October 2022 in “Research Square (Research Square)” This study found that volatile compounds from Bacillus subtilis strain WM13-24 improved root development in Arabidopsis by influencing auxin signaling.
September 2018 in “Epsilon Archive for Student Projects (University of Southampton)” This study found that treatment with Bacillus amyloliquefaciens UCMB5113 significantly increased root hair growth in half of the tested Arabidopsis thaliana accessions.
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February 2023 in “Plant and Soil” This study found that volatile organic compounds from Bacillus subtilis strain WM13-24 enhanced root development in Arabidopsis and its host plant through auxin signaling.
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January 2015 in “MOspace Institutional Repository (University of Missouri)” This study found that applying 120L ha-1 yr-1 of SCD Probiotics to soil significantly increased soil microbial biomass and enzyme activity compared to lower doses and control, but showed no impact on auxin production.
May 2024 in “Physiologia Plantarum” In this study, Bacillus subtilis strain ALC_02 was observed to enhance phosphorus acquisition in phosphorus-limited dwarf tomato plants by promoting root and root hair growth, with potential implications for developing effective bacterial P biofertilizers.