different. The main functions of bacteria are closely related to microbial metabolism in diverse environments, biosynthesis of secondary metabolites, metabolic pathways, etc.; fungi are mainly lichen parasite, plant saprotroph, and ericoid mycorrhizal. PLS-DA and RDA analysis show that properly adjusting the key environmental factors of Ca, pH, and rapidly available potassium, which have a great influence on , can affect the abundances of microorganisms such as , , , , , , , and , and then regulate the content of gentiopicroside.
This study provides practical microbial approaches and strategies for improving gentiopicroside content in the roots and rhizomes of , and lays a solid scientific foundation for ensuring the quality and safety of genuine medicinal materials and the stable and sustainable development of the planting industry.
根际土壤微生物作为植物的第二基因组,在药用植物次生代谢产物形成中发挥重要作用,是药材道地性形成的关键因素之一。
本文以辽宁省6个产地的 根际土壤为研究对象。通过高通量测序技术,借助偏最小二乘判别分析(PLS - DA)和冗余分析(RDA),深入探究根际土壤微生物和环境因素对 品质的影响。
α多样性表明细菌群落多样性差异显著,而真菌的规律性较弱;β多样性表明不同产地的样本可根据群落结构有效分组。线性判别分析效应(LDA)表明不同产地细菌和真菌的差异物种各不相同。指示物种和随机森林分析表明 和 是高含量组细菌群落的主要指示物种,可增加微生物群落的均匀度并维持或提高物种多样性。真菌群落的规律性相对较弱。功能宏基因组分析表明,6个产地土壤微生物的功能相似但相对丰度不同。细菌的主要功能与多样环境中的微生物代谢、次生代谢产物生物合成、代谢途径等密切相关;真菌主要为地衣寄生菌、植物腐生菌和石楠类菌根菌。PLS - DA和RDA分析表明,适当调节对 有较大影响的关键环境因素钙、pH值和速效钾,可影响 、 、 、 、 、 、 、 等微生物的丰度,进而调节龙胆苦苷的含量。
本研究为提高 根及根茎中龙胆苦苷含量提供了切实可行的微生物方法和策略,为确保道地药材的质量和安全以及 种植业的稳定可持续发展奠定了坚实的科学基础。