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February 19, 2026Letters in Applied Microbiology1 citations

Synergistic effects of beneficial bacteria on growth performance and nutritional quality of white button mushroom ( Agaricus bisporus )

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RMReza Salehi MolkabadiGBGregory BonitoAMAli Reza Ladan Moghadam

Key Points

  • The research examines how various beneficial bacteria affect the growth and nutritional quality of white button mushrooms.
  • Conducted a completely randomized design with six treatments including various bacterial inoculations and a control.
  • Inoculated casing soil with Bacillus subtilis, Pseudomonas fluorescens, Pseudomonas putida, Azotobacter chroococcum, and their combinations.
  • Measured yield, biological efficiency, and nutritional content of mushrooms.
  • Co-inoculation of bacteria increased mushroom yield by 18.9% compared to the control.
  • Yield reached 34.64 kg per 100 kg compost with a biological efficiency of 125.96%.
  • Co-inoculated mushrooms had higher ergosterol, protein, and trehalose levels, while P. putida led to the highest β-glucan content.

Abstract

Abstract The white button mushroom (Agaricus bisporus) is one of the most widely cultivated and consumed edible mushrooms worldwide, valued for its nutritional and health-promoting properties. Although recent studies suggest that bacteria can enhance mushroom growth and yield, the specific role of beneficial bacteria in improving productivity and bioactive compound content remains insufficiently understood. This study investigated the effects of individual and combined bacterial inoculations on A. bisporus yield, nutritional composition, and functional metabolites. Six treatments were tested in a completely randomized design, including a control (no inoculation), Bacillus subtilis ICMP 368, Pseudomonas fluorescens ICMP 3512, Pseudomonas putida ICMP 19449, Azotobacter chroococcum ICMP 15214, and co-inoculation of all four strains applied to the casing soil. Co-inoculation increased yield to 34.64 kg per 100 kg compost and biological efficiency to 125.96%, representing an 18.9% improvement over the control. Co-inoculated mushrooms exhibited higher ergosterol (3.92 mg/g dry weight), protein (3.16 g/100 g fresh weight), and trehalose (2.53 g/100 g fresh weight) contents, while the highest β-glucan level (9.86 g/100 g dry weight) was obtained with P. putida inoculation. Overall, co-inoculation of beneficial bacteria effectively enhanced both yield and nutritional quality of A. bisporus, whereas individual strains selectively improved specific bioactive compounds.

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Cite This Study

Molkabadi et al. (2026) studied this question.

synapsesocial.com/papers/6996a77aecb39a600b3ed349https://doi.org/10.1093/lambio/ovag023
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