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首页> 外文期刊>BMC Plant Biology >Insights into the mechanism of the effects of rhizosphere microorganisms on the quality of authentic Angelica sinensis under different soil microenvironments
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Insights into the mechanism of the effects of rhizosphere microorganisms on the quality of authentic Angelica sinensis under different soil microenvironments

机译:根际微生物作用的洞察机制对不同土壤微环境下正宗当归中的质量的机制

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Angelica sinensis (Oliv.) Diels (A. sinensis) is a Chinese herb grown in different geographical locations. It contains numerous active components with therapeutic value. Rhizosphere microbiomes affect various aspects of plant performance, such as nutrient acquisition, growth and development and plant diseases resistance. So far, few studies have investigated how the microbiome effects level of active components of A. sinensis. This study investigated whether changes in rhizosphere microbial communities and metabolites of A. sinensis vary with the soil microenvironment. Soils from the two main A. sinensis-producing areas, Gansu and Yunnan Province, were used to conduct pot experiments. The soil samples were divided into two parts, one part was sterilized and the other was unsterilized planting with the seedling variety of Gansu danggui 90–01. All seedlings were allowed to grow for 180?days. At the end of the experiment, radix A. sinensis were collected and used to characterize growth targets and chemical compositions. Rhizosphere soils were subjected to microbial analyses. Changes in metabolic profiles and rhizosphere microbial communities of A. sinensis grown under different soil microenvironments were similar. The GN (Gansu non-sterilized), YN (Yunnan non-sterilized), GS (Gansu sterilized), and YS (Yunnan sterilized) groups were significantly separated. Notably, antagonistic bacteria such as Sphingomonas, Pseudomonas, Lysobacter, Pseudoxanthomonas, etc. were significantly (p??0.05) enriched in Gansu soil compared with Yunnan soil. Moreover, senkyunolide I and ligustilide dimers which were enriched in GS group were strongly positively correlated with Pseudomonas parafulva; organic acids (including chlorogenic acid, dicaffeoylquinic acid and 5-feruloylquinic acid) and their ester coniferyl ferulate which were enriched in YS Group were positively associated with Gemmatimonadetes bacterium WY71 and Mucilaginibater sp., respectively. The soil microenvironment influences growth and level/type of active components in A. sinensis. Further studies should explore the functional features of quality-related bacteria, identify the key response genes and clarify the interactions between genes and soil environments. This will reveal the mechanisms that determine the quality formation of genuine A. sinensis.
机译:Angelica Sinensis(Oliv。)Diels(A.Inensis)是一种在不同地理位置中生长的中国药草。它包含许多具有治疗价值的活性组件。根际微生物体影响植物性能的各个方面,如营养饮药,生长和发育和植物疾病抵抗力。到目前为止,很少有研究已经研究了微生物组效应A.Inensis的活性组分水平。本研究调查了无根际微生物社区的变化和A的代谢物。Sinensis与土壤微征化不同。来自两种主要A.中的土壤,甘肃和云南省生产地区,用于进行盆栽实验。将土壤样品分为两部分,一部分被灭菌,另一部分被甘肃DangGui 90-01的幼苗品种植入植物。允许所有幼苗生长180℃。在实验结束时,收集基因A. Sinensis并用于表征生长靶和化学组成。根际土壤受到微生物分析。在不同土壤微征中生长的A. Sinensis的代谢谱和根际微生物群落的变化相似。 GN(甘肃非灭菌),Yn(云南非灭菌),GS(甘肃灭菌)和ys(云南灭菌)组被显着分离。值得注意的是,与云南土壤相比,拮抗细菌如鞘氨酰胺,假鼠,粘膜,假瘤,假瘤等显着(p?&Δ05)。此外,富含GS组的Senkyonolide I和Ligustilide二聚体与Pseudomonas valafusva强烈呈正相关;有机酸(包括绿原酸,二呋化合酸和5-二硫酸)及其富含Ys组的酯番茄素与GemmatimonaDetes Bacterium Wy71和Mucilaginaater Sp呈正相关。土壤微环境影响A.Inensis中的活性组分的生长和水平/类型。进一步的研究应该探讨质量相关细菌的功能特征,鉴定关键反应基因并阐明基因和土壤环境之间的相互作用。这将揭示确定真正A. Sinensis的质量形成的机制。

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