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PMID: 39084119 Published · ppublish English

Sphingomonas sp. Hbc-6 alters Arabidopsis metabolites to improve plant growth and drought resistance by manipulating the microbiome.

Microbiological research ·Vol. 287 ·2024-10-00

Wang F, Jia M, Li K, Cui Y, An L, Sheng H

Abstract

Drought significantly affects crop productivity and poses a considerable threat to agricultural ecosystems. Plant growth-promoting bacteria (PGPB) and plant microbiome play important roles in improving drought resistance and plant performance. However, the response of the rhizosphere microbiota to PGPB during the development of plants and the interaction between inoculum, microbiota, and plants under drought stress remain to be explored. In the present study, we used culturomic, microbiomic, and metabonomic analyses to uncover the mechanisms by which Sphingomonas sp. Hbc-6, a PGPB, promotes Arabidopsis growth and enhances drought resistance. We found that the rhizosphere microbiome assembly was interactively influenced by developmental stage, Hbc-6, and drought; the bacterial composition exhibited three patterns of shifts with developmental stage: resilience, increase, and decrease. Drought diminished microbial diversity and richness, whereas Hbc-6 increased microbial diversity and helped plants recruit specific beneficial bacterial taxa at each developmental stage, particularly during the bolting stage. Some microorganisms enriched by Hbc-6 had the potential to promote carbon and nitrogen cycling processes, and 86.79 % of the isolated strains exhibited PGP characteristics (for example Pseudomonas sp. TA9). They jointly regulated plant physiological metabolism (i.e., upregulated drought resistant-facilitating substances and reduced harmful substances), thereby stimulating the growth of Arabidopsis and increasing plant biomass under drought stress conditions. Collectively, these results indicate that Hbc-6 mediates plant growth and drought resistance by affecting the microbiome. The study thus provides novel insights and strain resources for drought-resistant, high-yielding crop cultivation and breeding.

Keywords
Drought resistance Plant developmental stage Plant growth promoting bacteria Plant metabolites Plant microbiome Sphingomonas sp. Hbc-6
MeSH 主题词
Arabidopsis/microbiology,growth & development Biomass Drought Resistance Microbiota/physiology Plant Development Plant Roots/microbiology Rhizosphere Soil Microbiology Sphingomonas/metabolism,genetics,growth & development Stress, Physiological
Article Info
Journal
Microbiological research
Abbr.
Microbiol Res
ISSN
1618-0623
Corresponding email
Published
2024-10-00
Language
English
Country/Region
Germany
NLM ID
9437794
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