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Growth Inhibitory Mechanism of Contact-independent Antifungal TM-I-3 Bacillus sporothermodurans Strain against Aspergillus fumigatus and Cladosporium cladosporioides.

机译:与曲霉菌和囊孢子孢子酸血管孢子虫和囊孢子孢子虫血管孢菌菌株的联系无抗抗真菌TM-I-3芽孢杆菌菌株的生长抑制机制。

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We previously identified a new Bacillus sporothermodurans strain, TM-I-3, which produces volatile compounds that show potent inhibitory activity against certain types of fungi, including Aspergillus fumigatus and Cladosporium cladosporioides. Non-contact antifungals derived from this bacterium may provide multidirectional inhibition and may be useful in disease prevention. This study is aimed at identifying the stage of fungal growth that is inhibited by TM-I-3 to elucidate the mechanism of its contact-independent antifungal activity. We evaluated mycelial growth and the gross fungal colony areas after 7 days in each experimental group varying the time in the proximity of TM-I-3 for 24 hours each. The fungal growth inhibition assay showed that TM-I-3 inhibited spore germination: the lag phase in the sigmoid growth curve. The present study demonstrated that TM-I-3 might be an effective fungistatic agent against pathogenic and allergenic fungi.
机译:我们以前鉴定了一种新的芽孢杆菌孢子热呋喃菌株TM-I-3,其产生挥发性化合物,其显示出对某些类型的真菌的有效的抑制活性,包括曲霉和囊孢子孢子孢子虫。衍生自该细菌的非接触抗真菌可以提供多向抑制,并且可用于预防疾病。本研究旨在鉴定TM-I-3抑制的真菌生长的阶段,以阐明其接触无关的抗真菌活性的机制。在每个实验组7天内,在每个实验组中,在每个实验组中,在每个实验组中都会评估菌丝体的生长和总菌落区域,每个TM-I-3的时间间隔24小时。真菌生长抑制测定结果表明,TM-I-3抑制孢子萌发:乙状生长曲线中的滞后阶段。本研究表明,TM-I-3可能是针对致病和过敏性真菌的有效稳定性剂。

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