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Isolation of a novel deep-sea Bacillus circulus strain and uniform design for optimization of its anti-aflatoxigenic bioactive metabolites production

机译:一种新型深海芽孢杆菌环状菌株的分离和优化抗黄曲霉毒素生物活性代谢产物的统一设计

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摘要

The deep-sea bacterium strain FA13 was isolated from the sediment of the South Atlantic Ocean and identified as based on 16S ribosomal DNA sequence. Through liquid fermentation with five media, the cell-free supernatant fermented with ISP2 showed the highest inhibition activities against mycelial growth of mutant strain NFRI-95 and accumulation of norsolorinic acid, a precursor for aflatoxin production. Based on ISP2, uniform design was used to optimize medium formula and fermentation conditions. After optimization, the inhibition efficacy of the 20-time diluted supernatant against NFRI-95 mycelial growth and aflatoxin production was increased from 0–23.1% to 100%. Moreover, compared to the original protocol, medium cost and fermentation temperature were significantly reduced, and dependence on seawater was completely relieved, thus preventing the fermentor from corrosion. This is the first report of a deep-sea microorganism which can inhibit NFRI-95 mycelial growth and aflatoxin production.
机译:从南大西洋的沉积物中分离出深海细菌菌株FA13,并根据16S核糖体DNA序列进行了鉴定。通过五种培养基的液体发酵,用ISP2发酵的无细胞上清液对突变菌株NFRI-95的菌丝生长和黄曲霉毒素生产前的降尿酸具有最高的抑制活性。基于ISP2,采用统一设计来优化培养基配方和发酵条件。经过优化后,稀释20倍的上清液对NFRI-95菌丝生长和黄曲霉毒素产生的抑制作用从0–23.1%增加到100%。此外,与原始方案相比,培养基成本和发酵温度均大大降低,对海水的依赖性得到了完全缓解,从而防止了发酵罐的腐蚀。这是可抑制NFRI-95菌丝生长和黄曲霉毒素产生的深海微生物的首次报道。

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