Application of Bacteria Producing Antifungal Volatile Organic Compounds for Preventing Microbial Deterioration of Satsuma Mandarin Grown in Greenhouses

Toshiyuki Morita, N. Ryuda, N. Tashiro, D. Ueno, T. Someya
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Abstract

To prevent fungal deterioration of house mandarin during storage and transportation, a bacterium, (cid:9478)(cid:9509)(cid:9511)(cid:9517)(cid:9520)(cid:9520)(cid:9529)(cid:9527) (cid:9524)(cid:9529)(cid:9521)(cid:9517)(cid:9520)(cid:9529)(cid:9527) TM-R, producing volatile antifungal organic compounds(VAOCs)with strong activity was applied as a biological control agent, which was an alternative to chemical fungicidal treatment. The surface of house mandarin was contaminated with conidiospores of (cid:9479)(cid:9520)(cid:9509)(cid:9512)(cid:9523)(cid:9527)(cid:9524)(cid:9523)(cid:9526)(cid:9517)(cid:9529)(cid:9521) (cid:9511)(cid:9520)(cid:9509)(cid:9512)(cid:9523)(cid:9527)(cid:9524)(cid:9523)(cid:9526)(cid:9517)(cid:9523)(cid:9517)(cid:9512)(cid:9513)(cid:9527), and the fruits were incubated with a culture of (cid:9478)(cid:9458) (cid:9524)(cid:9529)(cid:9521)(cid:9517)(cid:9520)(cid:9529)(cid:9527) TM-R in a sealed container at (cid:9875)(cid:9872)℃ for (cid:9879) days. Deterioration was significantly reduced by the presence of the bacterium. VAOCs produced by the bacterium inhibited the germination of conidiospores and mycelium elongation. Among (cid:9874)(cid:9872)(cid:9880) bacterial isolates newly obtained from soil and manure, (cid:9878) isolates showed a stronger and wider antifungal activity. (cid:9478)(cid:9458) (cid:9524)(cid:9529)(cid:9521)(cid:9517)(cid:9520)(cid:9529)(cid:9527) TM-R was, however, still the strongest in the production of VAOCs for suppressing fungal growth.
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细菌产生抗真菌的挥发性有机物在防止温室蜜桔微生物变质中的应用
为了防止柑桔在贮藏和运输过程中发生真菌变质,采用(cid:9478)(cid:9509)(cid:9511)(cid:9517)(cid:9520)(cid:9520)(cid:9529)(cid:9527) (cid:9529)(cid:9521)(cid:9517)(cid:9520)(cid:9529)(cid:9527) TM-R细菌作为生物防治剂,产生具有较强活性的挥发性抗真菌有机化合物(VAOCs),替代化学杀菌处理。家蝇表面受(cid:9479)(cid:9520)(cid:9509)(cid:9512)(cid:9523)(cid:9527)(cid: 9523)(cid:9526)(cid:9517)(cid: 9521) (cid:9521) (cid:9511)(cid:9520)(cid: 9527)(cid:9524)(cid:9523)(cid: 9517)(cid: 9517)(cid: 9517)(cid: 9513)(cid:9527),将果实与(cid:9478)(cid:9458) (cid:9524)(cid:9529)(cid:9521)(cid:9517)(cid:9520)(cid:9529)(cid:9527) TM-R在(cid:9875)(cid:9872)℃的密封容器中孵育(cid:9879)天。细菌的存在大大减少了腐坏。细菌产生的活性氧抑制分孢子萌发和菌丝伸长。从土壤和粪肥中分离得到的菌株(cid:9874)(cid:9872)(cid:9880)中,分离得到的菌株(cid:9878)具有较强的抗真菌活性。(cid:9478)(cid:9458) (cid:9524)(cid:9529)(cid:9521)(cid:9517)(cid:9520)(cid:9529)(cid:9527)然而,TM-R在抑制真菌生长的VAOCs中仍然是最强的。
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