Plant Growth-Promoting Rhizobacteria Are Key to Promoting the Growth and Furanocoumarin Synthesis of Angelica dahurica var. formosana under Low-Nitrogen Conditions
Ризобактерии, стимулирующие рост растений, играют ключевую роль в обеспечении роста и синтеза фуранокумаринов у Angelica dahurica var. formosana в условиях низкого содержания азота
2024-03-25
SCID: 54.1/7rgptbwg
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furanocoumarin synthesislow-nitrogen conditionsnitrogen utilization efficiencyplant growth-promoting rhizobacteriasynthetic microbial community
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Abstract (AI)
Microbiomes are the most important members involved in the regulation of soil nitrogen metabolism. Beneficial interactions between plants and microbiomes contribute to improving the nitrogen utilization efficiency. In this study, we investigated the Apiaceae medicinal plant Angelica dahurica var. formosana . We found that under a low-nitrogen treatment, the abundance of carbon metabolites in the rhizosphere secretions of A. dahurica var. formosana significantly increased, thereby promoting the ratio of C to N in rhizosphere and nonrhizosphere soils, increasing carbon sequestration, and shaping the microbial community composition, thus promoting a higher yield and furanocoumarin synthesis. Confirmation through the construction of a synthetic microbial community and feedback experiments indicated that beneficial plant growth-promoting rhizobacteria play a crucial role in improving nitrogen utilization efficiency and selectively regulating the synthesis of target furanocoumarins under low nitrogen conditions. These findings may contribute additional theoretical evidence for understanding the mechanisms of interaction between medicinal plants and rhizosphere microorganisms.
Key Findings
1
Beneficial rhizobacteria selectively regulate the synthesis of target furanocoumarins in A. dahurica var. formosana.
2
Enhanced rhizosphere carbon availability shaped microbial community composition and increased carbon sequestration under low-nitrogen conditions.
3
Low nitrogen promoted A. dahurica var. formosana yield and furanocoumarin synthesis through plant–microbiome interactions.
4
Low-nitrogen treatment increased carbon metabolites in Angelica dahurica var. formosana rhizosphere secretions and raised soil carbon-to-nitrogen ratios.
5
Synthetic microbial community construction and feedback experiments confirmed that plant growth-promoting rhizobacteria improve nitrogen-use efficiency under low nitrogen.
Research Object
Angelica dahurica var. formosana and its rhizosphere microbiome under low-nitrogen conditions
Research Subject
The role of plant growth-promoting rhizobacteria in nitrogen-use efficiency, plant growth, and selective furanocoumarin synthesis
Publication Details
Publication Date
2024-03-25
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