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  • Frontiers Media SA  (2)
  • Omotayo, Oluwadara Pelumi  (2)
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  • Frontiers Media SA  (2)
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  • 1
    Online Resource
    Online Resource
    Frontiers Media SA ; 2023
    In:  Frontiers in Fungal Biology Vol. 4 ( 2023-2-7)
    In: Frontiers in Fungal Biology, Frontiers Media SA, Vol. 4 ( 2023-2-7)
    Abstract: Disease outbreaks have been recorded due to exposure to  Fusarium verticillioides  and fumonisin, a mycotoxin produced by this fungus.  F. verticillioides  is a fungal pathogen of maize that causes infections, such as wilting and rotting, while contact with its fumonisin derivative manifests in the form of mild to severe illnesses in humans and animals. Maize infection by  F. verticillioides  causes loss or reduction in expected crop yield, thereby influencing households and nations’ economies. While several efforts have been made to control the pathogenic fungus and its occurrence in the environment, it remains a challenge in agriculture, particularly in maize production. Several microorganisms which are plant-associated, especially those associated with the rhizosphere niche have been noted to possess antagonistic effects against  F. verticillioides . They can inhibit the pathogen and tackle its debilitating effects on plants. Hence this study reviews the use of rhizosphere-associated biocontrol agents, such as  Bacillus  spp. , Pseudomonas, Enterobacter , and  Microbacterium oleivorans  which forms part of the phytomicrobiome in other to prevent and control this toxicogenic fungus. These microorganisms were found to not only be effective in controlling its occurrence on maize plants but are environmentally safe and promote crop yield.
    Type of Medium: Online Resource
    ISSN: 2673-6128
    Language: Unknown
    Publisher: Frontiers Media SA
    Publication Date: 2023
    detail.hit.zdb_id: 3059082-6
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  • 2
    Online Resource
    Online Resource
    Frontiers Media SA ; 2022
    In:  Spanish Journal of Soil Science Vol. 12 ( 2022-7-5)
    In: Spanish Journal of Soil Science, Frontiers Media SA, Vol. 12 ( 2022-7-5)
    Abstract: Genes possessed by microbes in the rhizosphere influence the metabolic activities that occur in this zone. Although the maize rhizosphere has been reported to be a hotspot of genes, these genes remain under-investigated. Hence, this study aimed at identifying putative microbial genes with plant beneficial functions in the underexplored maize rhizosphere microbiome using a shotgun metagenomics approach. Sampling was done at the flowering stage of the maize plants and both the rhizosphere and bulk soils were collected in triplicates. The metagenomes of the examined rhizosphere and bulk soils revealed genes involved in carbon fixation, nitrogen fixation, iron acquisition, heat and cold shock, phosphorus solubilization and utilization, sulfur cycling, and siderophore production. The beta diversity analysis showed significant variations ( p & lt; 0.05) in these genes across the examined rhizosphere and bulk soils which was further confirmed by the distinct separations between the samples as seen on the principal coordinate analysis (PCoA) plot. Contrarily, no significant difference was observed in diversity within the habitats ( p = 0.99). The predominance of significant genes of agricultural importance such as the nifH , nifA, groES, and cspA in the rhizosphere metagenomes signifies that this region is endowed with beneficial organisms with potential for improving plant growth, mitigating stress, and reducing the effect of extreme temperatures, which can be optimized in developing biofertilizers. Therefore, the development of strategies that will help in cultivating these organisms, which are mostly unculturable, is encouraged. This would make them readily available for use as bio-inoculants and in other biotechnological applications.
    Type of Medium: Online Resource
    ISSN: 2253-6574
    Language: Unknown
    Publisher: Frontiers Media SA
    Publication Date: 2022
    detail.hit.zdb_id: 2700695-5
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