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Updated: Feb 15, 2026

Production of Arbuscular Mycorrhizal (AM) Fungal Inoculum and Phenotypic Evaluation of Rice and AM Symbiosis Under Saline Conditions
Published on: March 14, 2025
Arbuscular mycorrhizal fungi spore propagation using single spore as starter inoculum and a plant host
G Selvakumar1,2, C C Shagol3, Y Kang1
1Department of Environmental and Biological Chemistry, Chungbuk National University, Cheongju, Chungbuk, Korea.
Aims:
The propagation of pure cultures of arbuscular mycorrhizal fungal (AMF) is an essential requirement for their large-scale agricultural application and commercialization as biofertilizers. The present study aimed to propagate AMF using the single-spore inoculation technique and compare their propagation ability with the known reference spores.
Methods And Results:
Arbuscular mycorrhizal fungal spores were collected from salt-affected Saemangeum reclaimed soil in South Korea. The technique involved inoculation of sorghum-sudangrass (Sorghum bicolor L.) seedlings with single, healthy spores on filter paper followed by the transfer of successfully colonized seedlings to 1-kg capacity pots containing sterilized soil. After the first plant cycle, the contents were transferred to 2·5-kg capacity pots containing sterilized soil. Among the 150 inoculated seedlings, only 27 seedlings were colonized by AMF spores. After 240 days, among the 27 seedlings, five inoculants resulted in the production of over 500 spores. The 18S rDNA sequencing of spores revealed that the spores produced through single-spore inoculation method belonged to Gigaspora margarita, Claroideoglomus lamellosum and Funneliformis mosseae. Furthermore, indigenous spore F. mosseae M-1 reported a higher spore count than the reference spores.
Conclusions:
The AMF spores produced using the single-spore inoculation technique may serve as potential bio-inoculants with an advantage of being more readily adopted by farmers due to the lack of requirement of a skilled technique in spore propagation.
Significance And Impact Of The Study:
The results of the current study describe the feasible and cost-effective method to mass produce AMF spores for large-scale application. The AMF spores obtained from this method can effectively colonize plant roots and may be easily introduced to the new environment.
Insights
This study successfully propagated arbuscular mycorrhizal fungi (AMF) using a simple single-spore technique, yielding effective bio-inoculants. The method is cost-effective for large-scale AMF production, benefiting agricultural applications.
Area of Science:
- Mycology
- Agricultural Microbiology
- Plant Pathology
Background:
- Large-scale propagation of arbuscular mycorrhizal fungi (AMF) is crucial for their commercialization as biofertilizers.
- Current methods may require specialized techniques, limiting widespread adoption.
Purpose of the Study:
- To propagate AMF using a single-spore inoculation technique.
- To compare the propagation efficiency of this method with reference spores.
- To assess the potential of AMF produced for agricultural bio-inoculants.
Main Methods:
- Single spores of AMF were isolated from reclaimed soil.
- Inoculation of sorghum-sudangrass seedlings with single spores.
- Transfer of colonized seedlings to larger pots for spore multiplication over 240 days.
- 18S rDNA sequencing for species identification.
Main Results:
- Out of 150 inoculated seedlings, 27 were colonized by AMF.
- Five inoculants produced over 500 spores after 240 days.
- Identified species include Gigaspora margarita, Claroideoglomus lamellosum, and Funneliformis mosseae.
- Indigenous Funneliformis mosseae M-1 showed higher spore production than reference spores.
Conclusions:
- The single-spore inoculation technique provides a feasible and cost-effective method for mass-producing AMF spores.
- AMF produced via this method can effectively colonize plant roots and serve as potential bio-inoculants.
- This technique simplifies AMF propagation, facilitating farmer adoption and large-scale agricultural application.
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