Sep 2026· Journal of Agricultural and Food Chemistry· 0 citations· 65 references
TL;DR
Collectively, SynComs coordinately enhanced onion quality via optimizing soil conditions and reshaping microbial assemblages, providing theoretical support for the microbial restoration of arid agricultural soils.
Abstract
Although microbial inoculants exhibit plant-growth-promoting potential, their regulatory mechanisms remain unclear. Using absolute quantitative sequencing, we explored how the fermentation broth of synthetic microbial communities (SynComs) built from six strains modulated onion rhizosphere microecology throughout the growth period. SynComs broth elevated soil enzyme activities and available nutrients at specific growth stages. Absolute abundances of beneficial bacteria Nitrospira and Nocardioides increased in all stages, whereas pathogenic fungi Cladosporium and Alternaria decreased. Stochastic assembly dominated bacterial community construction, whereas fungal communities were governed mainly by homogeneous selection. Methylotrophic bacteria and saprotrophic predatory fungi were enriched. At harvest, bulb soluble protein, total sugar, and single-bulb fresh weight increased by 73.36%, 33.46%, and 21.91%, respectively. Fungal functional group mediated correlations between environmental factors and bulb nutritional traits. Collectively, SynComs coordinately enhanced onion quality via optimizing soil conditions and reshaping microbial assemblages, providing theoretical support for the microbial restoration of arid agricultural soils.
The use of the tested biostimulant treatments support the use of the tested biostimulants as sustainable crop management tools that preserve rhizosphere microbial communities.
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