伝統的な食用植物の混合物がトウモロコシの真菌増殖を抑制(Mixture of traditional edible plants inhibits fungus growth in corn, study shows)

20026-08-27 ペンシルベニア州立大学(Penn State)

ペンシルベニア州立大学の研究チームは、トウモロコシに深刻な被害を与える真菌の増殖を、複数の伝統的な食用植物を組み合わせた混合物によって抑制できる可能性を示した。研究では、単一の植物抽出物ではなく、複数種を組み合わせることで、真菌に対する抑制効果が高まることを確認した。こうした植物由来成分は、化学合成農薬に代わる、あるいはその使用量を減らす手段として利用できる可能性がある。特にトウモロコシ栽培では、病原性真菌による収量低下だけでなく、カビ毒(マイコトキシン)による食品・飼料の安全性への影響も問題となるため、植物資源を活用した防除法には意義がある。伝統的に食用とされてきた植物を組み合わせることで、環境負荷を抑えながら作物病害を管理する新たなアプローチにつながると期待される。

<関連情報>

伝統的な多種ハーブ配合水性製剤BioCC+のFusarium graminearumおよびFusarium v​​erticillioides に対する抗真菌効果と生物活性代謝物の評価 Evaluating the antifungal efficacy and bioactive metabolites of a traditional polyherbal aqueous formulation BioCC+ against Fusarium graminearum and Fusarium verticillioides

Elisee Kouassi Kporou, Zilfa Irakoze, Nataliia Voloshchuk, Joshua D. Lambert, Joshua J. Kellogg​​ and Josephine Wee
Access Microbiology  Published: 11 August 2026
DOI:https://doi.org/10.1099/acmi.0.001173.v3

伝統的な食用植物の混合物がトウモロコシの真菌増殖を抑制(Mixture of traditional edible plants inhibits fungus growth in corn, study shows)

ABSTRACT

Fungal contamination of cereal crops threatens global food security by compromising grain quality and introducing harmful mycotoxins that endanger human and animal health. In West Africa, the long-standing ancestral use of native plant extracts to manage fungal contamination provides sustainable and locally adaptable solutions. Building on this knowledge, BioCC+, a polyherbal aqueous formulation containing Azadirachta indica, Cymbopogon citratus, Allium sativum and Capsicum frutescens, was developed to control maize contamination during storage in Côte d’Ivoire. This study evaluated the antifungal activity of BioCC+ against Fusarium graminearum and Fusarium verticillioides followed by bioactivity-guided untargeted metabolomics to explain observed effects. Crude BioCC+ extracts inhibited F. graminearum at 12.5 mg ml−1 and F. verticillioides at 25.0 mg ml−1, with the dichloromethane extract (DCMe) showing greater antifungal activity than methanol or water extracts. Based on the observed growth inhibition, DCMe was selected for fractionation using silica gel column chromatography with the following mixtures of hexane:ethyl acetate as the mobile phase: 100 : 0 for F1, 75 : 25 for F2, 50 : 50 for F3, 25 : 75 for F4 and 0 : 100 for F5, as well as 100% methanol for F6. Fractionation of DCMe resulted in three active fractions (F3, F4 and F6), with F4 showing the strongest inhibition (MIC=0.4 mg ml−1) against F. graminearum. Integration of antifungal activity assays with chemometric data through multivariate, univariate and correlation-based analysis identified six putative antifungal candidates, two known and four uncharacterized metabolites. These results provide a first step for integrating bioactivity assays with metabolomics to validate ancestral knowledge and develop community-driven practices for mitigating fungal contamination in staple crops.

1207植物保護
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