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间作对人参代谢重塑的影响及其与品质形成的关系

Intricate microbe-plant-metabolic remodeling mediated by intercropping enhances the quality of Panax quinquefolius L.

机构信息

School of Biological Science and Technology, University of Jinan, Jinan, P. R. China.

State Key Laboratory for Quality Ensurance and Sustainable Use of Dao-di Herbs, National Resource Center for Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijng, P. R. China.

出版信息

Physiol Plant. 2024 Sep-Oct;176(5):e14499. doi: 10.1111/ppl.14499.

Abstract

Improving the cultivation mode and technology for traditional Chinese medicine has become important for its sustainable development. Monoculture enhances plant diseases, which decreases yield and quality. Intercropping is an effective measure to counterbalance that negative effect. In this study, we focused on Panax quinquefolium L. (ginseng) and four treatments were set up: the control without intercropping, P. quinquefolius + ryegrass (Lolium perenne L.), P. quinquefolius + red clover (Trifolium pratense L.), and P. quinquefolius + ryegrass + red clover. An LC-MS/MS system was used to detect the changes in the P. quinquefolius secondary metabolites, and high-throughput sequencing technology was used to determine the changes in the P. quinquefolius' rhizosphere soil microorganisms. Ginsenoside content, soil enzyme activities, and arbuscular mycorrhizal infection rate of P. quinquefolius were also measured using HPLC, ELISA kits, and microscopy, respectively. Co-intertia and Pearson's analysis were performed to explore the relationship between the metabolites and the P. quinquefolius microorganisms. Intercropping significantly increased the content of ginsenoside metabolites and recruited a large number of beneficial bacteria to the P. quinquefolius rhizosphere. The P. quinquefolius secondary metabolites were associated with the rhizosphere microbial community. For example, the dominant microorganisms, such as Acidobacteriota and Chloroflexi, played a key role in promoting the synthesis of ginsenoside Rd and (20R) ginsenoside Rg3 by P. quinquefolius. Intercropping led to changes in the P. quinquefolius secondary metabolites by driving and reshaping the rhizosphere microorganisms. These findings revealed the potential application of intercropping for improving the quality of P. quinquefolius.

摘要

优化中药材的种植模式和技术,对其可持续发展至关重要。单一栽培会加剧植物病害,降低产量和质量。间作是平衡这种负面影响的有效措施。本研究以西洋参(人参)为研究对象,设置了 4 种处理方式:无间作对照、西洋参+黑麦草(Lolium perenne L.)、西洋参+红三叶草(Trifolium pratense L.)、西洋参+黑麦草+红三叶草。采用 LC-MS/MS 系统检测西洋参次生代谢物的变化,采用高通量测序技术测定西洋参根际土壤微生物的变化。采用 HPLC、ELISA 试剂盒和显微镜分别测定西洋参中人参皂苷含量、土壤酶活性和丛枝菌根感染率。采用 co-intertia 和 Pearson 分析方法探讨代谢物与西洋参微生物之间的关系。间作显著增加了人参皂苷代谢物的含量,并招募了大量有益细菌到西洋参根际。西洋参次生代谢物与根际微生物群落有关。例如,优势微生物如 Acidobacteriota 和 Chloroflexi 对西洋参合成 Rd 和(20R)ginsenoside Rg3 起着关键作用。间作通过驱动和重塑根际微生物,导致西洋参次生代谢物发生变化。这些发现揭示了间作提高西洋参质量的潜在应用。

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