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Aspergillus oryzae spore germination is enhanced by non-thermal atmospheric pressure plasma

机译:非热常压等离子体增强米曲霉孢子萌发

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摘要

Poor and unstable culture growth following isolation presents a technical barrier to the efficient application of beneficial microorganisms in the food industry. Non-thermal atmospheric pressure plasma is an effective tool that could overcome this barrier. The objective of this study was to investigate the potential of plasma to enhance spore germination, the initial step in fungal colonization, using Aspergillus oryzae, a beneficial filamentous fungus used in the fermentation industry. Treating fungal spores in background solutions of phosphate buffered saline (PBS) and potato dextrose broth (PDB) with micro dielectric barrier discharge plasma using nitrogen gas for 2 and 5 min, respectively, significantly increased the germination percentage. Spore swelling, the first step in germination, was accelerated following plasma treatment, indicating that plasma may be involved in loosening the spore surface. Plasma treatment depolarized spore membranes, elevated intracellular Ca2+ levels, and activated mpkA, a MAP kinase, and the transcription of several germination-associated genes. Our results suggest that plasma enhances fungal spore germination by stimulating spore swelling, depolarizing the cell membrane, and activating calcium and MAPK signaling.
机译:分离后培养物生长不良且不稳定,这对有益微生物在食品工业中的有效应用提出了技术障碍。非热大气压等离子体是可以克服这一障碍的有效工具。这项研究的目的是使用米曲霉(Aspergillus oryzae),一种发酵工业中有益的丝状真菌,研究血浆增强孢子萌发的潜力,这是真菌定殖的第一步。用微介电屏障放电等离子体分别用氮气处理磷酸盐缓冲液(PBS)和马铃薯葡萄糖肉汤(PDB)的背景溶液中的真菌孢子2分钟和5分钟,显着提高了发芽率。等离子体处理后加速了发芽的第一步即孢子膨胀,这表明血浆可能参与了孢子表面的松弛。等离子体处理使孢子膜去极化,细胞内Ca 2 + 升高,激活了mpkA,一种MAP激酶以及几种与发芽相关的基因的转录。我们的结果表明,血浆可通过刺激孢子膨胀,使细胞膜去极化以及激活钙和MAPK信号传导来增强真菌孢子的萌发。

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