Skip to content
Open access

Functional Characterization of Wheat Seed Endophytic Bacteria Reveals Plant Growth-Promoting Traits and Potential Biocontrol Activity Against Fusarium Pathogens.

Aug 2026 · Plant Pathology Journal · 0 citations · 36 references
Medicine

TL;DR

A functionally diverse seed endophytic community with complementary roles in plant growth and disease suppression is revealed and rational selection and combination of complementary strains, particularly N. cucumis WSSR17 (growth promotion), C. erzurumensis WSSR11 (biocontrol), and P. poae WSSR12 (multifunctional nutrient mobilization) could enable the development of targeted, multi-strain bioinoculant strategies for wheat.

Abstract

Seed-associated microbiota are emerging as key determinants of early plant establishment and resilience, yet their functional potential in wheat remains underexplored. Here, we isolated and functionally characterized culturable bacterial endophytes from seeds of Triticum aestivum cvs. Saekeumkang, Baeggang, and Ariheuk to assess plant growth promotion and pathogen suppression. Sixteen bacterial strains, belonging to Pseudomonadota, Actinomycetota, and Bacillota, were identified using 16S rRNA gene sequencing. Functional assays revealed the high prevalence of plant growth-promoting traits, with all isolates producing indole-3-acetic acid and 56.25% exhibiting phosphate-solubilizing activity, whereas siderophore production was restricted to Pseudomonas poae WSSR12. Despite this apparent functional redundancy, in planta assays demonstrated strong strain-specific effects on seedling biomass. Neobacillus cucumis WSSR17 consistently induced the highest increase in fresh weight. In parallel, dual culture assays against multiple Fusarium pathogens revealed that only one isolate, Calidifontibacillus erzurumensis WSSR11, showed consistent antifungal activity across all tested Fusarium strains. Notably, isolates combining multiple functional traits did not always correspond to the strongest growth promotion, underscoring the importance of host-microbe compatibility and trait expression in planta. Collectively, these findings reveal a functionally diverse seed endophytic community with complementary roles in plant growth and disease suppression. We propose that rational selection and combination of complementary strains, particularly N. cucumis WSSR17 (growth promotion), C. erzurumensis WSSR11 (biocontrol), and P. poae WSSR12 (multifunctional nutrient mobilization) could enable the development of targeted, multi-strain bioinoculant strategies for wheat. This study advances our understanding of seed microbiome functionality and provides a foundation for microbiome-informed crop improvement.

Read PDF

Similar papers

Open access Aug 2026

Whole-genome sequencing and characterization of Pseudomonas stutzeri P1 endophyte isolated from potato unveils plant growth-promoting and other traits

The potential of P1 as a promising bioinoculant candidate for sustainable agriculture in the potato sector is demonstrated and the genome lacked major virulence factors and antimicrobial traits, supporting the non-pathogenic nature of the P1 strain.

Poonam Patel, K. Raval, Satyamitra Shekh et al. · 0 citations
Aug 2026

Functional characterisation of endophytic bacteria of Drynaria quercifolia L.(J.)Sm: production of hydrolytic enzymes and plant growth-promotion

This is the first study documenting these particular bacterial taxa as endophytes with plant growth-promoting potential associated with D. quercifolia and Agrobacterium tumefaciens demonstrated the most pronounced plant growth–promoting activity.

P. Arundathi, A. Manoj, M. Anilkumar · 0 citations
Aug 2026

Klebsiella sp. IR6, an endophytic rhizobacteria with potential as a plant growth-promoting agent for Jalapeño pepper (Capsicum annum L.) production.

IR6 exhibited the most notable agronomic performance, increasing seedling leaf area, fruit production, and fruit size under field conditions and demonstrating antagonistic activity against Fusarium oxysporum, confirming its potential as a biocontrol agent and PGPR.

Dulce R. Hernández-Luna, I. Maldonado-Mendoza, Alicia Fierro-Coronado et al. · 0 citations
Open access Sep 2026

Functional characterization of a plant growth-promoting endophytic fungus associated with Vanda tessellata

Endophytic fungi play an important role in promoting plant growth by producing phytohormones and enhancing nutrient availability; however, their functional roles in orchids remain poorly understood. This study aimed to isolate and functionally characterize plant growth-promoting (PGP) endophytic fungi associated with Vanda tessellata (Roxb.) Hook. ex G.Don. Six representative endophytic fungal isolates were evaluated for plant growth-promoting traits, among which isolate KU/BOT/VT004 exhibited the highest activity. Based on morphological characteristics and ITS rDNA sequence analysis, the isolate was identified as Colletotrichum cf. cobbittiense. The isolate produced high levels of indole-3-acetic acid (35.05 µg/mL), along with ammonia and siderophore activity, indicating strong nutrient-mobilizing potential. Application of the fungal culture filtrate to in vitro-grown protocorms resulted in a two- to three-fold increase in biomass and significantly enhanced chlorophyll content compared with untreated controls. Filtrate-treated protocorms also maintained sustained growth beyond 60 days, whereas nutrient-limited control protocorms exhibited reduced growth. These findings demonstrate the growth-promoting potential of metabolites produced by isolate KU/BOT/VT004 and suggest that this endophytic fungus is a promising candidate for future bioinoculant development and orchid propagation, pending further validation through fungal inoculation and colonization studies.

Unknown authors · 0 citations

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