Skip to content
Open access

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

Jul 2026 · BMC Microbiology · 0 citations
Medicine

Abstract

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.

Read PDF

Similar papers

Open access Jul 2026

Evaluation of the Integrated use of Arbuscular Mycorrhizal Fungi and Trichoderma spp. for Yield Improvement in Mustard (Brassica juncea L.)

The present study evaluated the synergistic effects of arbuscular mycorrhizal fungi (AMF) and beneficial rhizospheric microorganisms on the growth, root colonisation, and yield of mustard (Brassica juncea L.), a crop traditionally regarded as a poor or non-mycorrhizal host. A field experiment was conducted during the rabi seasons of 2023–2024 and 2024–2025 at the Research Farm of Nirmal Seeds Pvt. Ltd., Maharashtra, India, using the mustard variety NIMOH-8. The experiment was laid out in a randomised block design (RBD) with seven treatments and three replications. The treatments comprised soil application of a mycorrhizal powder formulation alone or in combination with Trichoderma viride, Trichoderma harzianum, and Pseudomonas fluorescens. Standard agronomic practices were followed throughout the study. Plant growth, yield attributes, and root colonisation were assessed at harvest, and roots were stained using the Phillips and Hayman (1970) technique. The application of bio-inoculants significantly improved growth and yield parameters compared with the untreated control. The highest number of siliquae per plant (541.9), seed yield per plant (14.13 g), and seed yield (23.28 q ha⁻¹) were recorded in T4, which comprised mycorrhizal powder formulation (250 g ha⁻¹) + Trichoderma viride WP (2.5 kg ha⁻¹). Treatment T7 (mycorrhiza + T. viride + Pseudomonas fluorescens) produced comparable results, with 525.7 siliquae per plant and a yield of 23.15 q ha⁻¹. Microscopic examination of stained roots confirmed AMF colonisation in the combined inoculation treatments, characterised by intraradical hyphae, vesicles, external mycelium, and arbuscules; no fungal colonisation was observed in the untreated control. Enhanced root colonisation was associated with improved plant growth and productivity, indicating a positive interaction between AMF and beneficial rhizospheric microorganisms. The study demonstrated that integrating AMF with Trichoderma viride and Pseudomonas fluorescens enhanced mycorrhizal establishment, nutrient acquisition, and mustard productivity. Among the treatments tested, the combination of mycorrhiza and T. viride was the most effective. These findings indicate the potential of microbial consortia as an environmentally compatible strategy for improving mustard yield and crop productivity.

Valmik M. Patil, K. Patole, Mukesh Borse et al. · 0 citations
Review Open access Aug 2026

Isolation and Identification of Fusarium oxysporum Causing Cowpea Fusarium Wilt in Hainan and In Vitro Screening of Antagonistic Bacteria

Cowpea (Vigna unguiculata subsp. sesquipedalis, also known as yardlong bean) is an important winter horticultural crop in Hainan, and Fusarium wilt seriously threatens its yield and quality. To clarify the pathogen and screen antagonistic bacteria, surveys were conducted in 14 fields across Hainan’s major cowpea-growing areas. The causal agent was isolated, tested for pathogenicity, and identified using morphological and multigene molecular methods. Meanwhile, rhizosphere and endophytic bacteria from healthy plants were screened by dual culture, and candidate strains were phylogenetically analyzed using whole-genome sequencing (285 orthologous single-copy genes). Fusarium wilt occurred in all 14 fields (mean incidence 15.35%, range 3.20–76.40%). Of 44 fungal isolates, six were highly pathogenic and identified as Fusarium oxysporum. Twenty-two bacterial strains showed stable antagonism against F. oxysporum, with inhibition rates ranging from 42.62% to 68.47%. Phylogenetic analysis based on whole-genome sequences identified 15 Bacillus strains to the species level (12 B. velezensis, 2 B. subtilis, 1 B. tropicus), while the remaining seven strains belonged to Lysinibacillus (1), Pantoea (1), Klebsiella (1), Serratia (2), and Pseudomonas (2). Draft genome sequences of all 22 strains were obtained. This study provides a collection of biocontrol bacterial resources and genomic information for managing cowpea Fusarium wilt.

Bao Wang, Da Guan, Wanrong Yan et al. · 0 citations
Open access Jul 2026

Antagonistic and Plant Growth-Promoting Potential of Endophytic Trichoderma Against Fusarium Root Rot in Loquat (Eriobotrya japonica)

Findings suggest that newly isolated endophytic Trichoderma strains from loquat exhibit robust host compatibility, offering a promising sustainable strategy for managing root rot in perennial fruit crops.

M. Hussain, Ting Yuan, Pei-Qi Liu et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.