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Anil Dixit

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Jul 2026

Exploring the potential of bacterial endophytes from Medicinal plant Gymnema sylvestre with plant beneficial traits and antimicrobial efficacy against phytopathogens.

Gymnema sylvestre (Gudmar) is an important medicinal plant recognized for its diverse bioactive compounds, including antimicrobial and immune-stimulatory properties, and for its association with beneficial endophytic microorganisms. However, the plant growth-promoting and biocontrol potential of its bacterial endophytes remains poorly understood. The present study aimed to isolate and characterize bacterial endophytes from different tissues of G. sylvestre and evaluate their PGP attributes and antagonistic activity against major soil-borne phytopathogens. A total of 30 bacterial endophytes were isolated from leaf (n = 14), stem (n = 9), and root (n = 7) tissues. Screening for PGP traits revealed that 36.7% of isolates produced indole-3-acetic acid (IAA) (>20 μg/mL), 56.7% produced siderophores, 16.7% solubilized phosphate, and 20.0% solubilized zinc. In addition, 30.0%, 23.3%, 16.7%, and 16.7% of isolates exhibited DNase activity, nitrate reduction, urease production, and citrate utilization, respectively. Extracellular enzyme production was also recorded, with isolates showing amylase (36.7%), protease (30.0%), cellulase (23.3%), and lipase (40.0%) activities. An antagonistic assay against soil-borne fungal pathogens using a dual culture assay showed inhibition of fungal growth in 5, 5, and 3 endophyte isolates against Sclerotium rolfsii, Rhizoctonia solani, and Fusarium oxysporum, respectively with maximum zone of inhibition up to 67%, 67% and 62%, respectively against each pathogen. Based on combined PGP and antagonistic performance, six elite isolates were selected for in-planta validation and molecular identification using 16S rDNA sequencing. In-planta evaluation in chickpea demonstrated significant improvements in seed germination, plant growth, and biomass compared with the uninoculated control. Bacillus cereus strain NIBSM_GdR7 produced the greatest increase in plant height, whereas Bacillus cabrialesii strain NIBSM_GdL7 yielded the highest fresh and dry biomass. Under pathogen challenge, seed biopriming of chickpea with selected endophytes reduced disease incidence caused by S. rolfsii, providing 68.7-87.8% protection, with the highest protection observed for Bacillus proteolyticus strain NIBSM_GdL2. These results indicate that G. sylvestre harbors bacterial endophytes with promising plant growth-promoting and antifungal properties, and that selected Bacillus isolates can in future serve as candidate bioinoculants for sustainable crop improvement and disease suppression.

A. Shrivastava, Lata Jain, Vinay Kumar et al. · 0 citations
Open access Jul 2026

Inoculation of Bacillus cabrialesii modulates plant growth and wilt disease of chickpea cultivars pre-challenged with Fusarium oxysporum f.sp. ciceris.

BACKGROUND Bacillus cabrialesii, a plant growth-promoting (PGP) and biocontrol bacterium, was first reported in Mexico in 2018. This study evaluates the PGP and antagonistic potential of two B. cabrialesii strains, IS-10 and BATS-13, isolated from the chickpea rhizospheric soils of Chhattisgarh, India. It also assesses the impact of strain IS-10 on the growth, yield, and disease resistance of chickpea cultivars under Fusarium wilt stress. METHODS PGP traits and antifungal activity of the isolates were characterized in vitro, including biosurfactant production. The biosurfactant nature was analyzed using thin-layer chromatography (TLC) and ultra-performance liquid chromatography tandem mass spectrometry (UPLC-MS/MS). Strain IS-10 was used for seed bacterization in sterile soil amended with 0.2% vermicompost and 0.02% gum acacia, in the presence or absence of Fusarium oxysporum f. sp. ciceris (FOC), to evaluate its effects on plant growth and disease suppression in two chickpea cultivars, Vaibhav and JG-62. RESULTS Both strains demonstrated multiple PGP attributes and inhibited FOC growth in vitro. TLC revealed the presence of lipids and peptides in the crude biosurfactant, and further UPLC-MS/MS analyses confirmed the presence of surfactin and fengycin. In the pot trials, strain IS-10 treatment significantly improved plant performance. In pathogen-free conditions, strain IS-10 increased straw yield by 39.17% (Vaibhav) and 39.47% (JG-62), and grain yield by 46.8% (Vaibhav) and 50.32% (JG-62), respectively, over untreated controls. Under FOC challenge conditions, strain IS-10 reduced disease incidence by 20.80% (Vaibhav) and 26.85% (JG-62), while enhancing straw yield by 53.92% and 36.6%, and grain yield by 57.14% and 50.81%, respectively, compared to pathogen controls. CONCLUSIONS B. cabrialesii IS-10 possesses significant PGP and biocontrol traits, including production of antifungal lipopeptides. Its application enhances chickpea growth and yield and mitigates the effects of Fusarium wilt, highlighting its potential as a bioinoculant for sustainable chickpea cultivation under both healthy and pathogen-infested conditions in the state of Chhattisgarh, India.

Prajwal S K, S. Sharma, Narayan Sahu et al. · 0 citations

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